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441. Cell membranes sustain phospholipid imbalance via cholesterol asymmetry.

作者: Milka Doktorova.;Jessica L Symons.;Xiaoxuan Zhang.;Hong-Yin Wang.;Jan Schlegel.;Joseph H Lorent.;Frederick A Heberle.;Erdinc Sezgin.;Edward Lyman.;Kandice R Levental.;Ilya Levental.
来源: Cell. 2025年188卷10期2586-2602.e24页
Membranes are molecular interfaces that compartmentalize cells to control the flow of nutrients and information. These functions are facilitated by diverse collections of lipids, nearly all of which are distributed asymmetrically between the two bilayer leaflets. Most models of biomembrane structure and function include the implicit assumption that these leaflets have similar abundances of phospholipids. Here, we show that this assumption is generally invalid and investigate the consequences of lipid abundance imbalances in mammalian plasma membranes (PMs). Using lipidomics, we report that cytoplasmic leaflets of human erythrocyte membranes have >50% overabundance of phospholipids compared with exoplasmic leaflets. This imbalance is enabled by an asymmetric interleaflet distribution of cholesterol, which regulates cellular cholesterol homeostasis. These features produce unique functional characteristics, including low PM permeability and resting tension in the cytoplasmic leaflet that regulates protein localization.

442. Engineering sonogenetic EchoBack-CAR T cells.

作者: Longwei Liu.;Peixiang He.;Yuxuan Wang.;Fengyi Ma.;Dulei Li.;Zhiliang Bai.;Yunjia Qu.;Linshan Zhu.;Chi Woo Yoon.;Xi Yu.;Yixuan Huang.;Zhengyu Liang.;Yiming Zhang.;Kunshu Liu.;Tianze Guo.;Yushun Zeng.;Qifa Zhou.;H Kay Chung.;Rong Fan.;Yingxiao Wang.
来源: Cell. 2025年188卷10期2621-2636.e20页
Chimeric antigen receptor (CAR) T cell therapy for solid tumors encounters challenges such as on-target off-tumor toxicity, exhaustion, and limited T cell persistence. Here, we engineer sonogenetic EchoBack-CAR T cells using an ultrasensitive heat-shock promoter screened from a library and integrated with a positive feedback loop from CAR signaling, enabling long-lasting CAR expression upon focused-ultrasound (FUS) stimulation. EchoBack-hGD2CAR T cells, targeting disialoganglioside GD2, exhibited potent cytotoxicity and persistence in 3D glioblastoma (GBM) models. In mice, EchoBack-hGD2CAR T cells suppressed GBM without off-tumor toxicity and outperformed their constitutive counterparts. Single-cell RNA sequencing revealed enhanced cytotoxicity and reduced exhaustion in EchoBack-CAR T cells compared with the standard CAR T cells. This EchoBack design was further adapted to target prostate-specific membrane antigen (EchoBack-PSMACAR) for prostate cancer treatment, demonstrating long-lasting tumor suppression with minimal off-tumor toxicity. Thus, the sonogenetic EchoBack-CAR T cells can serve as a versatile, efficient, and safe strategy for solid tumor treatment.

443. Global analysis of protein turnover dynamics in single cells.

作者: Pierre Sabatier.;Maico Lechner.;Ulises H Guzmán.;Christian M Beusch.;Xinlei Zeng.;Longteng Wang.;Fabiana Izaguirre.;Anjali Seth.;Olga Gritsenko.;Sergey Rodin.;Karl-Henrik Grinnemo.;Zilu Ye.;Jesper V Olsen.
来源: Cell. 2025年188卷9期2433-2450.e21页
Single-cell proteomics (SCPs) has advanced significantly, yet it remains largely unidimensional, focusing primarily on protein abundances. In this study, we employed a pulsed stable isotope labeling by amino acids in cell culture (pSILAC) approach to simultaneously analyze protein abundance and turnover in single cells (SC-pSILAC). Using a state-of-the-art SCP workflow, we demonstrated that two SILAC labels are detectable from ∼4,000 proteins in single HeLa cells recapitulating known biology. We performed a large-scale time-series SC-pSILAC analysis of undirected differentiation of human induced pluripotent stem cells (iPSCs) encompassing 6 sampling times over 2 months and analyzed >1,000 cells. Protein turnover dynamics highlighted differentiation-specific co-regulation of protein complexes with core histone turnover, discriminating dividing and non-dividing cells. Lastly, correlating cell diameter with the abundance of individual proteins showed that histones and some cell-cycle proteins do not scale with cell size. The SC-pSILAC method provides a multidimensional view of protein dynamics in single-cell biology.

444. Mechanism of DNA capture by the MukBEF SMC complex and its inhibition by a viral DNA mimic.

作者: Frank Bürmann.;Bryony Clifton.;Sophie Koekemoer.;Oliver J Wilkinson.;Dari Kimanius.;Mark S Dillingham.;Jan Löwe.
来源: Cell. 2025年188卷9期2465-2479.e14页
Ring-like structural maintenance of chromosome (SMC) complexes are crucial for genome organization and operate through mechanisms of DNA entrapment and loop extrusion. Here, we explore the DNA loading process of the bacterial SMC complex MukBEF. Using cryoelectron microscopy (cryo-EM), we demonstrate that ATP binding opens one of MukBEF's three potential DNA entry gates, exposing a DNA capture site that positions DNA at the open neck gate. We discover that the gp5.9 protein of bacteriophage T7 blocks this capture site by DNA mimicry, thereby preventing DNA loading and inactivating MukBEF. We propose a comprehensive and unidirectional loading mechanism in which DNA is first captured at the complex's periphery and then ingested through the DNA entry gate, powered by a single cycle of ATP hydrolysis. These findings illuminate a fundamental aspect of how ubiquitous DNA organizers are primed for genome maintenance and demonstrate how this process can be disrupted by viruses.

445. A single-cell atlas reveals immune heterogeneity in anti-PD-1-treated non-small cell lung cancer.

作者: Zedao Liu.;Zhenlin Yang.;Junqi Wu.;Wenjie Zhang.;Yuxuan Sun.;Chao Zhang.;Guangyu Bai.;Li Yang.;Hongtao Fan.;Yawen Chen.;Lei Zhang.;Benyuan Jiang.;Xiaoyan Liu.;Xiaoshi Ma.;Wei Tang.;Chang Liu.;Yang Qu.;Lixu Yan.;Deping Zhao.;Yilong Wu.;Shun He.;Long Xu.;Lishan Peng.;Xiaowei Chen.;Bolun Zhou.;Liang Zhao.;Zhangyi Zhao.;Fengwei Tan.;Wanting Zhang.;Dingcheng Yi.;Xiangjie Li.;Qianqian Gao.;Guangjian Zhang.;Yongjie Wang.;Minglei Yang.;Honghao Fu.;Yongjun Guo.;Xueda Hu.;Qingyuan Cai.;Lu Qi.;Yufei Bo.;Hui Peng.;Zhigang Tian.;Yunlang She.;Chang Zou.;Linnan Zhu.;Sijin Cheng.;Yi Zhang.;Wenzhao Zhong.;Chang Chen.;Shugeng Gao.;Zemin Zhang.
来源: Cell. 2025年188卷11期3081-3096.e19页
Anti-PD-(L)1 treatment is standard for non-small cell lung cancer (NSCLC), but patients show variable responses to the same regimen. The tumor immune microenvironment (TIME) is associated with immunotherapy response, yet the heterogeneous underlying therapeutic outcomes remain underexplored. We applied single-cell RNA and TCR sequencing (scRNA/TCR-seq) to analyze surgical tumor samples from 234 NSCLC patients post-neoadjuvant chemo-immunotherapy. Analyses revealed five distinct TIME subtypes with varying major pathological response (MPR) rates. MPR patients had elevated levels of FGFBP2+ NK/NK-like T cells, memory B cells, or effector T cells, while non-MPR patients showed higher CCR8+ Tregs. T cell clonal expansion analyses unveiled heterogeneity in non-MPR patients, marked by varying expansions of Tex-relevant cells and CCR8+ Tregs. Precursor exhausted T cells (Texp cells) correlated with recurrence-free survival, identifying a patient subgroup with reduced recurrence risk despite lack of MPR. Our study dissects TIME heterogeneity in response to chemoimmunotherapy, offering insights for NSCLC management.

446. Large language models deconstruct the clinical intuition behind diagnosing autism.

作者: Jack Stanley.;Emmett Rabot.;Siva Reddy.;Eugene Belilovsky.;Laurent Mottron.;Danilo Bzdok.
来源: Cell. 2025年188卷8期2235-2248.e10页
Efforts to use genome-wide assays or brain scans to diagnose autism have seen diminishing returns. Yet the clinical intuition of healthcare professionals, based on longstanding first-hand experience, remains the gold standard for diagnosis of autism. We leveraged deep learning to deconstruct and interrogate the logic of expert clinician intuition from clinical reports to inform our understanding of autism. After pre-training on hundreds of millions of general sentences, we finessed large language models (LLMs) on >4,000 free-form health records from healthcare professionals to distinguish confirmed versus suspected autism cases. By introducing an explainability strategy, our extended language model architecture could pin down the most salient single sentences in what drives clinical thinking toward correct diagnoses. Our framework flagged the most autism-critical DSM-5 criteria to be stereotyped repetitive behaviors, special interests, and perception-based behaviors, which challenges today's focus on deficits in social interplay, suggesting necessary revision of long-trusted diagnostic criteria in gold-standard instruments.

447. Functional and antigenic landscape of the Nipah virus receptor-binding protein.

作者: Brendan B Larsen.;Teagan McMahon.;Jack T Brown.;Zhaoqian Wang.;Caelan E Radford.;James E Crowe.;David Veesler.;Jesse D Bloom.
来源: Cell. 2025年188卷9期2480-2494.e22页
Nipah virus recurrently spills over to humans, causing fatal infections. The viral receptor-binding protein (RBP or G) attaches to host receptors and is a major target of neutralizing antibodies. Here, we use deep mutational scanning to measure how all amino-acid mutations to the RBP affect cell entry, receptor binding, and escape from neutralizing antibodies. We identify functionally constrained regions of the RBP, including sites involved in oligomerization, along with mutations that differentially modulate RBP binding to its two ephrin receptors. We map escape mutations for six anti-RBP antibodies and find that few antigenic mutations are present in natural Nipah strains. Our findings offer insights into the potential for functional and antigenic evolution of the RBP that can inform the development of antibody therapies and vaccines.

448. Enteric neuronal Piezo1 maintains mechanical and immunological homeostasis by sensing force.

作者: Zili Xie.;Lillian Rose.;Jing Feng.;Yonghui Zhao.;Yisi Lu.;Harry Kane.;Timothy J Hibberd.;Xueming Hu.;Zhen Wang.;Kaikai Zang.;Xingliang Yang.;Quentin Richardson.;Rahmeh Othman.;Olivia Venezia.;Ademi Zhakyp.;Fang Gao.;Nobuya Abe.;Keren Vigeland.;Hongshen Wang.;Camren Branch.;Coco Duizer.;Liwen Deng.;Xia Meng.;Lydia Zamidar.;Max Hauptschein.;Ronan Bergin.;Xinzhong Dong.;Issac M Chiu.;Brian S Kim.;Nick J Spencer.;Hongzhen Hu.;Ruaidhrí Jackson.
来源: Cell. 2025年188卷9期2417-2432.e19页
The gastrointestinal (GI) tract experiences a myriad of mechanical forces while orchestrating digestion and barrier immunity. A central conductor of these processes, the enteric nervous system (ENS), detects luminal pressure to regulate peristalsis independently of extrinsic input from the central and peripheral nervous systems. However, how the ∼500 million enteric neurons that reside in the GI tract sense and respond to force remains unknown. Herein, we establish that the mechanosensor Piezo1 is functionally expressed in cholinergic enteric neurons. Optogenetic stimulation of Piezo1+ cholinergic enteric neurons drives colonic motility, while Piezo1 deficiency reduces cholinergic neuronal activity and slows peristalsis. Additionally, Piezo1 deficiency in cholinergic enteric neurons abolishes exercise-induced acceleration of GI motility. Finally, we uncover that enteric neuronal Piezo1 function is required for motility alterations in colitis and acts to prevent aberrant inflammation and tissue damage. This work uncovers how the ENS senses and responds to mechanical force.

449. Nanoscale DNA tracing reveals the self-organization mechanism of mitotic chromosomes.

作者: Kai Sandvold Beckwith.;Andreas Brunner.;Natalia Rosalia Morero.;Ralf Jungmann.;Jan Ellenberg.
来源: Cell. 2025年188卷10期2656-2669.e17页
How genomic DNA is folded during cell division to form the characteristic rod-shaped mitotic chromosomes essential for faithful genome inheritance is a long-standing open question in biology. Here, we use nanoscale DNA tracing in single dividing cells to directly visualize how the 3D fold of genomic DNA changes during mitosis at scales from single loops to entire chromosomes. Our structural analysis reveals a characteristic genome scaling minimum of 6-8 megabases in mitosis. Combined with data-driven modeling and molecular perturbations, we can show that very large and strongly overlapping loops formed by condensins are the fundamental structuring principle of mitotic chromosomes. These loops compact chromosomes locally and globally to the limit set by chromatin self-repulsion. The characteristic length, density, and increasingly overlapping structure of mitotic loops we observe in 3D fully explain how the rod-shaped mitotic chromosome structure emerges by self-organization during cell division.

450. Meningeal lymphatics-microglia axis regulates synaptic physiology.

作者: Kyungdeok Kim.;Daviti Abramishvili.;Siling Du.;Zachary Papadopoulos.;Jay Cao.;Jasmin Herz.;Igor Smirnov.;Jean-Leon Thomas.;Marco Colonna.;Jonathan Kipnis.
来源: Cell. 2025年188卷10期2705-2719.e23页
Meningeal lymphatics serve as an outlet for cerebrospinal fluid, and their dysfunction is associated with various neurodegenerative conditions. Previous studies have demonstrated that dysfunctional meningeal lymphatics evoke behavioral changes, but the neural mechanisms underlying these changes have remained elusive. Here, we show that prolonged impairment of meningeal lymphatics alters the balance of cortical excitatory and inhibitory synaptic inputs, accompanied by deficits in memory tasks. These synaptic and behavioral alterations induced by lymphatic dysfunction are mediated by microglia, leading to increased expression of the interleukin 6 gene (Il6). IL-6 drives inhibitory synapse phenotypes via a combination of trans- and classical IL-6 signaling. Restoring meningeal lymphatic function in aged mice reverses age-associated synaptic and behavioral alterations. Our findings suggest that dysfunctional meningeal lymphatics adversely impact cortical circuitry through an IL-6-dependent mechanism and identify a potential target for treating aging-associated cognitive decline.

451. Microtubules in Asgard archaea.

作者: Florian Wollweber.;Jingwei Xu.;Rafael I Ponce-Toledo.;Florina Marxer.;Thiago Rodrigues-Oliveira.;Anja Pössnecker.;Zhen-Hao Luo.;Jessie James Limlingan Malit.;Anastasiia Kokhanovska.;Michal Wieczorek.;Christa Schleper.;Martin Pilhofer.
来源: Cell. 2025年188卷9期2451-2464.e26页
Microtubules are a hallmark of eukaryotes. Archaeal and bacterial homologs of tubulins typically form homopolymers and non-tubular superstructures. The origin of heterodimeric tubulins assembling into microtubules remains unclear. Here, we report the discovery of microtubule-forming tubulins in Asgard archaea, the closest known relatives of eukaryotes. These Asgard tubulins (AtubA/B) are closely related to eukaryotic α/β-tubulins and the enigmatic bacterial tubulins BtubA/B. Proteomics of Candidatus Lokiarchaeum ossiferum showed that AtubA/B were highly expressed. Cryoelectron microscopy structures demonstrate that AtubA/B form eukaryote-like heterodimers, which assembled into 5-protofilament bona fide microtubules in vitro. The additional paralog AtubB2 lacks a nucleotide-binding site and competitively displaced AtubB. These AtubA/B2 heterodimers polymerized into 7-protofilament non-canonical microtubules. In a sub-population of Ca. Lokiarchaeum ossiferum cells, cryo-tomography revealed tubular structures, while expansion microscopy identified AtubA/B cytoskeletal assemblies. Our findings suggest a pre-eukaryotic origin of microtubules and provide a framework for understanding the fundamental principles of microtubule assembly.

452. Turnover atlas of proteome and phosphoproteome across mouse tissues and brain regions.

作者: Wenxue Li.;Abhijit Dasgupta.;Ka Yang.;Shisheng Wang.;Nisha Hemandhar-Kumar.;Surendhar R Chepyala.;Jay M Yarbro.;Zhenyi Hu.;Barbora Salovska.;Eugenio F Fornasiero.;Junmin Peng.;Yansheng Liu.
来源: Cell. 2025年188卷8期2267-2287.e21页
Understanding how proteins in different mammalian tissues are regulated is central to biology. Protein abundance, turnover, and post-translational modifications such as phosphorylation are key factors that determine tissue-specific proteome properties. However, these properties are challenging to study across tissues and remain poorly understood. Here, we present Turnover-PPT, a comprehensive resource mapping the abundance and lifetime of 11,000 proteins and 40,000 phosphosites in eight mouse tissues and various brain regions using advanced proteomics and stable isotope labeling. We reveal tissue-specific short- and long-lived proteins, strong correlations between interacting protein lifetimes, and distinct impacts of phosphorylation on protein turnover. Notably, we discover a remarkable pattern of turnover changes for peroxisome proteins in specific tissues and that phosphorylation regulates the stability of neurodegeneration-related proteins, such as Tau and α-synuclein. Thus, Turnover-PPT provides fundamental insights into protein stability, tissue dynamic proteotypes, and functional protein phosphorylation and is accessible via an interactive web-based portal at https://yslproteomics.shinyapps.io/tissuePPT.

453. SnapShot: Human sperm-egg interface proteins.

作者: Emily Forster.;Xinyin Wang.;Abenan Thayaparan.;Jeffrey E Lee.
来源: Cell. 2025年188卷6期1746-1746.e1页
Human fertilization is a complex, highly regulated process that involves intricate molecular interactions between sperm and egg. Ultimately, this process culminates in the fusion of the gamete membranes to form a zygote. Gene disruption studies in mice have identified several critical fertilization factors. This SnapShot highlights the structure function of key proteins at the sperm-egg interface, providing insights into the mechanism of fertilization. To view this SnapShot, open or download the PDF.

454. Exploring the plant microbiome: A pathway to climate-smart crops.

作者: An-Hui Ge.;Ertao Wang.
来源: Cell. 2025年188卷6期1469-1485页
The advent of semi-dwarf crop varieties and fertilizers during the Green Revolution boosted yields and food security. However, unintended consequences such as environmental pollution and greenhouse gas emissions underscore the need for strategies to mitigate these impacts. Manipulating rhizosphere microbiomes, an aspect overlooked during crop domestication, offers a pathway for sustainable agriculture. We propose that modulating plant microbiomes can help establish "climate-smart crops" that improve yield and reduce negative impacts on the environment. Our proposed framework integrates plant genotype, root exudates, and microbes to optimize nutrient cycling, improve stress resilience, and expedite carbon sequestration. Integrating unselected ecological traits into crop breeding can promote agricultural sustainability, illuminating the nexus between plant genetics and ecosystem functioning.

455. Global surveillance and countermeasures for ACE2-using MERS-related coronaviruses with spillover risk.

作者: Shibo Jiang.;Fan Wu.
来源: Cell. 2025年188卷6期1465-1468页
Three studies published in this issue of Cell reveal that multiple MERS-related coronaviruses (MERSr-CoVs) utilize ACE2, rather than the canonical Merbecovirus receptor DPP4, for cell entry. These ACE2-dependent MERSr-CoVs pose a risk of zoonotic transmission to humans with high transmissibility potential like SARS-CoV-2, thus calling for global surveillance and countermeasures.

456. Small-molecule hypoxia therapy in mitochondrial disease.

作者: Marni J Falk.
来源: Cell. 2025年188卷6期1462-1465页
In this issue of Cell, Blume et al. provide compelling rationale for pursuing pharmacologic optimization of a small-molecule "HypoxyStat," which left-shifts the oxyhemoglobin dissociation curve in red blood cells in an attempt to induce an effective and sustained reduction of chronic tissue hyperoxia in primary mitochondrial disease (PMD) and was well-tolerated and effective for both pre-symptomatic and advanced disease treatment to extend survival and improve neurologic outcomes in a mouse model of Leigh syndrome spectrum.

457. Transcending life and death: The ultimate cargo of aged neutrophils.

作者: Lai Guan Ng.;Immanuel Kwok.
来源: Cell. 2025年188卷6期1460-1462页
Neutrophils secrete a variety of mediators throughout their lifespan but are mostly associated with pro-inflammatory functions. In this issue of Cell, Hsu et al. describe a new class of extracellular vesicles produced solely by aged neutrophils that elicit anti-inflammatory effects that extend beyond neutrophil lifespan.

458. Growth of the maternal intestine during reproduction.

作者: Tomotsune Ameku.;Anna Laddach.;Hannah Beckwith.;Alexandra Milona.;Loranzie S Rogers.;Cornelia Schwayer.;Emma Nye.;Iain R Tough.;Jean-Louis Thoumas.;Umesh Kumar Gautam.;Yi-Fang Wang.;Shreya Jha.;Alvaro Castano-Medina.;Christopher Amourda.;Patric M Vaelli.;Sira Gevers.;Elaine E Irvine.;Leah Meyer.;Ivan Andrew.;Ka Lok Choi.;Bhavik Patel.;Alice J Francis.;Chris Studd.;Laurence Game.;George Young.;Kevin G Murphy.;Bryn Owen.;Dominic J Withers.;Maria Rodriguez-Colman.;Helen M Cox.;Prisca Liberali.;Martin Schwarzer.;François Leulier.;Vassilis Pachnis.;Nicholas W Bellono.;Irene Miguel-Aliaga.
来源: Cell. 2025年188卷10期2738-2756.e22页
The organs of many female animals are remodeled by reproduction. Using the mouse intestine, a striking and tractable model of organ resizing, we find that reproductive remodeling is anticipatory and distinct from diet- or microbiota-induced resizing. Reproductive remodeling involves partially irreversible elongation of the small intestine and fully reversible growth of its epithelial villi, associated with an expansion of isthmus progenitors and accelerated enterocyte migration. We identify induction of the SGLT3a transporter in a subset of enterocytes as an early reproductive hallmark. Electrophysiological and genetic interrogations indicate that SGLT3a does not sustain digestive functions or enterocyte health; rather, it detects protons and sodium to extrinsically support the expansion of adjacent Fgfbp1-positive isthmus progenitors, promoting villus growth. Our findings reveal unanticipated specificity to physiological organ remodeling. We suggest that organ- and state-specific growth programs could be leveraged to improve pregnancy outcomes or prevent maladaptive consequences of such growth.

459. Asian diversity in human immune cells.

作者: Kian Hong Kock.;Le Min Tan.;Kyung Yeon Han.;Yoshinari Ando.;Damita Jevapatarakul.;Ankita Chatterjee.;Quy Xiao Xuan Lin.;Eliora Violain Buyamin.;Radhika Sonthalia.;Deepa Rajagopalan.;Yoshihiko Tomofuji.;Shvetha Sankaran.;Mi-So Park.;Mai Abe.;Juthamard Chantaraamporn.;Seiko Furukawa.;Supratim Ghosh.;Gyo Inoue.;Miki Kojima.;Tsukasa Kouno.;Jinyeong Lim.;Keiko Myouzen.;Sarintip Nguantad.;Jin-Mi Oh.;Nirmala Arul Rayan.;Sumanta Sarkar.;Akari Suzuki.;Narita Thungsatianpun.;Prasanna Nori Venkatesh.;Jonathan Moody.;Masahiro Nakano.;Ziyue Chen.;Chi Tian.;Yuntian Zhang.;Yihan Tong.;Crystal T Y Tan.;Anteneh Mehari Tizazu.;Marie Loh.;You Yi Hwang.;Roger C Ho.;Anis Larbi.;Tze Pin Ng.;Hong-Hee Won.;Fred A Wright.;Alexandra-Chloé Villani.;Jong-Eun Park.;Murim Choi.;Boxiang Liu.;Arindam Maitra.;Manop Pithukpakorn.;Bhoom Suktitipat.;Kazuyoshi Ishigaki.;Yukinori Okada.;Kazuhiko Yamamoto.;Piero Carninci.;John C Chambers.;Chung-Chau Hon.;Ponpan Matangkasombut.;Varodom Charoensawan.;Partha P Majumder.;Jay W Shin.;Woong-Yang Park.;Shyam Prabhakar.
来源: Cell. 2025年188卷8期2288-2306.e24页
The relationships of human diversity with biomedical phenotypes are pervasive yet remain understudied, particularly in a single-cell genomics context. Here, we present the Asian Immune Diversity Atlas (AIDA), a multi-national single-cell RNA sequencing (scRNA-seq) healthy reference atlas of human immune cells. AIDA comprises 1,265,624 circulating immune cells from 619 donors, spanning 7 population groups across 5 Asian countries, and 6 controls. Though population groups are frequently compared at the continental level, we found that sub-continental diversity, age, and sex pervasively impacted cellular and molecular properties of immune cells. These included differential abundance of cell neighborhoods as well as cell populations and genes relevant to disease risk, pathogenesis, and diagnostics. We discovered functional genetic variants influencing cell-type-specific gene expression, which were under-represented in non-Asian populations, and helped contextualize disease-associated variants. AIDA enables analyses of multi-ancestry disease datasets and facilitates the development of precision medicine efforts in Asia and beyond.

460. Jumbo phage killer immune system targets early infection of nucleus-forming phages.

作者: Li Yuping.;Linlin Guan.;Isabelle Becher.;Kira S Makarova.;Xueli Cao.;Surabhi Hareendranath.;Jingwen Guan.;Frank Stein.;Siqi Yang.;Arne Boergel.;Karine Lapouge.;Kim Remans.;David Agard.;Mikhail Savitski.;Athanasios Typas.;Eugene V Koonin.;Yue Feng.;Joseph Bondy-Denomy.
来源: Cell. 2025年188卷8期2127-2140.e21页
Jumbo bacteriophages of the ϕKZ-like family assemble a lipid-based early phage infection (EPI) vesicle and a proteinaceous nucleus-like structure during infection. These structures protect the phage from nucleases and may create selective pressure for immunity mechanisms targeting this specific phage family. Here, we identify "jumbo phage killer" (Juk), a two-component immune system that terminates infection of ϕKZ-like phages, suppressing the expression of early phage genes and preventing phage DNA replication and phage nucleus assembly while saving the cell. JukA (formerly YaaW) rapidly senses the EPI vesicle by binding to an early-expressed phage protein, gp241, and then directly recruits JukB. The JukB effector structurally resembles a pore-forming toxin and destabilizes the EPI vesicle. Functional anti-ϕKZ JukA homologs are found across bacterial phyla, associated with diverse effectors. These findings reveal a widespread defense system that specifically targets early events executed by ϕKZ-like jumbo phages prior to phage nucleus assembly.
共有 15784 条符合本次的查询结果, 用时 2.8642708 秒