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| Open AccessAn evolutionary mechanism to assimilate new nutrient sensors into the mTORC1 pathway
Unmet expectations, a previously uncharacterized fly protein, is a SAM sensor for the mTORC1 pathway. Tracing the evolution of Unmet reveals that the pathway uses the GATOR2 complex to capture and repurpose ancestral enzymes as nutrient sensors.
- Grace Y. Liu
- , Patrick Jouandin
- & David M. Sabatini
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Article
| Open AccessThe EIF3H-HAX1 axis increases RAF-MEK-ERK signaling activity to promote colorectal cancer progression
Eukaryotic initiation translation factor 3 subunit h (EIF3H) possesses an alternative “moonlighting” function of deubiquitinase, while its role in colorectal carcinogenesis remains to be explored. Here the authors show that EIF3H deubiquitinates and stabilizes HAX1, which enhances RAF-MEK-ERK signaling to promote colorectal tumor growth and metastasis.
- Huilin Jin
- , Xiaoling Huang
- & Mong-Hong Lee
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Article
| Open AccessOsteocyte mitochondria regulate angiogenesis of transcortical vessels
Osteocytes are the key cellular components of cortical bone. Here they show that osteocytes transfer mitochondria to the endothelial cells of transcortical vessels (TCVs), which promotes angiogenesis and increases function of the TCV network.
- Peng Liao
- , Long Chen
- & Junjie Gao
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Article
| Open AccessGAS41 modulates ferroptosis by anchoring NRF2 on chromatin
GAS41 is recognized as a histone reader and oncogene, but the mechanism by which GAS41 contributes to tumorigenesis is not well understood. Here, the authors discover that GAS41 is a ferroptosis repressor that anchors NRF2 to chromatin, promoting tumor growth.
- Zhe Wang
- , Xin Yang
- & Wei Gu
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Article
| Open AccessAberrant non-canonical NF-κB signalling reprograms the epigenome landscape to drive oncogenic transcriptomes in multiple myeloma
The downstream molecular mechanisms following the activation of the NF-κB pathway in multiple myeloma (MM) remain to be characterised. Here, it is shown that aberrant non-canonical NF-κB signalling causes epigenomic reprogramming leading to transcriptional changes that favour MM progression.
- Daniel A. Ang
- , Jean-Michel Carter
- & Yinghui Li
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Article
| Open AccessThe AMPK-related kinase NUAK1 controls cortical axons branching by locally modulating mitochondrial metabolic functions
Mitochondria emerged as essential actors of neural circuits development. Here, the authors uncovered that the AMPK-related kinase NUAK1 controls axonal mitochondrial metabolism through the regulation of the mitochondrial microprotein BRAWNIN.
- Marine Lanfranchi
- , Sozerko Yandiev
- & Julien Courchet
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Matters Arising
| Open AccessReply to: Does the KDEL receptor cycle between the Golgi and the ER?
- Jurgen Denecke
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Matters Arising
| Open AccessDoes the KDEL receptor cycle between the Golgi and the ER?
- Fernando Aniento
- & David G. Robinson
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Article
| Open AccessRab GTPases and phosphoinositides fine-tune SNAREs dependent targeting specificity of intracellular vesicle traffic
Targeting of transport vesicles requires specific proteins and membrane lipids. Here, authors microinjected liposomes with a predetermined composition to show that targeting by SNAREs is refined when polyphosphoinositides and Rab GTPases are included.
- Seiichi Koike
- & Reinhard Jahn
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Article
| Open AccessA structure-based designed small molecule depletes hRpn13Pru and a select group of KEN box proteins
Here, the authors identify a small molecule degrader (XL44) for hRpn13 and solve the XL44-hRpn13 structure. XL44 induces apoptosis in myeloma cells with hRpn13 dependency and also targets KEN box proteins PCLAF and RRM2. Loss of hRpn13 and PCLAF abrogates XL44 restriction of cell viability.
- Xiuxiu Lu
- , Monika Chandravanshi
- & Kylie J. Walters
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Article
| Open AccessEpigenetic modulators link mitochondrial redox homeostasis to cardiac function in a sex-dependent manner
Efforts to treat heart failure with antioxidants have failed. Here, authors reveal a robust sex-dependent endogenous defense against oxidative damage and demonstrate antioxidative treatment’s efficacy solely in subjects with inadequate redox capacity.
- Zaher ElBeck
- , Mohammad Bakhtiar Hossain
- & Christer Betsholtz
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Article
| Open AccessBalancing competing effects of tissue growth and cytoskeletal regulation during Drosophila wing disc development
The authors integrate computational and quantitative approaches to elucidate how organ shape arises through the interplay between multiple growth pathways through regulation of both proliferation and the cytoskeleton.
- Nilay Kumar
- , Jennifer Rangel Ambriz
- & Mark Alber
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Article
| Open AccessPolyamine-mediated ferroptosis amplification acts as a targetable vulnerability in cancer
Ferroptosis plays an important role in response to radiotherapy and chemotherapy, however, the sensitivity of cancer cell to ferroptosis varies. Here, the authors show that ODC1-mediated polyamine synthesis induces ferroptosis and demonstrate the potential of targeting this axis by combining polyamine supplements with radiotherapy or chemotherapy in preclinical lung cancer models.
- Guoshu Bi
- , Jiaqi Liang
- & Cheng Zhan
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Article
| Open AccessOncogenic enhancers prime quiescent metastatic cells to escape NK immune surveillance by eliciting transcriptional memory
Metastasis arises from disseminated tumour cells (DTCs) while the underlying mechanism of DTCs plasticity remains underexplored. Here, the authors show that spatially organized oncogenic enhancers on chromatin sustain the establishment of retinoic acid (RA)-stimulated transcriptional memory through activation of SOX9, supporting the escape of quiescent DTCs from NK-mediated immune surveillance.
- Daniela Michelatti
- , Sven Beyes
- & Alessio Zippo
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Article
| Open AccessDrug-resistant EGFR mutations promote lung cancer by stabilizing interfaces in ligand-free kinase-active EGFR oligomers
The Epidermal Growth Factor Receptor (EGFR) is frequently found to be mutated in non-small cell lung cancer. Here, the authors show that EGFR lung cancer mutations promote the assembly of kinase-active dimers within ligand-free EGFR oligomers. These dimers bind ligand with high affinity and promote tumor growth.
- R. Sumanth Iyer
- , Sarah R. Needham
- & Marisa L. Martin-Fernandez
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Article
| Open AccessVCF1 is a p97/VCP cofactor promoting recognition of ubiquitylated p97-UFD1-NPL4 substrates
p97/VCP, a nexus of the ubiquitin system, recognizes and unfolds ubiquitylated substrates via multiple cofactors. Here, the authors identify VCF1, a nuclear cofactor promoting p97 recruitment to, and proteasomal degradation of, ubiquitylated targets.
- Ann Schirin Mirsanaye
- , Saskia Hoffmann
- & Niels Mailand
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Article
| Open AccessA fast-acting lipid checkpoint in G1 prevents mitotic defects
Lipid synthesis increases during the cell cycle to ensure sufficient membrane mass. Here, authors identify a lipid checkpoint in G1 phase that prevents cells from starting the cell cycle if lipid synthesis is low, thereby preventing mitotic defects.
- Marielle S. Köberlin
- , Yilin Fan
- & Tobias Meyer
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Article
| Open AccessCryo-EM structures of type IV pili complexed with nanobodies reveal immune escape mechanisms
Bacterial type IV pili are filamentous cell surface structures and candidate targets for vaccine development. Here, authors determine how antibodies interact with pili at the structural level providing insight into immune escape mechanisms and potential countermeasures.
- David Fernandez-Martinez
- , Youxin Kong
- & Guillaume Duménil
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Article
| Open AccessSenescence drives immunotherapy resistance by inducing an immunosuppressive tumor microenvironment
Recent evidence suggests that senescence can negatively affect immune cell function. Here the authors show that accumulation of senescent cells in tumor-bearing mice previously exposed to irradiation or chemotherapy is associated with resistance to immune checkpoint inhibitors, associated with an exacerbated immunosuppressive profile of tumor-infiltrating myeloid cells.
- Damien Maggiorani
- , Oanh Le
- & Christian Beauséjour
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Article
| Open AccessEvolutionary origin of Hoxc13-dependent skin appendages in amphibians
Hair is the main skin appendage of mammals. Here, the authors show that claws of clawed frogs and hair contain homologous keratins and depend on the same transcription factor, Hoxc13, suggesting a common evolutionary origin of these skin appendages.
- Marjolein Carron
- , Attila Placido Sachslehner
- & Leopold Eckhart
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Article
| Open AccessHepatic nutrient and hormone signaling to mTORC1 instructs the postnatal metabolic zonation of the liver
The liver is segregated into spatially organized areas that serve distinct functions, though how these zones are patterned remains unclear. Here they show that mTORC1 controls spatial segregation of liver metabolic functions via modulation of Wnt signaling, and find that impaired zonation is also observed in pigs given total parenteral nutrition.
- Ana Belén Plata-Gómez
- , Lucía de Prado-Rivas
- & Alejo Efeyan
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Article
| Open AccessLong noncoding RNA Malat1 protects against osteoporosis and bone metastasis
MALAT1 is a long non-coding RNA that is known to suppress breast cancer lung metastasis. Here the authors show that MALAT1 is downregulated during osteoclastogenesis and its loss derepresses Tead3, promoting Nfatc1-mediated osteoclast differentiation and enhancing bone metastasis.
- Yang Zhao
- , Jingyuan Ning
- & Li Ma
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Article
| Open AccessTherapeutic targeting nudix hydrolase 1 creates a MYC-driven metabolic vulnerability
MYC oncogene promotes tumourigenesis by coordinating cancer cell proliferation with metabolic adaptation to the consequent excessive oxidative stress. Here, the authors show that nudix hydrolase 1 (NUDT1) is a MYC-driven metabolic vulnerability and generate a NUDT1 protein degrader to treat preclinical MYC-associated cancer.
- Minhui Ye
- , Yingzhe Fang
- & Guoliang Qing
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Article
| Open AccessStructure of full-length ERGIC-53 in complex with MCFD2 for cargo transport
ERGIC-53 engages in the ER-to-Golgi transport of secretory and membrane proteins by unknown mechanisms. Here authors report a long flexible tetrameric structure of full-length ERGIC-53 complexed with its functional partner MCFD2 by cryo-EM.
- Satoshi Watanabe
- , Yoshiaki Kise
- & Kenji Inaba
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Article
| Open AccessTANGO6 regulates cell proliferation via COPI vesicle-mediated RPB2 nuclear entry
How RNA polymerase II subunits enter the nucleus is not well understood. Here, the authors show that Transport and Golgi organization protein 6, TANGO6, recruits RNA polymerase II subunit B2, RPB2, to the ER membrane in a retrograde manner and transports it to the nucleus with the aid of importins.
- Zhi Feng
- , Shengnan Liu
- & Li Li
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Article
| Open AccessAutophagy regulates the maturation of hematopoietic precursors in the embryo
The production of hematopoietic stem cells in the embryo is precisely regulated by various intrinsic and extrinsic factors. Here, the authors find that autophagy is involved in the maturation of hematopoietic precursors through nucleolin pathways.
- Yumin Liu
- , Linjuan Shi
- & Zhuan Li
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Article
| Open AccesspiRNA loading triggers MIWI translocation from the intermitochondrial cement to chromatoid body during mouse spermatogenesis
piRNA processing factors and piRNA/PIWI complex are found in intermitochondrial cement (IMC) and chromatoid body (CB). Here, the authors show that piRNA loading orchestrates MIWI translocation from the IMC to CB, demonstrating its crucial role in spermatogenesis.
- Huan Wei
- , Jie Gao
- & Mo-Fang Liu
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Article
| Open AccessRegulation of meiotic telomere dynamics through membrane fluidity promoted by AdipoR2-ELOVL2
Meiosis is a specialized cell division for generating germ cells. The authors show that the lipid composition in the cellular membrane influences meiosis-specific chromosomal dynamics in mouse testis.
- Jingjing Zhang
- , Mario Ruiz
- & Hiroki Shibuya
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Article
| Open AccessNME3 is a gatekeeper for DRP1-dependent mitophagy in hypoxia
NME3 is a member of NDPK family. Here, Chen et. al., discover that histidine phosphorylatable NME3 is required for hypoxia-induced mitophagy via PA-dependent interaction with Drp1, which is protected from MUL1-mediated ubiquitination for mitophagy.
- Chih-Wei Chen
- , Chi Su
- & Zee-Fen Chang
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Article
| Open AccessBiallelic NAA60 variants with impaired N-terminal acetylation capacity cause autosomal recessive primary familial brain calcifications
Most individuals with primary familial brain calcification (PFBC) remain genetically unsolved. Here the authors show that NAA60 biallelic variants cause PFBC, likely via reduced N-terminal acetylation and SLC20A2 levels with impaired phosphate uptake.
- Viorica Chelban
- , Henriette Aksnes
- & Henry Houlden
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Article
| Open AccessTheileria parasites sequester host eIF5A to escape elimination by host-mediated autophagy
Theileria parasites have evolved mechanisms to evade host cell defenses. Here, Villares et al use an anti-parasite drug to show how intracellular parasites sequester host eIF5A to escape elimination by autophagy pathways.
- Marie Villares
- , Nelly Lourenço
- & Jonathan B. Weitzman
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Article
| Open AccessInhibition of 7-dehydrocholesterol reductase prevents hepatic ferroptosis under an active state of sterol synthesis
Ferroptosis has been connected to liver disease through unclear mechanisms. Here, the authors identify the terminal enzyme of cholesterol synthesis, 7-dehydrocholesterol reductase, as a regulator of ferroptosis in hepatocytes that suppresses ferroptosis through 7-dehydrocholesterol accumulation.
- Naoya Yamada
- , Tadayoshi Karasawa
- & Masafumi Takahashi
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Article
| Open AccessSingle-cell division tracing and transcriptomics reveal cell types and differentiation paths in the regenerating lung
This study uses single-cell transcriptomics to examine how lung cells respond to targeted damage. The authors employ genetically modified mouse models and cell sorting to enrich for rare, actively dividing cells, revealing cell types/states and alternative differentiation paths.
- Leila R. Martins
- , Lina Sieverling
- & Claudia Scholl
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Article
| Open AccessPCDHA9 as a candidate gene for amyotrophic lateral sclerosis
Genetic mutations are found in only 15% of sporadic ALS. Here, authors identify PCDHA9 as a candidate ALS gene and elucidate detailed underlying pathogenesis using mice with Pcdhα9 mutations that develop typical ALS phenotype and hallmark pathology.
- Jie Zhong
- , Chaodong Wang
- & Zhiheng Xu
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Article
| Open AccessYTHDF2 governs muscle size through a targeted modulation of proteostasis
This study highlights the role of YTHDF2, a protein that recognizes m6A-modified RNA, in determining muscle size. The authors show a post-transcriptional mechanism regulating muscle catabolism and growth, prompting interest to address muscle wasting.
- Christopher J. Gilbert
- , Charles P. Rabolli
- & Federica Accornero
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Article
| Open AccessSimultaneous proteome localization and turnover analysis reveals spatiotemporal features of protein homeostasis disruptions
Protein function depends on their subcellular location and turnover rate. Here, the authors report a method to measure spatial and temporal proteome dynamics simultaneously, revealing compartment-specific protein turnover and translocation in cardiac cells under ER stress and carfilzomib treatment.
- Jordan Currie
- , Vyshnavi Manda
- & Edward Lau
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Article
| Open AccessMitochondrial metabolism sustains CD8+ T cell migration for an efficient infiltration into solid tumors
The migration of T cells into tumours and how this is regulated by metabolic pathways is not completely understood. Here the authors use human and xenograft mouse models to explore the functional changes in T cells during migration in tumours and how glycolytic and TCA cycle metabolism is involved.
- Luca Simula
- , Mattia Fumagalli
- & Emmanuel Donnadieu
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Article
| Open AccessTERRA-LSD1 phase separation promotes R-loop formation for telomere maintenance in ALT cancer cells
Here the authors show that the telomere repeat-containing RNA (TERRA) undergoes phase separation with the lysine-specific demethylase 1A (LSD1) to promote R-loop formation for homology-directed telomere DNA synthesis in the alternative lengthening of telomere (ALT) pathway.
- Meng Xu
- , Dulmi Senanayaka
- & Huaiying Zhang
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Article
| Open AccessDeficiency of ASGR1 promotes liver injury by increasing GP73-mediated hepatic endoplasmic reticulum stress
The genetic factors involved in liver injury remain largely unknown. Here, the authors show that ASGR1 deficiency induces liver injury by activating the GP73-mediated ER stress pathway, suggesting its role as a genetic determinant influencing susceptibility to liver injury.
- Zhe Zhang
- , Xiang Kai Leng
- & Jiang Wei Wu
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Article
| Open AccessActivity-dependent compartmentalization of dendritic mitochondria morphology through local regulation of fusion-fission balance in neurons in vivo
The mechanisms regulating mitochondrial architecture in neurons remain unclear. The authors report that in dendrites, mitochondria structure is specified by the CAMKK2-AMPK pathway through compartment-specific and activity-dependent levels of fission.
- Daniel M. Virga
- , Stevie Hamilton
- & Tommy L. Lewis Jr
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Article
| Open AccessViscosity-dependent control of protein synthesis and degradation
Xenopus egg extracts constitute a cell-like system for studying biochemical reactions. Here Chen and co-workers show that extract protein synthesis and degradation are differently affected by cytoplasmic concentration and viscosity.
- Yuping Chen
- , Jo-Hsi Huang
- & James E. Ferrell Jr.
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Article
| Open AccessStem Leydig cells support macrophage immunological homeostasis through mitochondrial transfer in mice
The role of stem Leydig cells in restoration of male fertility after acute injury is not clear. In an acute injury mouse model of testicular torsion, the authors show that Stem Leydig cells can restore testicular immunological homeostasis by mitochondria transfer to macrophages in a TRPM7-mediated manner.
- Ani Chi
- , Bicheng Yang
- & Min Zhang
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Article
| Open AccessCanonical and non-canonical integrin-based adhesions dynamically interconvert
Cells employ integrin-based adhesions with different molecular compositions to adhere to substrates. Here, the authors show that so-called “non-canonical” adhesions lacking focal adhesion components can convert to focal adhesions (and vice versa), through the selective exchange of components.
- Fabian Lukas
- , Claudia Matthaeus
- & Tanja Maritzen
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Article
| Open AccessRHBDL4-triggered downregulation of COPII adaptor protein TMED7 suppresses TLR4-mediated inflammatory signaling
Toll-like receptor 4 (TLR4) is a key pattern recognition receptor that primarily responds to ligation of bacterial lipopolysaccharide. Here the authors suggest the intramembrane protease RHBDL4 as a regulator of TLR4 signaling.
- Julia D. Knopf
- , Susanne S. Steigleder
- & Marius K. Lemberg
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Article
| Open AccessChloride intracellular channel (CLIC) proteins function as fusogens
The Chloride Intracellular Channel (CLIC) protein family is highly conserved, yet their function remains a matter of ongoing research. Here, authors reveal their ability to facilitate membrane fusion, shedding light on their physiological role.
- Bar Manori
- , Alisa Vaknin
- & Yoni Haitin
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Article
| Open AccessMicrotubule damage shapes the acetylation gradient
Microtubules are acetylated on the inside of their hollow lumen, a modification linked to their lifespan. Here, the authors show that damage holes act as entry points for a deacetylase to access the lumen, thereby locally counteracting acetylation.
- Mireia Andreu-Carbó
- , Cornelia Egoldt
- & Charlotte Aumeier
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Article
| Open AccessSARS-CoV-2 virulence factor ORF3a blocks lysosome function by modulating TBC1D5-dependent Rab7 GTPase cycle
SARS-CoV-2 uses the host endolysosomal system for replication and egress. Here the authors show that SARS-CoV-2 virulence factor ORF3a localizes to the late endocytic compartments of the host cell to disrupt Rab7 GTP to GDP cycling and block lysosome function in cargo degradation, while activated Rab7 promotes virus replication.
- Kshitiz Walia
- , Abhishek Sharma
- & Amit Tuli
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Article
| Open AccessCell-lysis sensing drives biofilm formation in Vibrio cholerae
Bacteria form matrix-encapsulated communities, called biofilms, which protect resident cells from environmental challenges. Here, the authors show that Vibrio cholerae cells detect environmental threats by sensing a cellular component released through kin cell lysis, which induces formation of biofilms by surviving cells.
- Jojo A. Prentice
- , Robert van de Weerd
- & Andrew A. Bridges
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Article
| Open AccessCentrosome amplification and aneuploidy driven by the HIV-1-induced Vpr•VprBP•Plk4 complex in CD4+ T cells
People living with HIV-1 are at an increased risk of developing various cancers. Here, the authors suggest that HIV-1-encoded Vpr can promote oncogenesis by forming a ternary complex with VprBP and Plk4 and inducing Plk4-dependent centriole overduplication and aneuploidy.
- Jung-Eun Park
- , Tae-Sung Kim
- & Kyung S. Lee
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