journal
https://read.qxmd.com/read/38574731/telomere-dysfunction-alters-intestinal-stem-cell-dynamics-to-promote-cancer
#21
JOURNAL ARTICLE
Kyle A LaBella, Wen-Hao Hsu, Jiexi Li, Yutao Qi, Yonghong Liu, Jingjing Liu, Chia-Chin Wu, Yang Liu, Zingzhi Song, Yiyun Lin, Jonathan M Blecher, Shan Jiang, Xiaoying Shang, Jincheng Han, Denise J Spring, Jianhua Zhang, Yan Xia, Ronald A DePinho
Telomere dynamics are linked to aging hallmarks, and age-associated telomere loss fuels the development of epithelial cancers. In Apc-mutant mice, the onset of DNA damage associated with telomere dysfunction has been shown to accelerate adenoma initiation via unknown mechanisms. Here, we observed that Apc-mutant mice engineered to experience telomere dysfunction show accelerated adenoma formation resulting from augmented cell competition and clonal expansion. Mechanistically, telomere dysfunction induces the repression of EZH2, resulting in the derepression of Wnt antagonists, which causes the differentiation of adjacent stem cells and a relative growth advantage to Apc-deficient telomere dysfunctional cells...
March 28, 2024: Developmental Cell
https://read.qxmd.com/read/38569548/scrna-seq-data-from-the-larval-drosophila-ventral-cord-provides-a-resource-for-studying-motor-systems-function-and-development
#22
JOURNAL ARTICLE
Tho Huu Nguyen, Rosario Vicidomini, Saumitra Dey Choudhury, Tae Hee Han, Dragan Maric, Thomas Brody, Mihaela Serpe
The Drosophila larval ventral nerve cord (VNC) shares many similarities with the spinal cord of vertebrates and has emerged as a major model for understanding the development and function of motor systems. Here, we use high-quality scRNA-seq, validated by anatomical identification, to create a comprehensive census of larval VNC cell types. We show that the neural lineages that comprise the adult VNC are already defined, but quiescent, at the larval stage. Using fluorescence-activated cell sorting (FACS)-enriched populations, we separate all motor neuron bundles and link individual neuron clusters to morphologically characterized known subtypes...
March 28, 2024: Developmental Cell
https://read.qxmd.com/read/38565145/defining-the-contribution-of-troy-positive-progenitor-cells-to-the-mouse-esophageal-epithelium
#23
JOURNAL ARTICLE
David Grommisch, Menghan Wang, Evelien Eenjes, Maja Svetličič, Qiaolin Deng, Pontus Giselsson, Maria Genander
Progenitor cells adapt their behavior in response to tissue demands. However, the molecular mechanisms controlling esophageal progenitor decisions remain largely unknown. Here, we demonstrate the presence of a Troy (Tnfrsf19)-expressing progenitor subpopulation localized to defined regions along the mouse esophageal axis. Lineage tracing and mathematical modeling demonstrate that Troy-positive progenitor cells are prone to undergoing symmetrical fate choices and contribute to esophageal tissue homeostasis long term...
March 28, 2024: Developmental Cell
https://read.qxmd.com/read/38554700/fibrous-periosteum-repairs-bone-fracture-and-maintains-the-healed-bone-throughout-mouse-adulthood
#24
JOURNAL ARTICLE
Yiming Liam Liu, Xinyu Thomas Tang, Hui Sophie Shu, Weiguo Zou, Bo O Zhou
Bone is regarded as one of few tissues that heals without fibrous scar. The outer layer of the periosteum is covered with fibrous tissue, whose function in bone formation is unknown. We herein developed a system to distinguish the fate of fibrous-layer periosteal cells (FL-PCs) from the skeletal stem/progenitor cells (SSPCs) in the cambium-layer periosteum and bone marrow in mice. We showed that FL-PCs did not participate in steady-state osteogenesis, but formed the main body of fibrocartilaginous callus during fracture healing...
March 27, 2024: Developmental Cell
https://read.qxmd.com/read/38569546/the-notch-pdgfr%C3%AE-axis-suppresses-brown-adipocyte-progenitor-differentiation-in-early-post-natal-mice
#25
JOURNAL ARTICLE
Zuoxiao Shi, Shaolei Xiong, Ruoci Hu, Zilai Wang, Jooman Park, Yanyu Qian, Jaden Wang, Pratibha Bhalla, Nipun Velupally, Qing Song, Zhenyuan Song, Minsun Stacey Jeon, Ke Kurt Zhang, Linlin Xie, Brian T Layden, Sang-Ging Ong, Yuwei Jiang
De novo brown adipogenesis holds potential in combating the epidemics of obesity and diabetes. However, the identity of brown adipocyte progenitor cells (APCs) and their regulation have not been extensively explored. Here, through in vivo lineage tracing and mouse modeling, we observed that platelet-derived growth factor receptor beta (PDGFRβ)+ pericytes give rise to developmental brown adipocytes but not to those in adult homeostasis. By contrast, T-box 18 (TBX18)+ pericytes contribute to brown adipogenesis throughout both developmental and adult stages, though in a depot-specific manner...
March 26, 2024: Developmental Cell
https://read.qxmd.com/read/38537630/villus-myofibroblasts-are-developmental-and-adult-progenitors-of-mammalian-gut-lymphatic-musculature
#26
JOURNAL ARTICLE
Bhargav D Sanketi, Madhav Mantri, Liqing Huang, Mohammad A Tavallaei, Shing Hu, Michael F Z Wang, Iwijn De Vlaminck, Natasza A Kurpios
Inside the finger-like intestinal projections called villi, strands of smooth muscle cells contract to propel absorbed dietary fats through the adjacent lymphatic capillary, the lacteal, sending fats into the systemic blood circulation for energy production. Despite this vital function, mechanisms of formation, assembly alongside lacteals, and maintenance of villus smooth muscle are unknown. By combining single-cell RNA sequencing and quantitative lineage tracing of the mouse intestine, we identified a local hierarchy of subepithelial fibroblast progenitors that differentiate into mature smooth muscle fibers via intermediate contractile myofibroblasts...
March 19, 2024: Developmental Cell
https://read.qxmd.com/read/38531357/spatial-patterning-controls-neuron-numbers-in-the-drosophila-visual-system
#27
JOURNAL ARTICLE
Jennifer A Malin, Yen-Chung Chen, Félix Simon, Evelyn Keefer, Claude Desplan
Neurons must be made in the correct proportions to communicate with the appropriate synaptic partners and form functional circuits. In the Drosophila visual system, multiple subtypes of distal medulla (Dm) inhibitory interneurons are made in distinct, reproducible numbers-from 5 to 800 per optic lobe. These neurons are born from a crescent-shaped neuroepithelium called the outer proliferation center (OPC), which can be subdivided into specific domains based on transcription factor and growth factor expression...
March 19, 2024: Developmental Cell
https://read.qxmd.com/read/38521056/s-nitrosylation-triggered-unfolded-protein-response-maintains-hematopoietic-progenitors-in-drosophila
#28
JOURNAL ARTICLE
Bumsik Cho, Mingyu Shin, Eunji Chang, Seogho Son, Incheol Shin, Jiwon Shim
The Drosophila lymph gland houses blood progenitors that give rise to myeloid-like blood cells. Initially, blood progenitors proliferate, but later, they become quiescent to maintain multipotency before differentiation. Despite the identification of various factors involved in multipotency maintenance, the cellular mechanism controlling blood progenitor quiescence remains elusive. Here, we identify the expression of nitric oxide synthase in blood progenitors, generating nitric oxide for post-translational S-nitrosylation of protein cysteine residues...
March 19, 2024: Developmental Cell
https://read.qxmd.com/read/38521055/metaplastic-regeneration-in-the-mouse-stomach-requires-a-reactive-oxygen-species-pathway
#29
JOURNAL ARTICLE
Zhi-Feng Miao, Jing-Xu Sun, Xuan-Zhang Huang, Shi Bai, Min-Jiao Pang, Jia-Yi Li, Han-Yu Chen, Qi-Yue Tong, Shi-Yu Ye, Xin-Yu Wang, Xiao-Hai Hu, Jing-Ying Li, Jin-Wei Zou, Wen Xu, Jun-Hao Yang, Xi Lu, Jason C Mills, Zhen-Ning Wang
In pyloric metaplasia, mature gastric chief cells reprogram via an evolutionarily conserved process termed paligenosis to re-enter the cell cycle and become spasmolytic polypeptide-expressing metaplasia (SPEM) cells. Here, we use single-cell RNA sequencing (scRNA-seq) following injury to the murine stomach to analyze mechanisms governing paligenosis at high resolution. Injury causes induced reactive oxygen species (ROS) with coordinated changes in mitochondrial activity and cellular metabolism, requiring the transcriptional mitochondrial regulator Ppargc1a (Pgc1α) and ROS regulator Nf2el2 (Nrf2)...
March 19, 2024: Developmental Cell
https://read.qxmd.com/read/38518768/spatially-resolved-proteomics-of-the-arabidopsis-stomatal-lineage-identifies-polarity-complexes-for-cell-divisions-and-stomatal-pores
#30
JOURNAL ARTICLE
Eva-Sophie Wallner, Andrea Mair, Dominik Handler, Claire McWhite, Shou-Ling Xu, Liam Dolan, Dominique C Bergmann
Cell polarity is used to guide asymmetric divisions and create morphologically diverse cells. We find that two oppositely oriented cortical polarity domains present during the asymmetric divisions in the Arabidopsis stomatal lineage are reconfigured into polar domains marking ventral (pore-forming) and outward-facing domains of maturing stomatal guard cells. Proteins that define these opposing polarity domains were used as baits in miniTurboID-based proximity labeling. Among differentially enriched proteins, we find kinases, putative microtubule-interacting proteins, and polar SOSEKIs with their effector ANGUSTIFOLIA...
March 18, 2024: Developmental Cell
https://read.qxmd.com/read/38508182/synchronized-assembly-of-the-oxidative-phosphorylation-system-controls-mitochondrial-respiration-in-yeast
#31
JOURNAL ARTICLE
Daiana N Moretti-Horten, Carlotta Peselj, Asli Aras Taskin, Lisa Myketin, Uwe Schulte, Oliver Einsle, Friedel Drepper, Marcin Luzarowski, F-Nora Vögtle
Control of protein stoichiometry is essential for cell function. Mitochondrial oxidative phosphorylation (OXPHOS) presents a complex stoichiometric challenge as the ratio of the electron transport chain (ETC) and ATP synthase must be tightly controlled, and assembly requires coordinated integration of proteins encoded in the nuclear and mitochondrial genome. How correct OXPHOS stoichiometry is achieved is unknown. We identify the MitochondrialRegulatory hub for respiratoryAssembly (MiRA) platform, which synchronizes ETC and ATP synthase biogenesis in yeast...
March 18, 2024: Developmental Cell
https://read.qxmd.com/read/38508181/single-cell-omics-identifies-inflammatory-signaling-as-a-trans-differentiation-trigger-in-mouse-embryos
#32
JOURNAL ARTICLE
Yifan Zhang, Zhixin Kang, Mengyao Liu, Lu Wang, Feng Liu
Trans-differentiation represents a direct lineage conversion; however, insufficient characterization of this process hinders its potential applications. Here, to explore a potential universal principal for trans-differentiation, we performed single-cell transcriptomic analysis of endothelial-to-hematopoietic transition (EHT), endothelial-to-mesenchymal transition, and epithelial-to-mesenchymal transition in mouse embryos. We applied three scoring indexes of entropies, cell-type signature transcription factor expression, and critical transition signals to show common features underpinning the fate plasticity of transition states...
March 18, 2024: Developmental Cell
https://read.qxmd.com/read/38484732/the-sirtuin-associated-human-senescence-program-converges-on-the-activation-of-placenta-specific-gene-pappa
#33
JOURNAL ARTICLE
Shijia Bi, Xiaoyu Jiang, Qianzhao Ji, Zehua Wang, Jie Ren, Si Wang, Yang Yu, Ruoqi Wang, Zunpeng Liu, Junhang Liu, Jianli Hu, Guoqiang Sun, Zeming Wu, Zhiqing Diao, Jingyi Li, Liang Sun, Juan Carlos Izpisua Belmonte, Weiqi Zhang, Guang-Hui Liu, Jing Qu
Sirtuins are pro-longevity genes with chromatin modulation potential, but how these properties are connected is not well understood. Here, we generated a panel of isogeneic human stem cell lines with SIRT1-SIRT7 knockouts and found that any sirtuin deficiency leads to accelerated cellular senescence. Through large-scale epigenomic analyses, we show how sirtuin deficiency alters genome organization and that genomic regions sensitive to sirtuin deficiency are preferentially enriched in active enhancers, thereby promoting interactions within topologically associated domains and the formation of de novo enhancer-promoter loops...
March 11, 2024: Developmental Cell
https://read.qxmd.com/read/38460509/control-of-poly-a-tail-length-and-translation-in-vertebrate-oocytes-and-early-embryos
#34
JOURNAL ARTICLE
Kehui Xiang, Jimmy Ly, David P Bartel
During oocyte maturation and early embryogenesis, changes in mRNA poly(A)-tail lengths strongly influence translation, but how these tail-length changes are orchestrated has been unclear. Here, we performed tail-length and translational profiling of mRNA reporter libraries (each with millions of 3' UTR sequence variants) in frog oocytes and embryos and in fish embryos. Contrasting to previously proposed cytoplasmic polyadenylation elements (CPEs), we found that a shorter element, UUUUA, together with the polyadenylation signal (PAS), specify cytoplasmic polyadenylation, and we identified contextual features that modulate the activity of both elements...
March 5, 2024: Developmental Cell
https://read.qxmd.com/read/38458189/ago1-controls-protein-folding-in-mouse-embryonic-stem-cell-fate-decisions
#35
JOURNAL ARTICLE
Qiuying Liu, Rachel M Pepin, Mariah K Novak, Katharine R Maschhoff, Kailey Worner, Wenqian Hu
Argonaute (AGO) proteins are evolutionarily conserved RNA-binding proteins that control gene expression through the small RNAs they interact with. Whether AGOs have regulatory roles independent of RNAs, however, is unknown. Here, we show that AGO1 controls cell fate decisions through facilitating protein folding. We found that in mouse embryonic stem cells (mESCs), while AGO2 facilitates differentiation via the microRNA (miRNA) pathway, AGO1 controls stemness independently of its binding to small RNAs. We determined that AGO1 specifically interacts with HOP, a co-chaperone for the HSP70 and HSP90 chaperones, and enhances the folding of a set of HOP client proteins with intrinsically disordered regions...
March 1, 2024: Developmental Cell
https://read.qxmd.com/read/38452758/type-i-gamma-phosphatidylinositol-phosphate-5-kinase-i5-controls-cell-sensitivity-to-interferon
#36
JOURNAL ARTICLE
Chinmoy Ghosh, Ruchi Kakar, Rosalie G Hoyle, Zheng Liu, Chunqing Guo, Jiong Li, Xiang-Yang Wang, Yue Sun
The interferon signaling pathway is critical for host defense by serving diverse functions in both innate and adaptive immune responses. Here, we show that type I gamma phosphatidylinositol phosphate 5-kinase i5 (PIPKIγi5), an enzyme that synthesizes phosphatidylinositol-4,5-bisphosphate (PI4,5P2 ), controls the sensitivity to interferon in both human and mouse cells. PIPKIγi5 directly binds to the interferon-gamma (IFN-γ) downstream effector signal transducer and activator of transcription 1 (STAT1), which suppresses the STAT1 dimerization, IFN-γ-induced STAT1 nuclear translocation, and transcription of IFN-γ-responsive genes...
March 1, 2024: Developmental Cell
https://read.qxmd.com/read/38447569/rim-aperture-of-yeast-autophagic-membranes-balances-cargo-inclusion-with-vesicle-maturation
#37
JOURNAL ARTICLE
Oren Shatz, Milana Fraiberg, Damilola Isola, Shubhankar Das, Olee Gogoi, Alexandra Polyansky, Eyal Shimoni, Tali Dadosh, Nili Dezorella, Sharon G Wolf, Zvulun Elazar
Autophagy eliminates cytoplasmic material by engulfment in membranous vesicles targeted for lysosome degradation. Nonselective autophagy coordinates sequestration of bulk cargo with the growth of the isolation membrane (IM) in a yet-unknown manner. Here, we show that in the budding yeast Saccharomyces cerevisiae, IMs expand while maintaining a rim sufficiently wide for sequestration of large cargo but tight enough to mature in due time. An obligate complex of Atg24/Snx4 with Atg20 or Snx41 assembles locally at the rim in a spatially extended manner that specifically depends on autophagic PI(3)P...
March 1, 2024: Developmental Cell
https://read.qxmd.com/read/38387459/aberrant-cortex-contractions-impact-mammalian-oocyte-quality
#38
JOURNAL ARTICLE
Elvira Nikalayevich, Gaëlle Letort, Ghislain de Labbey, Elena Todisco, Anastasia Shihabi, Hervé Turlier, Raphaël Voituriez, Mohamed Yahiatene, Xavier Pollet-Villard, Metello Innocenti, Melina Schuh, Marie-Emilie Terret, Marie-Hélène Verlhac
The cortex controls cell shape. In mouse oocytes, the cortex thickens in an Arp2/3-complex-dependent manner, ensuring chromosome positioning and segregation. Surprisingly, we identify that mouse oocytes lacking the Arp2/3 complex undergo cortical actin remodeling upon division, followed by cortical contractions that are unprecedented in mammalian oocytes. Using genetics, imaging, and machine learning, we show that these contractions stir the cytoplasm, resulting in impaired organelle organization and activity...
February 20, 2024: Developmental Cell
https://read.qxmd.com/read/38367622/a-metabolically-controlled-contact-site-between-vacuoles-and-lipid-droplets-in-yeast
#39
JOURNAL ARTICLE
Duy Trong Vien Diep, Javier Collado, Marie Hugenroth, Rebecca Martina Fausten, Louis Percifull, Mike Wälte, Christian Schuberth, Oliver Schmidt, Rubén Fernández-Busnadiego, Maria Bohnert
The lipid droplet (LD) organization proteins Ldo16 and Ldo45 affect multiple aspects of LD biology in yeast. They are linked to the LD biogenesis machinery seipin, and their loss causes defects in LD positioning, protein targeting, and breakdown. However, their molecular roles remained enigmatic. Here, we report that Ldo16/45 form a tether complex with Vac8 to create vacuole lipid droplet (vCLIP) contact sites, which can form in the absence of seipin. The phosphatidylinositol transfer protein (PITP) Pdr16 is a further vCLIP-resident recruited specifically by Ldo45...
February 16, 2024: Developmental Cell
https://read.qxmd.com/read/38387460/atg5-attenuates-inflammatory-signaling-in-mouse-embryonic-stem-cells-to-control-differentiation
#40
JOURNAL ARTICLE
Sheng Li, Jin Sun, Bo-Wen Zhang, Lu Yang, Ying-Cui Wan, Bei-Bei Chen, Nan Xu, Qian-Ru Xu, Juan Fan, Jia-Ni Shang, Rui Li, Chen-Ge Yu, Yan Xi, Su Chen
Attenuated inflammatory response is a property of embryonic stem cells (ESCs). However, the underlying mechanisms are unclear. Moreover, whether the attenuated inflammatory status is involved in ESC differentiation is also unknown. Here, we found that autophagy-related protein ATG5 is essential for both attenuated inflammatory response and differentiation of mouse ESCs and that attenuation of inflammatory signaling is required for mouse ESC differentiation. Mechanistically, ATG5 recruits FBXW7 to promote ubiquitination and proteasome-mediated degradation of β-TrCP1, resulting in the inhibition of nuclear factor κB (NF-κB) signaling and inflammatory response...
February 14, 2024: Developmental Cell
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