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首页> 外文期刊>Stem Cells >Endothelial Differentiation G Protein‐Coupled Receptor 5 Plays an Important Role in Induction and Maintenance of Pluripotency
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Endothelial Differentiation G Protein‐Coupled Receptor 5 Plays an Important Role in Induction and Maintenance of Pluripotency

机译:内皮分化G蛋白偶联受体5在多能性的诱导和维持中起重要作用

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摘要

Abstract Direct reprogramming of human somatic cells toward induced pluripotent stem cells holds great promise for regenerative medicine and basic biology. We used a high‐throughput small interfering RNA screening assay in the initiation phase of reprogramming for 784 genes belonging to kinase and phosphatase families and identified 68 repressors and 22 effectors. Six new candidates belonging to the family of the G protein‐coupled receptors (GPCRs) were identified, suggesting an important role for this key signaling pathway during somatic cell‐induced reprogramming. Downregulation of one of the key GPCR effectors, endothelial differentiation GPCR5 ( EDG5 ), impacted the maintenance of pluripotency, actin cytoskeleton organization, colony integrity, and focal adhesions in human embryonic stem cells, which were associated with the alteration in the RhoA‐ROCK‐Cofilin‐PAXILLIN‐actin signaling pathway. Similarly, downregulation of EDG5 during the initiation stage of somatic cell‐induced reprogramming resulted in alteration of cytoskeleton, loss of human‐induced pluripotent stem cell colony integrity, and a significant reduction in partially and fully reprogrammed cells as well as the number of alkaline phosphatase positive colonies at the end of the reprogramming process. Together, these data point to an important role of EDG5 in the maintenance and acquisition of pluripotency. S tem C ells 2019;37:318–331
机译:摘要促进人体细胞对诱导多能干细胞的直接重新编程对再生医学和基本生物学具有很大的承诺。我们在将784个基因的首重编程的起始阶段使用高通量小干扰RNA筛选测定,其属于激酶和磷酸酶家族,并确定了68个阻遏物和22个效应器。鉴定了属于G蛋白偶联受体(GPCR)家族的六个新候选者,表明在体细胞诱导的重编程期间该关键信号传导途径的重要作用。下调一个关键的GPCR效应器,内皮分化GPCR5(EDG5),影响人胚胎干细胞中的多能性,肌动蛋白细胞骨架组织,菌落完整性和局灶性粘连,这与RhoA岩石中的改变有关Cofilin-paxillin-肌动蛋白信号通路。类似地,在体细胞诱导的重编程的起始阶段期间EDG5的下调导致细胞骨架的改变,人诱导的多能干细胞菌落完整性的丧失,以及部分和完全重编程的细胞的显着减少以及碱性磷酸酶的数量重编程过程结束时的正殖民地。在一起,这些数据指向EDG5在维护和获取多能性的重要作用。 STEM C ells 2019; 37:318-331

著录项

  • 来源
    《Stem Cells》 |2019年第3期|共14页
  • 作者单位

    International Centre for Life Institute of Genetic MedicineNewcastle UniversityNewcastle United;

    International Centre for Life Institute of Genetic MedicineNewcastle UniversityNewcastle United;

    High Throughput Screening FacilityMedical SchoolNewcastle United Kingdom;

    International Centre for Life Institute of Genetic MedicineNewcastle UniversityNewcastle United;

    School of Mathematics and StatisticsNewcastle University Newcastle upon TyneUnited Kingdom;

    International Centre for Life Institute of Genetic MedicineNewcastle UniversityNewcastle United;

    Department of PharmacologyUniversity of CambridgeCambridge United Kingdom;

    International Centre for Life Institute of Genetic MedicineNewcastle UniversityNewcastle United;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    hESCs/hiPSCs; Human somatic cell reprogramming; Genome‐wide RNAi screen; GPCR; EDG5; Cytoskeleton;

    机译:HESCS / HIPSCS;人体细胞重编程;基因组RNAi筛选;GPCR;EDG5;细胞骨架;

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