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Gap junctions deliver malonyl-CoA from soma to germline to support embryogenesis in Caenorhabditis elegans

机译:间隙交叉点从SOMA递送甲酰辅酶以植物中的秀丽丽雅菌菌胚胎发生

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摘要

Gap junctions are ubiquitous in metazoans and play critical roles in important biological processes, including electrical conduction and development. Yet, only a few defined molecules passing through gap junction channels have been linked to specific functions. We isolated gap junction channel mutants that reduce coupling between the soma and germ cells in the Caenorhabditis elegans gonad. We provide evidence that malonyl-CoA, the rate-limiting substrate for fatty acid synthesis (FAS), is produced in the soma and delivered through gap junctions to the germline; there it is used in fatty acid synthesis to critically support embryonic development. Separation of malonyl-CoA production from its site of utilization facilitates somatic control of germline development. Additionally, we demonstrate that loss of malonyl-CoA production in the intestine negatively impacts germline development independently of FAS. Our results suggest that metabolic outsourcing of malonyl-CoA may be a strategy by which the soma communicates nutritional status to the germline.
机译:间隙连接在美唑烷中普遍存在,在重要的生物过程中发挥关键作用,包括电导电和发展。然而,只有几个通过间隙结通道的定义分子已经与特定功能相关联。我们隔离间隙连接通道突变体,减少了秀丽隐杆线杆菌的菌羊和生殖细胞之间的偶联。我们提供了证据表明,脂肪酸合成(FAS)的丙酰-CoA,脂肪酸合成(FAS)的速率限制基材在SOMA中产生,并通过间隙结来送到树林中;它用于脂肪酸合成至关重要地支持胚胎发育。从其利用部位分离丙二酰基生产促进了种系的体细胞控制。此外,我们表明,肠道中的丙二酰CoA产量的丧失对Fas的独立影响产生负面影响。我们的研究结果表明,麦隆-CoA的代谢外包可能是SOMA将营养状况传达给种系的策略。

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