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Regulators of Lysosome Function and Dynamics in Caenorhabditis elegans

机译:秀丽隐杆线虫的溶酶体功能和动力学的调节剂。

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摘要

Lysosomes, the major membrane-bound degradative organelles, have a multitude of functions in eukaryotic cells. Lysosomes are the terminal compartments in the endocytic pathway, though they display highly dynamic behaviors, fusing with each other and with late endosomes in the endocytic pathway, and with the plasma membrane during regulated exocytosis and for wound repair. After fusing with late endosomes, lysosomes are reformed from the resulting hybrid organelles through a process that involves budding of a nascent lysosome, extension of the nascent lysosome from the hybrid organelle, while remaining connected by a membrane bridge, and scission of the membrane bridge to release the newly formed lysosome. The newly formed lysosomes undergo cycles of homotypic fusion and fission reactions to form mature lysosomes. In this study, we used a forward genetic screen in Caenorhabditis elegans to identify six regulators of lysosome biology. We show that these proteins function in different steps of lysosome biology, regulating lysosome formation, lysosome fusion, and lysosome degradation.
机译:溶酶体是膜结合的主要降解细胞器,在真核细胞中具有多种功能。溶酶体是内吞途径的末端区室,尽管它们显示出高度动态的行为,在内吞途径中彼此融合并与晚期内体融合,并在调节的胞吐作用和伤口修复过程中与质膜融合。与晚期内体融合后,通过以下过程从所得的混合细胞器中改造溶酶体,该过程涉及新生的溶酶体的萌芽,新生的溶酶体从杂交细胞器的延伸,同时保持通过膜桥的连接,以及将膜桥切断至释放新形成的溶酶体。新形成的溶酶体经历同型融合和裂变反应的循环以形成成熟的溶酶体。在这项研究中,我们在秀丽隐杆线虫中使用了正向遗传筛选来鉴定溶酶体生物学的六个调节剂。我们显示这些蛋白质在溶酶体生物学的不同步骤中起作用,调节溶酶体形成,溶酶体融合和溶酶体降解。

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