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The cisd gene family regulates physiological germline apoptosis through ced-13 and the canonical cell death pathway in Caenorhabditis elegans

机译:cisd基因家族通过ced-13和秀丽隐杆线虫的规范性细胞死亡途径调节生理生殖细胞凋亡。

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摘要

Programmed cell death, which occurs through a conserved core molecular pathway, is important for fundamental developmental and homeostatic processes. The human iron–sulfur binding protein NAF-1/CISD2 binds to Bcl-2 and its disruption in cells leads to an increase in apoptosis. Other members of the CDGSH iron sulfur domain (CISD) family include mitoNEET/CISD1 and Miner2/CISD3. In humans, mutations in CISD2 result in Wolfram syndrome 2, a disease in which the patients display juvenile diabetes, neuropsychiatric disorders and defective platelet aggregation. The C. elegans genome contains three previously uncharacterized cisd genes that code for CISD-1, which has homology to mitoNEET/CISD1 and NAF-1/CISD2, and CISD-3.1 and CISD-3.2, both of which have homology to Miner2/CISD3. Disrupting the function of the cisd genes resulted in various germline abnormalities including distal tip cell migration defects and a significant increase in the number of cell corpses within the adult germline. This increased germ cell death is blocked by a gain-of-function mutation of the Bcl-2 homolog CED-9 and requires functional caspase CED-3 and the APAF-1 homolog CED-4. Furthermore, the increased germ cell death is facilitated by the pro-apoptotic, CED-9-binding protein CED-13, but not the related EGL-1 protein. This work is significant because it places the CISD family members as regulators of physiological germline programmed cell death acting through CED-13 and the core apoptotic machinery.
机译:通过保守的核心分子途径发生的程序性细胞死亡对于基本的发育和体内平衡过程很重要。人铁硫结合蛋白NAF-1 / CISD2与Bcl-2结合,其在细胞中的破坏导致凋亡增加。 CDGSH铁硫结构域(CISD)家族的其他成员包括mitoNEET / CISD1和Miner2 / CISD3。在人类中,CISD2突变会导致Wolfram综合征2,该病使患者表现出青少年糖尿病,神经精神疾病和血小板聚集不良。秀丽隐杆线虫基因组包含三个以前未鉴定的编码CISD-1的顺式基因,CISD-1与mitoNEET / CISD1和NAF-1 / CISD2以及CISD-3.1和CISD-3.2均与Miner2 / CISD3同源。破坏顺式基因的功能导致各种种系异常,包括远端尖端细胞迁移缺陷和成年种系中细胞尸体数量的显着增加。这种增加的生殖细胞死亡被Bcl-2同源物CED-9的功能获得突变所阻止,并且需要功能性半胱天冬酶CED-3和APAF-1同源物CED-4。此外,促凋亡的CED-9结合蛋白CED-13促进了生殖细胞死亡的增加,但相关的EGL-1蛋白却没有促进。这项工作意义重大,因为它将CISD家族成员作为通过CED-13和核心凋亡机制起作用的生理生殖细胞程序性细胞死亡的调节剂。

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