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Rbp4-Gal4,一种在减数分裂中激活的生殖系驱动基因,揭示了 VCP 在精母细胞发育中的功能。

Rbp4-Gal4, a germline driver that activates in meiosis, reveals functions for VCP in spermatid development.

机构信息

Department of Biological Sciences, Louisiana State University 202 Life Sciences Building, Baton Rouge, LA, USA.

出版信息

Fly (Austin). 2023 Dec;17(1):2234795. doi: 10.1080/19336934.2023.2234795.

Abstract

Valosin-containing protein (VCP) is a versatile and ubiquitously expressed AAA+ ATPase that regulates multiple stages of spermatogenesis. While VCP has documented roles in mitotic spermatogonia and meiotic spermatocytes, it is also highly expressed in post-meiotic spermatids, suggesting potential late-stage developmental functions as well. However, tools to assess late-stage activities of pleiotropic spermatogenesis genes such as are lacking. Available germline-specific Gal4 drivers activate in stem cells or spermatogonia; consequently, knocking down using one of these drivers disrupts or blocks early germ-cell development, precluding analysis of VCP in later stages. A Gal4 driver that activates later in development, such as at the meiotic spermatocyte stage, may permit functional analyses of VCP and other factors in post-meiotic stages. Here, we describe a germline-specific Gal4 driver, Rbp4-Gal4, which drives transgene expression beginning in the early spermatocyte stage. We find that Rbp4-Gal4-driven knockdown of causes defects in spermatid chromatin condensation and individualization without affecting earlier developmental stages. Interestingly, the defect in chromatin condensation appears linked to errors in the histone-to-protamine transition, a key event in spermatid development. Overall, our study reveals roles for VCP in spermatid development and establishes a powerful tool to dissect the functions of pleiotropic spermatogenesis genes.

摘要

包含缬氨酸的蛋白(VCP)是一种多功能且广泛表达的 AAA+ ATP 酶,可调节精子发生的多个阶段。虽然 VCP 在有丝分裂精原细胞和减数分裂精母细胞中有明确的作用,但它在减数分裂后精子中也高度表达,这表明它也具有潜在的晚期发育功能。然而,目前缺乏评估多效性精子发生基因(如)等晚期活动的工具。现有的生殖系特异性 Gal4 驱动子在干细胞或精原细胞中激活;因此,使用其中一种驱动子敲低会破坏或阻断早期生殖细胞发育,从而无法分析 VCP 在后期的作用。在发育后期(如减数分裂精母细胞阶段)激活的 Gal4 驱动子,可能允许对 VCP 和其他因素进行减数分裂后阶段的功能分析。在这里,我们描述了一种生殖系特异性 Gal4 驱动子 Rbp4-Gal4,它从早期精母细胞阶段开始驱动转基因表达。我们发现,Rbp4-Gal4 驱动的敲低会导致精子染色质凝聚和个体化缺陷,而不影响早期发育阶段。有趣的是,染色质凝聚的缺陷似乎与组蛋白到鱼精蛋白转换的错误有关,这是精子发生的一个关键事件。总的来说,我们的研究揭示了 VCP 在精子发生发育中的作用,并建立了一种强大的工具来剖析多效性精子发生基因的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a337/10339771/ec16376a5aa0/KFLY_A_2234795_F0001_OC.jpg

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