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激素受体 4 在肌肉和不同的卵巢细胞类型中是必需的,以调节卵子发生的特定步骤。

Hormone receptor 4 is required in muscles and distinct ovarian cell types to regulate specific steps of oogenesis.

机构信息

Department of Biochemistry and Molecular Biology, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD 21205, USA.

Department of Biochemistry and Molecular Biology, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD 21205, USA

出版信息

Development. 2021 Mar 9;148(5):dev198663. doi: 10.1242/dev.198663.

Abstract

The conserved nuclear receptor superfamily has crucial roles in many processes, including reproduction. Nuclear receptors with known roles in oogenesis have been studied mostly in the context of their ovary-intrinsic requirement. Recent studies in , however, have begun to reveal new roles of nuclear receptor signaling in peripheral tissues in controlling reproduction. Here, we identified Hormone receptor 4 (Hr4) as an oogenesis regulator required in the ovary and muscles. Global knockdown leads to increased germline stem cell (GSC) loss, reduced GSC proliferation, early germline cyst death, slowed follicle growth and vitellogenic follicle degeneration. Tissue-specific knockdown experiments uncovered ovary-intrinsic and peripheral tissue requirements for In the ovary, Hr4 is required in the niche for GSC proliferation and in the germline for GSC maintenance. Hr4 functions in muscles to promote GSC maintenance and follicle growth. The specific tissues that require Hr4 for survival of early germline cysts and vitellogenic follicles remain unidentified. These results add to the few examples of muscles controlling gametogenesis and expand our understanding of the complexity of nuclear receptor regulation of various aspects of oogenesis.

摘要

保守的核受体超家族在许多过程中起着至关重要的作用,包括生殖。在卵巢内在要求的背景下,已经研究了具有已知在卵子发生中作用的核受体。然而,最近在 的研究开始揭示核受体信号在控制生殖的外周组织中的新作用。在这里,我们确定了激素受体 4(Hr4)作为卵子发生调节剂,在卵巢和肌肉中都需要它。全局 敲低导致生殖干细胞(GSC)丢失增加,GSC 增殖减少,早期生殖细胞囊泡死亡,滤泡生长和卵黄生成滤泡退化减慢。组织特异性敲低实验揭示了 在卵巢中的内在需求和外周组织对 GSC 增殖和 GSC 维持的需求。Hr4 在肌肉中起作用以促进 GSC 维持和滤泡生长。对于早期生殖细胞囊泡和卵黄生成滤泡存活所需的特定组织仍未确定。这些结果增加了肌肉控制配子发生的少数例子,并扩展了我们对核受体调节卵子发生各个方面的复杂性的理解。

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