应用基因组标记技术阐明精子特异性蛋白411(Ssp411)的功能。

Asian journal of andrology Pub Date : 2025-01-01 Epub Date: 2024-08-02 DOI:10.4103/aja202442
Xue-Hai Zhou, Min-Min Hua, Jia-Nan Tang, Bang-Guo Wu, Xue-Mei Wang, Chang-Gen Shi, Yang Yang, Jun Wu, Bin Wu, Bao-Li Zhang, Yi-Si Sun, Tian-Cheng Zhang, Hui-Juan Shi
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引用次数: 0

摘要

基因组标记项目(GTP)在解决人们对蛋白质功能认识的一个关键缺口方面发挥着举足轻重的作用。在这一框架内,我们成功生成了人类流感血凝素标记精子特异性蛋白 411(HA 标记 Ssp411)小鼠模型。该模型有助于探究 Ssp411 的表达和功能。我们的研究发现,Ssp411 在圆形精子、伸长精子、拉长精子和附睾精子中均有表达。对 Ssp411 在这些生殖细胞中分布情况的全面研究为其参与精子发生提供了新的视角。然而,要阐明这些功能的确切机理基础,进一步的深入研究势在必行。Ssp411在分裂期II(MII)卵母细胞、合子或2细胞期胚胎中均未检测到,这突显了它在早期胚胎发育中的复杂作用。这些发现不仅加深了我们对 Ssp411 在生殖生理学中作用的理解,而且极大地促进了 GTP 的总体目标,推动了精子发生和生殖生物学领域的突破性进展。
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Application of genome tagging technology in elucidating the function of sperm-specific protein 411 (Ssp411).

Abstract: The genome tagging project (GTP) plays a pivotal role in addressing a critical gap in the understanding of protein functions. Within this framework, we successfully generated a human influenza hemagglutinin-tagged sperm-specific protein 411 (HA-tagged Ssp411) mouse model. This model is instrumental in probing the expression and function of Ssp411. Our research revealed that Ssp411 is expressed in the round spermatids, elongating spermatids, elongated spermatids, and epididymal spermatozoa. The comprehensive examination of the distribution of Ssp411 in these germ cells offers new perspectives on its involvement in spermiogenesis. Nevertheless, rigorous further inquiry is imperative to elucidate the precise mechanistic underpinnings of these functions. Ssp411 is not detectable in metaphase II (MII) oocytes, zygotes, or 2-cell stage embryos, highlighting its intricate role in early embryonic development. These findings not only advance our understanding of the role of Ssp411 in reproductive physiology but also significantly contribute to the overarching goals of the GTP, fostering groundbreaking advancements in the fields of spermiogenesis and reproductive biology.

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