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Regulation of septin phosphorylation: SEPT12 phosphorylation in sperm septin assembly

机译:静止磷酸化的调节:精子静止组件中的9月12日磷酸化

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摘要

The sperm annulus, a septin-based ring structure, is important for reproductive physiology. It is composed of SEPT12-based septin core complex followed by assembling as octameric filament. In clinical examinations, mutations of Septin12 result in male infertility, immotile sperm, as well as sperm with defective annuli. The dynamic assembly of septin filaments is regulated by several post-translational modifications, including sumoylation, acetylation, and phosphorylation. Here, we briefly review the biological significance and the regulation of SEPT12 phosphorylation in the mammalian sperm physiology. During mammalian spermiogenesis, the phosphorylation of SEPT12 on Ser198 residue is important in regulating mammalian annulus architectures. SEPT12 phosphomimetic knock-in mice displayed poor male fertility due to weak sperm motility and loss of the sperm annulus. SEPT12 is phosphorylated via Protein kinase A (PKA), and its phosphorylation interfered with SEPT12 polymerization into complexes and filaments. Taken together, the phosphorylation status of SEPT12 is crucial for its function in regulating the mammalian sperm physiology.
机译:精子环,静止素的环结构,对生殖生理学是重要的。它由Sept12的Septin核心复合体组成,然后组装为八大丝丝。在临床检查中,SEPTIN12的突变导致男性不孕症,Immotile精子以及含有缺陷的精子。 Septin长丝的动态组装由几种翻译后修饰调节,包括平等,乙酰化和磷酸化。在这里,我们简要介绍了哺乳动物精子生理学中EST12磷酸化的生物学意义和调节。在哺乳动物精子发生期间,9月12日对Ser198残基的磷酸化对于调节哺乳动物环形架构是重要的。 9月12日磷酸磷酸乳蛋白小鼠由于精子运动弱和精子环空的丧失而呈现差的男性生育能力。 EST12通过蛋白激酶A(PKA)磷酸化,其磷酸化干扰了9012聚合成分和长丝。连同,9月12日的磷酸化状态对于其在调节哺乳动物精子生理学的功能至关重要。

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