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SEPT12 phosphorylation results in loss of the septin ring/sperm annulus defective sperm motility and poor male fertility

机译:SEPT12磷酸化会导致隔膜环/精子环丢失精子活动力下降和男性生育力差

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摘要

Septins are critical for numerous cellular processes through the formation of heteromeric filaments and rings indicating the importance of structural regulators in septin assembly. Several posttranslational modifications (PTMs) mediate the dynamics of septin filaments in yeast. However, little is known about the role of PTMs in regulating mammalian septin assembly, and the in vivo significance of PTMs on mammalian septin assembly and function remains unknown. Here, we showed that SEPT12 was phosphorylated on Ser198 using mass spectrometry, and we generated SEPT12 phosphomimetic knock-in (KI) mice to study its biological significance. The homozygous KI mice displayed poor male fertility due to deformed sperm with defective motility and loss of annulus, a septin-based ring structure. Immunohistochemistry of KI testicular sections suggested that SEPT12 phosphorylation inhibits septin ring assembly during annulus biogenesis. We also observed that SEPT12 was phosphorylated via PKA, and its phosphorylation interfered with SEPT12 polymerization into complexes and filaments. Collectively, our data indicate that SEPT12 phosphorylation inhibits SEPT12 filament formation, leading to loss of the sperm annulus/septin ring and poor male fertility. Thus, we provide the first in vivo genetic evidence characterizing importance of septin phosphorylation in the assembly, cellular function and physiological significance of septins.
机译:隔蛋白通过异源丝和环的形成对于众多细胞过程至关重要,这表明结构调节剂在隔蛋白组装中的重要性。几种翻译后修饰(PTM)介导酵母中Septin细丝的动力学。但是,关于PTM在调节哺乳动物Septin装配中的作用了解甚少,并且PTM在哺乳动物Septin装配和功能上的体内意义仍然未知。在这里,我们证明了使用质谱法将SEPT12在Ser198上磷酸化,并产生了SEPT12磷酸化敲入(KI)小鼠以研究其生物学意义。纯合的KI小鼠由于精子畸形,运动能力不良和环的缺失(基于Septin的环结构)而表现出较差的雄性繁殖力。 KI睾丸切片的免疫组织化学表明SEPT12磷酸化抑制环生化过程中的septin环组装。我们还观察到SEPT12通过PKA磷酸化,其磷酸化干扰SEPT12聚合成络合物和长丝。总体而言,我们的数据表明SEPT12磷酸化抑制SEPT12细丝形成,从而导致精子环带/ septin环的丢失和男性生育力差。因此,我们提供了第一个体内遗传学证据,表征了Septin磷酸化在装配中的重要性,细胞功能和Septin的生理学意义。

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