Agrifood Research Finland, Biotechnology and Food Research, Animal Genomics, FIN-31600 Jokioinen, Finland.
Mol Cell Endocrinol. 2013 Sep 5;377(1-2):44-55. doi: 10.1016/j.mce.2013.06.030. Epub 2013 Jul 2.
KIF3A motor protein is responsible for intraflagellar transport, which is required for protein delivery during axoneme formation in ciliated cells. The function of KIF3A during spermatogenesis is not known. In this study, we show that depletion of KIF3A causes severe impairments in sperm tail formation and interestingly, it also affects manchette organization and the shaping of sperm heads. Our results demonstrate the analogy between the mechanisms governing the formation of cilia in somatic cells and the formation of spermatozoa-specific flagella. Furthermore, this study reveals KIF3A as an important regulator of spermatogenesis and emphasizes the crucial role of KIF3A in maintaining male fertility. We also identified several novel interacting partners for KIF3A, including meiosis-specific nuclear structural protein 1 (MNS1) that colocalizes with KIF3A in the manchette and principal piece of the sperm tail. This study highlights the essential role of KIF3A-mediated microtubular transport in the development of spermatozoa and male fertility.
动力蛋白 KIF3A 负责鞭毛内运输,这对于纤毛细胞中轴丝形成过程中的蛋白运输是必需的。KIF3A 在精子发生中的功能尚不清楚。在本研究中,我们表明 KIF3A 的耗竭会导致精子尾部形成严重受损,有趣的是,它还会影响顶体套的组织和精子头部的形状。我们的结果表明,在体细胞中控制纤毛形成的机制与精子特有的鞭毛形成之间存在相似性。此外,本研究揭示了 KIF3A 是精子发生的重要调节因子,并强调了 KIF3A 在维持男性生育能力方面的关键作用。我们还鉴定了 KIF3A 的几个新的相互作用伙伴,包括减数分裂特异性核结构蛋白 1(MNS1),它与 KIF3A 在顶体套和精子尾部的主段中共定位。本研究强调了 KIF3A 介导的微管运输在精子发生和男性生育能力中的重要作用。