Dunleavy Jessica E M, Okuda Hidenobu, O'Connor Anne E, Merriner D Jo, O'Donnell Liza, Jamsai Duangporn, Bergmann Martin, O'Bryan Moira K
Development and Stem Cells Program, Monash Biomedicine Discovery Institute and The Department of Anatomy and Developmental Biology, Monash University, Melbourne, Victoria; Australia.
School of Biological Sciences, Monash University, Melbourne, Victoria; Australia.
PLoS Genet. 2017 Nov 14;13(11):e1007078. doi: 10.1371/journal.pgen.1007078. eCollection 2017 Nov.
The katanin microtubule-severing proteins are essential regulators of microtubule dynamics in a diverse range of species. Here we have defined critical roles for the poorly characterised katanin protein KATNAL2 in multiple aspects of spermatogenesis: the initiation of sperm tail growth from the basal body, sperm head shaping via the manchette, acrosome attachment, and ultimately sperm release. We present data suggesting that depending on context, KATNAL2 can partner with the regulatory protein KATNB1 or act autonomously. Moreover, our data indicate KATNAL2 may regulate δ- and ε-tubulin rather than classical α-β-tubulin microtubule polymers, suggesting the katanin family has a greater diversity of function than previously realised. Together with our previous research, showing the essential requirement of katanin proteins KATNAL1 and KATNB1 during spermatogenesis, our data supports the concept that in higher order species the presence of multiple katanins has allowed for subspecialisation of function within complex cellular settings such as the seminiferous epithelium.
katanin微管切断蛋白是多种物种中微管动力学的重要调节因子。在此,我们确定了特征描述较少的katanin蛋白KATNAL2在精子发生的多个方面的关键作用:精子尾部从基体开始生长、通过环行板进行精子头部塑形、顶体附着以及最终的精子释放。我们提供的数据表明,根据具体情况,KATNAL2可以与调节蛋白KATNB1合作或自主发挥作用。此外,我们的数据表明KATNAL2可能调节δ-微管蛋白和ε-微管蛋白,而不是经典的α-β-微管蛋白微管聚合物,这表明katanin家族的功能多样性比以前认识到的更大。连同我们之前的研究,显示katanin蛋白KATNAL1和KATNB1在精子发生过程中的基本需求,我们的数据支持这样的概念,即在高等物种中,多种katanin的存在允许在复杂的细胞环境(如曲细精管上皮)中实现功能的亚专业化。