Zhou Jing, Du Ya-Rui, Qin Wei-Hua, Hu Ye-Guang, Huang Yan-Nv, Bao Lan, Han Daishu, Mansouri Ahmed, Xu Guo-Liang
The State Key Laboratory of Molecular Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 320 Yueyang Road, Shanghai 200031, China.
Development. 2009 Feb;136(3):373-82. doi: 10.1242/dev.030858. Epub 2008 Dec 17.
During spermiogenesis, round spermatids are converted into motile sperm in mammals. The mechanisms responsible for sperm morphogenesis are poorly understood. We have characterized a novel protein, RIM-BP3, with a specialized function in spermatid development in mice. The RIM-BP3 protein is associated with the manchette, a transient microtubular structure believed to be important for morphogenesis during spermiogenesis. Targeted deletion of the RIM-BP3 gene resulted in male infertility owing to abnormal sperm heads, which are characterized by a deformed nucleus and a detached acrosome. Consistent with its role in morphogenesis, the RIM-BP3 protein physically associates with Hook1, a known manchette-bound protein required for sperm head morphogenesis. Interestingly, RIM-BP3 does not interact with the truncated Hook1 protein characterized in azh (abnormal spermatozoon head) mutant mice. Moreover, RIM-BP3 and Hook1 mutant mice display several common abnormalities, in particular with regard to the ectopic positioning of the manchette within the spermatid, a presumed cause of sperm head deformities. These observations suggest an essential role for RIM-BP3 in manchette development and function through its interaction with Hook1. As the occurrence of deformed spermatids is one of the common abnormalities leading to malfunctional sperm, identification of RIM-BP3 might provide insight into the molecular cue underlying causes of male infertility in humans.
在精子发生过程中,圆形精子细胞在哺乳动物体内转变为可游动的精子。然而,目前对于精子形态发生的机制仍知之甚少。我们鉴定了一种新蛋白RIM - BP3,它在小鼠精子细胞发育中具有特殊功能。RIM - BP3蛋白与精子颈部小带相关,精子颈部小带是一种短暂存在的微管结构,被认为在精子发生过程中的形态发生中起重要作用。对RIM - BP3基因进行靶向缺失导致雄性不育,原因是精子头部异常,其特征为细胞核变形和顶体分离。与其在形态发生中的作用一致,RIM - BP3蛋白与Hook1物理结合,Hook1是一种已知的与精子颈部小带结合且对精子头部形态发生必需的蛋白。有趣的是,RIM - BP3不与azh(异常精子头部)突变小鼠中鉴定出的截短型Hook1蛋白相互作用。此外,RIM - BP3和Hook1突变小鼠表现出一些共同的异常,特别是精子细胞内精子颈部小带的异位定位,这被认为是精子头部畸形的一个原因。这些观察结果表明,RIM - BP3通过与Hook1相互作用在精子颈部小带的发育和功能中起重要作用。由于畸形精子细胞的出现是导致精子功能异常的常见异常之一,RIM - BP3的鉴定可能为深入了解人类男性不育潜在原因的分子线索提供帮助。