Center of Life Sciences, Skolkovo Institute of Science and Technology, 143025 Skolkovo, Russia.
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, 119991 Moscow, Russia.
Int J Mol Sci. 2024 Jul 12;25(14):7663. doi: 10.3390/ijms25147663.
The proper functioning and assembly of the sperm flagella structures contribute significantly to spermatozoa motility and overall male fertility. However, the fine mechanisms of assembly steps are poorly studied due to the high diversity of cell types, low solubility of the corresponding protein structures, and high tissue and cell specificity. One of the open questions for investigation is the attachment of longitudinal columns to the doublets 3 and 8 of axonemal microtubules through the outer dense fibers. A number of mutations affecting the assembly of flagella in model organisms are known. Additionally, evolutionary genomics data and comparative analysis of flagella morphology are available for a set of non-model species. This review is devoted to the analysis of diverse ultrastructures of sperm flagellum of Metazoa combined with an overview of the evolutionary distribution and function of the mammalian fibrous sheath proteins.
精子鞭毛结构的正常功能和组装对精子的运动能力和男性整体生育能力有重要贡献。然而,由于细胞类型的高度多样性、相应蛋白质结构的低溶解度以及组织和细胞的高度特异性,组装步骤的精细机制研究得还不够充分。其中一个待研究的问题是通过外致密纤维将纵向柱连接到轴丝微管的三联体 3 和 8。许多影响模型生物鞭毛组装的突变是已知的。此外,还可以获得一组非模型物种的进化基因组学数据和鞭毛形态的比较分析。这篇综述致力于分析后生动物精子鞭毛的各种超微结构,并概述哺乳动物纤维鞘蛋白的进化分布和功能。