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具有不同交配系统的小鼠物种的精子蛋白质组比较研究

Comparative Sperm Proteomics in Mouse Species with Divergent Mating Systems.

作者信息

Vicens Alberto, Borziak Kirill, Karr Timothy L, Roldan Eduardo R S, Dorus Steve

机构信息

Reproductive Biology and Evolution Group, Department of Biodiversity and Biological Evolution, Museo Nacional de Ciencias Naturales (CSIC), Madrid, Spain.

Department of Biology, Syracuse University, Syracuse, NY.

出版信息

Mol Biol Evol. 2017 Jun 1;34(6):1403-1416. doi: 10.1093/molbev/msx084.

Abstract

Sexual selection is the pervasive force underlying the dramatic divergence of sperm form and function. Although it has been demonstrated that testis gene expression evolves rapidly, exploration of the proteomic basis of sperm diversity is in its infancy. We have employed a whole-cell proteomics approach to characterize sperm divergence among closely related Mus species that experience different sperm competition regimes and exhibit pronounced variation in sperm energetics, motility and fertilization capacity. Interspecific comparisons revealed significant abundance differences amongst proteins involved in fertilization capacity, including those that govern sperm-zona pellucida interactions, axoneme components and metabolic proteins. Ancestral reconstruction of relative testis size suggests that the reduction of zona pellucida binding proteins and heavy-chain dyneins was associated with a relaxation in sperm competition in the M. musculus lineage. Additionally, the decreased reliance on ATP derived from glycolysis in high sperm competition species was reflected in abundance decreases in glycolytic proteins of the principle piece in M. spretus and M. spicilegus. Comparison of protein abundance and stage-specific testis expression revealed a significant correlation during spermatid development when dynamic morphological changes occur. Proteins underlying sperm diversification were also more likely to be subject to translational repression, suggesting that sperm composition is influenced by the evolution of translation control mechanisms. The identification of functionally coherent classes of proteins relating to sperm competition highlights the utility of evolutionary proteomic analyses and reveals that both intensified and relaxed sperm competition can have a pronounced impact on the molecular composition of the male gamete.

摘要

性选择是精子形态和功能发生巨大差异的普遍驱动力。尽管已经证明睾丸基因表达进化迅速,但对精子多样性蛋白质组学基础的探索仍处于起步阶段。我们采用全细胞蛋白质组学方法,对密切相关的小家鼠物种之间的精子差异进行了表征,这些物种经历不同的精子竞争机制,并且在精子能量学、运动能力和受精能力方面表现出明显差异。种间比较揭示了参与受精能力的蛋白质之间存在显著的丰度差异,包括那些控制精子与透明带相互作用的蛋白质、轴丝成分和代谢蛋白质。相对睾丸大小的祖先重建表明,透明带结合蛋白和重链动力蛋白的减少与小家鼠谱系中精子竞争的放松有关。此外,在精子竞争激烈的物种中,对糖酵解衍生的ATP的依赖减少,这反映在斯氏小家鼠和尖齿小家鼠主段糖酵解蛋白的丰度降低上。蛋白质丰度与睾丸特定阶段表达的比较显示,在精子细胞发育过程中,当发生动态形态变化时,两者存在显著相关性。精子多样化背后的蛋白质也更有可能受到翻译抑制,这表明精子组成受翻译控制机制进化的影响。与精子竞争相关的功能相关蛋白质类别的鉴定突出了进化蛋白质组学分析的实用性,并揭示了激烈和放松的精子竞争都可能对雄配子的分子组成产生显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ce1/5435083/18786cb08e8e/msx084f1.jpg

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