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不同受精率牛精子的综合蛋白质组学分析及与受精相关的生物标志物鉴定

Comprehensive proteomic analysis of bovine spermatozoa of varying fertility rates and identification of biomarkers associated with fertility.

作者信息

Peddinti Divyaswetha, Nanduri Bindu, Kaya Abdullah, Feugang Jean M, Burgess Shane C, Memili Erdogan

机构信息

Department of Basic Sciences, Mississippi State University, Mississippi State, MS 39762, USA.

出版信息

BMC Syst Biol. 2008 Feb 22;2:19. doi: 10.1186/1752-0509-2-19.

Abstract

BACKGROUND

Male infertility is a major problem for mammalian reproduction. However, molecular details including the underlying mechanisms of male fertility are still not known. A thorough understanding of these mechanisms is essential for obtaining consistently high reproductive efficiency and to ensure lower cost and time-loss by breeder.

RESULTS

Using high and low fertility bull spermatozoa, here we employed differential detergent fractionation multidimensional protein identification technology (DDF-Mud PIT) and identified 125 putative biomarkers of fertility. We next used quantitative Systems Biology modeling and canonical protein interaction pathways and networks to show that high fertility spermatozoa differ from low fertility spermatozoa in four main ways. Compared to sperm from low fertility bulls, sperm from high fertility bulls have higher expression of proteins involved in: energy metabolism, cell communication, spermatogenesis, and cell motility. Our data also suggests a hypothesis that low fertility sperm DNA integrity may be compromised because cell cycle: G2/M DNA damage checkpoint regulation was most significant signaling pathway identified in low fertility spermatozoa.

CONCLUSION

This is the first comprehensive description of the bovine spermatozoa proteome. Comparative proteomic analysis of high fertility and low fertility bulls, in the context of protein interaction networks identified putative molecular markers associated with high fertility phenotype.

摘要

背景

雄性不育是哺乳动物繁殖中的一个主要问题。然而,包括雄性生育力潜在机制在内的分子细节仍不清楚。深入了解这些机制对于持续获得高繁殖效率以及确保育种者降低成本和减少时间损失至关重要。

结果

利用高生育力和低生育力公牛的精子,我们在此采用差异去污剂分级多维蛋白质鉴定技术(DDF-Mud PIT),并鉴定出125个推定的生育力生物标志物。接下来,我们使用定量系统生物学建模以及典型蛋白质相互作用途径和网络,表明高生育力精子与低生育力精子在四个主要方面存在差异。与低生育力公牛的精子相比,高生育力公牛的精子在参与以下方面的蛋白质表达更高:能量代谢、细胞通讯、精子发生和细胞运动。我们的数据还提出了一个假设,即低生育力精子的DNA完整性可能受到损害,因为细胞周期:G2/M DNA损伤检查点调节是在低生育力精子中鉴定出的最显著信号通路。

结论

这是对牛精子蛋白质组的首次全面描述。在蛋白质相互作用网络的背景下,对高生育力和低生育力公牛进行比较蛋白质组分析,鉴定出了与高生育力表型相关的推定分子标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13e7/2291030/15594feec860/1752-0509-2-19-1.jpg

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