Comparative Proteomic Identification of Ram Sperm before and after In Vitro Capacitation

Author:

Chen Ya-Le1ORCID,Li Chun-Yan2,Wang Peng-Hui1,Wang Ru1,Zhuo Xian1,Zhang Yan2ORCID,Wang Shi-Jia1,Sun Zhi-Peng1ORCID,Chen Jia-Hong13,Cheng Xiao1,Zhang Zi-Jun13ORCID,Ren Chun-Huan13,Wang Qiang-Jun13ORCID

Affiliation:

1. College of Animal Science and Technology, Anhui Agricultural University, Hefei 230036, China

2. Yunnan Animal Science and Veterinary Institute, Kunming 650224, China

3. Center of Agriculture Technology Cooperation and Promotion of Dingyuan County, Chuzhou 233200, China

Abstract

Ram sperm undergo a sequence of physiological and biochemical changes collectively termed as capacitation to perform oocyte fertilization. However, the protein changes induced by capacitation remain in need of further exploration. Thus, the present study investigated the comparative proteomic profiling in ram spermatozoa under non-capacitating (NC) and capacitating (CAP) conditions in vitro using a liquid chromatography–tandem mass spectrometry combined with tandem mass tag labeling strategy. As a results, 2050 proteins were identified and quantified; 348 of them were differentially abundant, with 280 of the proteins upregulated and 68 of the proteins downregulated between the CAP and NC spermatozoa, respectively. Functional enrichment analysis indicated that the differentially abundant proteins Prune Exopolyphosphatase 1, Galactose-1-Phosphate Uridylyltransferase, and ATP Citrate Lyase were strictly related to energy production and conversion, and Phosphoglycolate phosphatase, Glucosamine-6-Phosphate Deaminase 1 and 2 were related to metabolism, RNA processing, and vesicular transport pathways. Furthermore, the networks of protein–protein interaction indicated a strong interaction among these differential proteins in annotated pathways such as ubiquitin and transport metabolism. Our findings indicate that capacitation progress might be regulated through different pathways, providing insights into mechanisms involved in ram sperm capacitation and fertility.

Funder

National Key Research and Development Program of China

China Agriculture Research System of MOF and MARA

Anhui Agricultural University Introduction and Stabilization of Talents Research Funding

Publisher

MDPI AG

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