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Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility

Up to 30% of men with normal semen parameters suffer from infertility and the reason for this is unknown. Altered expression of sperm proteins may be a major cause of infertility in these men. Proteomic profiling was performed on pooled semen samples from eight normozoospermic fertile men and nine n...

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Autores principales: Panner Selvam, Manesh Kumar, Agarwal, Ashok, Pushparaj, Peter Natesan, Baskaran, Saradha, Bendou, Hocine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678187/
https://www.ncbi.nlm.nih.gov/pubmed/31336797
http://dx.doi.org/10.3390/genes10070522
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author Panner Selvam, Manesh Kumar
Agarwal, Ashok
Pushparaj, Peter Natesan
Baskaran, Saradha
Bendou, Hocine
author_facet Panner Selvam, Manesh Kumar
Agarwal, Ashok
Pushparaj, Peter Natesan
Baskaran, Saradha
Bendou, Hocine
author_sort Panner Selvam, Manesh Kumar
collection PubMed
description Up to 30% of men with normal semen parameters suffer from infertility and the reason for this is unknown. Altered expression of sperm proteins may be a major cause of infertility in these men. Proteomic profiling was performed on pooled semen samples from eight normozoospermic fertile men and nine normozoospermic infertile men using LC-MS/MS. Furthermore, key differentially expressed proteins (DEPs) related to the fertilization process were selected for validation using Western blotting. A total of 1139 and 1095 proteins were identified in normozoospermic fertile and infertile men, respectively. Of these, 162 proteins were identified as DEPs. The canonical pathway related to free radical scavenging was enriched with upregulated DEPs in normozoospermic infertile men. The proteins associated with reproductive system development and function, and the ubiquitination pathway were underexpressed in normozoospermic infertile men. Western blot analysis revealed the overexpression of annexin A2 (ANXA2) (2.03 fold change; P = 0.0243), and underexpression of sperm surface protein Sp17 (SPA17) (0.37 fold change; P = 0.0205) and serine protease inhibitor (SERPINA5) (0.32 fold change; P = 0.0073) in men with unexplained male infertility (UMI). The global proteomic profile of normozoospermic infertile men is different from that of normozoospermic fertile men. Our data suggests that SPA17, ANXA2, and SERPINA5 may potentially serve as non-invasive protein biomarkers associated with the fertilization process of the spermatozoa in UMI.
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spelling pubmed-66781872019-08-19 Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility Panner Selvam, Manesh Kumar Agarwal, Ashok Pushparaj, Peter Natesan Baskaran, Saradha Bendou, Hocine Genes (Basel) Article Up to 30% of men with normal semen parameters suffer from infertility and the reason for this is unknown. Altered expression of sperm proteins may be a major cause of infertility in these men. Proteomic profiling was performed on pooled semen samples from eight normozoospermic fertile men and nine normozoospermic infertile men using LC-MS/MS. Furthermore, key differentially expressed proteins (DEPs) related to the fertilization process were selected for validation using Western blotting. A total of 1139 and 1095 proteins were identified in normozoospermic fertile and infertile men, respectively. Of these, 162 proteins were identified as DEPs. The canonical pathway related to free radical scavenging was enriched with upregulated DEPs in normozoospermic infertile men. The proteins associated with reproductive system development and function, and the ubiquitination pathway were underexpressed in normozoospermic infertile men. Western blot analysis revealed the overexpression of annexin A2 (ANXA2) (2.03 fold change; P = 0.0243), and underexpression of sperm surface protein Sp17 (SPA17) (0.37 fold change; P = 0.0205) and serine protease inhibitor (SERPINA5) (0.32 fold change; P = 0.0073) in men with unexplained male infertility (UMI). The global proteomic profile of normozoospermic infertile men is different from that of normozoospermic fertile men. Our data suggests that SPA17, ANXA2, and SERPINA5 may potentially serve as non-invasive protein biomarkers associated with the fertilization process of the spermatozoa in UMI. MDPI 2019-07-11 /pmc/articles/PMC6678187/ /pubmed/31336797 http://dx.doi.org/10.3390/genes10070522 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Panner Selvam, Manesh Kumar
Agarwal, Ashok
Pushparaj, Peter Natesan
Baskaran, Saradha
Bendou, Hocine
Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility
title Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility
title_full Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility
title_fullStr Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility
title_full_unstemmed Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility
title_short Sperm Proteome Analysis and Identification of Fertility-Associated Biomarkers in Unexplained Male Infertility
title_sort sperm proteome analysis and identification of fertility-associated biomarkers in unexplained male infertility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678187/
https://www.ncbi.nlm.nih.gov/pubmed/31336797
http://dx.doi.org/10.3390/genes10070522
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