Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility

Purpose: Varicocele may disrupt testicular microcirculation and induce hypoxia-ischemia related degenerative changes in testicular cells and spermatozoa. Superoxide production at low oxygen concentration exacerbates oxidative stress in men with varicocele. Therefore, the current study was designed t...

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Published in:Journal of Urology
Main Author: Samanta L.; Agarwal A.; Swain N.; Sharma R.; Gopalan B.; Esteves S.C.; Durairajanayagam D.; Sabanegh E.
Format: Article
Language:English
Published: Elsevier Inc. 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048704816&doi=10.1016%2fj.juro.2018.03.009&partnerID=40&md5=18263bec4d8ecbbaf9b31ed240937efc
id 2-s2.0-85048704816
spelling 2-s2.0-85048704816
Samanta L.; Agarwal A.; Swain N.; Sharma R.; Gopalan B.; Esteves S.C.; Durairajanayagam D.; Sabanegh E.
Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
2018
Journal of Urology
200
2
10.1016/j.juro.2018.03.009
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048704816&doi=10.1016%2fj.juro.2018.03.009&partnerID=40&md5=18263bec4d8ecbbaf9b31ed240937efc
Purpose: Varicocele may disrupt testicular microcirculation and induce hypoxia-ischemia related degenerative changes in testicular cells and spermatozoa. Superoxide production at low oxygen concentration exacerbates oxidative stress in men with varicocele. Therefore, the current study was designed to study the role of mitochondrial redox regulation and its possible involvement in sperm dysfunction in varicocele associated infertility. Materials and Methods: We identified differentially expressed mitochondrial proteins in 50 infertile men with varicocele and in 10 fertile controls by secondary liquid chromatography-tandem mass spectroscopy data driven in silico analysis. Identified proteins were validated by Western blot and immunofluorescence. Seminal oxidation-reduction potential was measured. Results: We identified 22 differentially expressed proteins related to mitochondrial structure (LETM1, EFHC, MIC60, PGAM5, ISOC2 and import TOM22) and function (NDFSU1, UQCRC2 and COX5B, and the core enzymes of carbohydrate and lipid metabolism). Cluster analysis and 3-dimensional principal component analysis revealed a significant difference between the groups. All proteins studied were under expressed in infertile men with varicocele. Liquid chromatography-tandem mass spectroscopy data were corroborated by Western blot and immunofluorescence. Impaired mitochondrial function was associated with decreased expression of the proteins (ATPase1A4, HSPA2, SPA17 and APOA1) responsible for proper sperm function, concomitant with elevated seminal oxidation-reduction potential in the semen of infertile patients with varicocele. Conclusions: Impaired mitochondrial structure and function in varicocele may lead to oxidative stress, reduced ATP synthesis and sperm dysfunction. Mitochondrial differentially expressed proteins should be explored for the development of biomarkers as a predictor of infertility in patients with varicocele. Antioxidant therapy targeting sperm mitochondria may help improve the fertility status of these patients. © 2018 American Urological Association Education and Research, Inc.
Elsevier Inc.
225347
English
Article

author Samanta L.; Agarwal A.; Swain N.; Sharma R.; Gopalan B.; Esteves S.C.; Durairajanayagam D.; Sabanegh E.
spellingShingle Samanta L.; Agarwal A.; Swain N.; Sharma R.; Gopalan B.; Esteves S.C.; Durairajanayagam D.; Sabanegh E.
Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
author_facet Samanta L.; Agarwal A.; Swain N.; Sharma R.; Gopalan B.; Esteves S.C.; Durairajanayagam D.; Sabanegh E.
author_sort Samanta L.; Agarwal A.; Swain N.; Sharma R.; Gopalan B.; Esteves S.C.; Durairajanayagam D.; Sabanegh E.
title Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
title_short Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
title_full Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
title_fullStr Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
title_full_unstemmed Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
title_sort Proteomic Signatures of Sperm Mitochondria in Varicocele: Clinical Use as Biomarkers of Varicocele Associated Infertility
publishDate 2018
container_title Journal of Urology
container_volume 200
container_issue 2
doi_str_mv 10.1016/j.juro.2018.03.009
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85048704816&doi=10.1016%2fj.juro.2018.03.009&partnerID=40&md5=18263bec4d8ecbbaf9b31ed240937efc
description Purpose: Varicocele may disrupt testicular microcirculation and induce hypoxia-ischemia related degenerative changes in testicular cells and spermatozoa. Superoxide production at low oxygen concentration exacerbates oxidative stress in men with varicocele. Therefore, the current study was designed to study the role of mitochondrial redox regulation and its possible involvement in sperm dysfunction in varicocele associated infertility. Materials and Methods: We identified differentially expressed mitochondrial proteins in 50 infertile men with varicocele and in 10 fertile controls by secondary liquid chromatography-tandem mass spectroscopy data driven in silico analysis. Identified proteins were validated by Western blot and immunofluorescence. Seminal oxidation-reduction potential was measured. Results: We identified 22 differentially expressed proteins related to mitochondrial structure (LETM1, EFHC, MIC60, PGAM5, ISOC2 and import TOM22) and function (NDFSU1, UQCRC2 and COX5B, and the core enzymes of carbohydrate and lipid metabolism). Cluster analysis and 3-dimensional principal component analysis revealed a significant difference between the groups. All proteins studied were under expressed in infertile men with varicocele. Liquid chromatography-tandem mass spectroscopy data were corroborated by Western blot and immunofluorescence. Impaired mitochondrial function was associated with decreased expression of the proteins (ATPase1A4, HSPA2, SPA17 and APOA1) responsible for proper sperm function, concomitant with elevated seminal oxidation-reduction potential in the semen of infertile patients with varicocele. Conclusions: Impaired mitochondrial structure and function in varicocele may lead to oxidative stress, reduced ATP synthesis and sperm dysfunction. Mitochondrial differentially expressed proteins should be explored for the development of biomarkers as a predictor of infertility in patients with varicocele. Antioxidant therapy targeting sperm mitochondria may help improve the fertility status of these patients. © 2018 American Urological Association Education and Research, Inc.
publisher Elsevier Inc.
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language English
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