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PMID: 28213128 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Quantitative proteomic analysis of human testis reveals system-wide molecular and cellular pathways associated with non-obstructive azoospermia.

Journal of proteomics ·Vol. 162 ·2017-00-06 ·Pages 141-154

Alikhani M, Mirzaei M, Sabbaghian M, Parsamatin P, Karamzadeh R, Adib S, Sodeifi N, Gilani MAS, Zabet-Moghaddam M, Parker L, Wu Y, Gupta V, Haynes PA, Gourabi H, Baharvand H, Salekdeh GH

Abstract

Male infertility accounts for half of the infertility problems experienced by couples. Azoospermia, having no measurable level of sperm in seminal fluid, is one of the known conditions resulting in male infertility. In order to elucidate the complex molecular mechanisms causing male azoospermia, label-free quantitative shotgun proteomics was carried out on testicular tissue specimens from patients with obstructive azoospermia and non-obstructive azoospermia, including maturation arrest (MA) and Sertoli cell only syndrome (SCOS). The abundance of 520 proteins was significantly changed across three groups of samples. We were able to identify several functional biological pathways enriched in azoospermia samples and confirm selected differentially abundant proteins, using multiple histological methods. The results revealed that cell cycle and proteolysis, and RNA splicing were the most significant biological processes impaired by the substantial suppression of proteins related to the aforementioned categories in SCOS tissues. In the MA patient testes, generation of precursor metabolites and energy as well as oxidation-reduction were the most significantly altered processes. Novel candidate proteins identified in this study include key transcription factors, many of which have not previously been shown to be associated with azoospermia. Our findings can provide substantial insights into the molecular regulation of spermatogenesis and human reproduction. The obtained data showed a drastic suppression of proteins involved in spliceosome, cell cycle and proteasome proteins, as well as energy and metabolic production in Sertoli cell only syndrome testis tissue, and to a lesser extent in maturation arrest samples. Moreover, we identified new transcription factors that are highly down-regulated in SCOS and MA patients, thus helping to understand the molecular complexity of spermatogenesis in male infertility. Our findings provide novel candidate protein targets associated with SCOS or MA azoospermia.

Keywords
Azoospermia Infertility Label-free quantitation Maturation arrest Sertoli cell only syndrome Shotgun proteomics Testis
MeSH Terms
Azoospermia/etiology Humans Infertility, Male/etiology Male Metabolic Networks and Pathways Proteolysis Proteomics/methods RNA Splicing Sertoli Cell-Only Syndrome Testis/chemistry,metabolism
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Alikhani Mehdi
Department of Molecular Systems Biology, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran.
Mirzaei Mehdi
Department of Chemistry and Biomolecular Sciences, Macquarie University, North Ryde, New South Wales, Australia.
Sabbaghian Marjan
Department of Andrology, Reproductive Biomedicine Research Center, Royan Institute for Reproductive Biomedicine, ACECR, Tehran, Iran.
Parsamatin Pouria
Department of Molecular Systems Biology, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran.
Karamzadeh Razieh
Department of Molecular Systems Biology, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran.
Adib Samane
Department of Embryology, Reproductive Biomedicine Research Center, Royan Institute for Reproductive Biomedicine, ACECR, Tehran, Iran.
Sodeifi Niloofar
Department of Andrology, Reproductive Biomedicine Research Center, Royan Institute for Reproductive Biomedicine, ACECR, Tehran, Iran.
Gilani Mohammad Ali Sadighi
Department of Andrology, Reproductive Biomedicine Research Center, Royan Institute for Reproductive Biomedicine, ACECR, Tehran, Iran.
Zabet-Moghaddam Masoud
Center for Biotechnology and Genomics, Texas Tech University, Lubbock, TX, United States.
Parker Lindsay
Department of Chemistry and Biomolecular Sciences, Macquarie University, North Ryde, New South Wales, Australia; ARC Centre of Excellence for Nanoscale BioPhotonics (CNBP), Macquarie University, North Ryde, New South Wales, Sydney, Australia.
Wu Yunqi
Department of Chemistry and Biomolecular Sciences, Macquarie University, North Ryde, New South Wales, Australia.
Gupta Vivek
Faculty of Medicine and Health Sciences, Macquarie University, NSW 2109, Australia.
Haynes Paul A
Department of Chemistry and Biomolecular Sciences, Macquarie University, North Ryde, New South Wales, Australia.
Gourabi Hamid
Department of Genetics, Reproductive Biomedicine Research Center, Royan Institute for Reproductive Biomedicine, ACECR, Tehran, Iran.
Baharvand Hossein
Department of Stem Cells and Developmental Biology, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran; Department of Developmental Biology, University of Science and Culture, Tehran, Iran.
Salekdeh Ghasem Hosseini
Department of Molecular Systems Biology, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran; Agricultural Biotechnology Research Institute of Iran, Karaj, Tehran, Iran. Electronic address: [email protected].
Article Info
Journal
Journal of proteomics
Abbr.
J Proteomics
ISSN
1876-7737
Published
2017-00-06
Epub
2017-00-15
Pages
141-154
Language
English
Region
Netherlands
NLM ID
101475056
Subset
IM
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