Differential analysis of quantitative proteome and acetyl-proteome profiling between premenopausal and postmenopausal ovarian tissues
Autor: | Shien Zou, Junda Zhao, Linna Xu, Jin Zhu, Jinling Yi, Weining Yang, Peipei Shi, Bin Li, Huatianshu Hu, Song Shi |
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Rok vydání: | 2018 |
Předmět: |
0301 basic medicine
Proteome Human ovarian Clinical Biochemistry Cellular detoxification Physiology lcsh:Medicine Biology Tandem mass tag Proteomics 03 medical and health sciences Downregulation and upregulation Acetyl-proteome medicine Molecular Biology Peptide sequence chemistry.chemical_classification Research lcsh:R General Medicine medicine.disease Amino acid Menopause 030104 developmental biology chemistry Molecular Medicine |
Zdroj: | Clinical Proteomics Clinical Proteomics, Vol 15, Iss 1, Pp 1-12 (2018) |
ISSN: | 1542-6416 |
Popis: | Background Natural menopause is always accompanied by specific signs and symptoms, suggesting physiological changes in this peoriod. However, no systematic study has assessed the changes at molecular level in the ovaries during the menopausal transition so far. This study integrated quantitative proteome and acetyl-proteome to comprehensively uncover the changes of ovarian protein and protein-acetylation profiles in this transitional period. The findings would provide novel insights into the biology of menopause and help relieve and treat the associated signs and symptoms, further improving the women’s health care. Methods Freshly thawed ovarian tissue samples obtained from premenopausal and postmenopausal women were assessed with Tandem Mass Tags for the quantitative analysis of the global profile and acetyl-proteomes by 2-dimensional separation and LC–MS/MS. Results Comprehensively, 4210 types of protein, with 3551 types quantifiable were detected. 3047 acetylated sites in 1583 types of protein with 2256 quantifiable in 1248 proteins were detected. By comparing the global and acetylated proteome profiles for postmenopausal women and premenopausal women, 151 types of proteins were found upregulated and 65 were downregulated, along with 23 acetylated sites upregulated and 220 sites downregulated. For Immune response, the complement and coagulation cascades plus the citrate cycle and cellular detoxification were found to be significantly enhanced, while the extracellular structure and matrix organization, ECM-receptor interactions plus the infections were markedly suppressed. In addition, the amino acids around the acetylated sites were enriched by motif analysis, which can help us uncover amino acid sequence and search for the specific target in the subsequent study. Conclusion Global and acetylated proteome Profiles in ovary differ between the premenopausal and postmenopausal groups. These proteomic-level changes may offer some potential biological markers to identify the pathological changes in ovary and help relieve and treat the associated signs and symptoms, and ultimately improve women’s health care. Electronic supplementary material The online version of this article (10.1186/s12014-018-9214-0) contains supplementary material, which is available to authorized users. |
Databáze: | OpenAIRE |
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