Intasqui Paula, Camargo Mariana, Antoniassi Mariana Pereira, Cedenho Agnaldo Pereira, Carvalho Valdemir Melechco, Cardozo Karina Helena Morais, Zylbersztejn Daniel Suslik, Bertolla Ricardo Pimenta
Department of Surgery, Division of Urology, Human Reproduction Section, São Paulo Federal University, São Paulo, Brazil.
Fleury Group, São Paulo, Brazil.
Fertil Steril. 2016 Mar;105(3):617-628. doi: 10.1016/j.fertnstert.2015.11.005. Epub 2015 Nov 24.
To analyze the seminal plasma proteome and biological functions associated with sperm functional alterations.
Cross-sectional study.
University andrology and research laboratories.
PATIENT(S): A total of 156 normozoospermic men.
INTERVENTION(S): Sperm mitochondrial activity, acrosome integrity, and DNA fragmentation were evaluated in a semen aliquot. Remaining semen was centrifuged, and seminal plasma was utilized for proteomic analysis (liquid chromatography-tandem mass spectrometry). Patients were divided into percentiles (15%) to form the following groups: substudy 1, high (control, n = 26) and low (study, n = 23) sperm mitochondrial activity; substudy 2, high (control, n = 23) and low (study, n = 22) sperm acrosome integrity; and substudy 3, low (control, n = 22) and high (study, n = 22) sperm DNA fragmentation. Groups were compared using univariate and multivariate analyses. Differentially expressed proteins were used for functional enrichment analysis.
MAIN OUTCOME MEASURE(S): Seminal plasma proteome and postgenomic pathways are associated with several sperm functional traits.
RESULT(S): In total, 506, 493, and 464 proteins were observed in substudies 1, 2, and 3, respectively. Enriched functions in substudy 1 were intramolecular oxidoreductase activity, aminoglycans catabolism, endopeptidases inhibition, lysosomes, and acute-phase response (study group). In substudy 2, main enriched functions were phospholipase inhibition, arachidonic acid metabolism, exocytosis, regulation of acute inflammation, response to hydrogen peroxide, and lysosomal transport (study group). In substudy 3, enriched functions were prostaglandin biosynthesis and fatty acid binding (study group). We proposed eight, six, and eight seminal biomarkers for substudies 1, 2, and 3, respectively.
CONCLUSION(S): Seminal plasma proteome reflects sperm mitochondrial activity reduction, acrosome damage, and DNA fragmentation, with several postgenomic functions related to these alterations.
分析与精子功能改变相关的精浆蛋白质组及生物学功能。
横断面研究。
大学男科及研究实验室。
共156名正常精子症男性。
对一份精液样本中的精子线粒体活性、顶体完整性和DNA片段化进行评估。将剩余精液离心,所得精浆用于蛋白质组分析(液相色谱 - 串联质谱法)。患者按百分位数(15%)分组,形成以下几组:子研究1,精子线粒体活性高(对照组,n = 26)和低(研究组,n = 23);子研究2,精子顶体完整性高(对照组,n = 23)和低(研究组,n = 22);子研究3,精子DNA片段化低(对照组,n = 22)和高(研究组,n = 22)。采用单变量和多变量分析对各组进行比较。对差异表达的蛋白质进行功能富集分析。
精浆蛋白质组和基因组后通路与多种精子功能特征相关。
子研究1、2、3中分别共观察到506、493和464种蛋白质。子研究1中富集的功能有分子内氧化还原酶活性、氨基聚糖分解代谢、内肽酶抑制、溶酶体和急性期反应(研究组)。子研究2中主要富集的功能有磷脂酶抑制、花生四烯酸代谢、胞吐作用、急性炎症调节、对过氧化氢的反应和溶酶体转运(研究组)。子研究3中富集的功能有前列腺素生物合成和脂肪酸结合(研究组)。我们分别为子研究1、2和3提出了8种、6种和8种精浆生物标志物。
精浆蛋白质组反映了精子线粒体活性降低、顶体损伤和DNA片段化情况,以及与这些改变相关的多种基因组后功能。