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Quantitative proteomics decodes clusterin as a critical regulator of paternal factors responsible for impaired compensatory metabolic reprogramming in recurrent pregnancy loss

机译:定量蛋白质组学解码聚类因子是父因因子的临界调节因子,其负责经常性妊娠损失的补偿性代谢重编程

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Abstract Recurrent pregnancy loss (RPL) is a perplexing problem experienced with two or more consecutive miscarriages wherein the cause remains unexplained in 50% of cases. However, despite several evidences of involvement of paternal factors on early embryogenesis and placental development, its contribution towards RPL has been largely unexplored. There is augmented lipid peroxidation, protein carbonylation, thionylation and enhanced histone retention in spermatozoa of RPL patients. Differentially expressed proteins in the spermatozoa of RPL patients may contribute towards aberrant embryo development and pregnancy loss. The present study comprised of male partners of RPL patients ( n? =?16) with the absence of any female factor abnormality and age‐matched fertile healthy donors ( n? =?20). Pooled sperm samples from each group were subjected to high‐throughput liquid chromatography–tandem mass spectrophotometry (LC‐MS/MS) and subsequent bioinformatic analysis that identifies key proteins to be differentially expressed (DEPs). A total of 23 DEPs were identified with ≥2.0 fold change were considered to be significant. A key finding of the study was clusterin (CLUS), a predominant oxidative stress protein that takes part in an array of pre‐ and post‐fertilisation molecular processes, found to be underexpressed as it was confirmed by Western blot analysis. This pilot study supports contributions of?paternal oxidative predominance in RPL and encourages further investigation.
机译:摘要复发性妊娠损失(RPL)是一种令人困惑的问题,其两个或多个连续的流产经历,其中原因仍然是未解释的& 50%的病例。然而,尽管父系因素的次数取决于早期胚胎发生和胎盘发展,但其对RPL的贡献在很大程度上是未开发的。在RPL患者的精子中,增加了增强脂质过氧化,蛋白质羰基化,噻吩ancation和增强的组蛋白保留。 RPL患者的精子中的差异表达蛋白可能有助于异常胚胎发育和妊娠损失。目前的研究包括RPL患者的雄性合作伙伴(N?=?16),没有任何女性因子异常和年龄匹配的肥沃的健康捐赠者(n?= 20)。将来自每组的汇集精子样品进行高通量液相色谱 - 串联质谱法(LC-MS / MS)和随后的生物信息分析,其识别待差异表达的关键蛋白质(DEPS)。鉴定了总共23种,≥2.0倍的变化被认为是显着的。该研究的关键发现是菌丝(CLU),一种主要氧化应激蛋白,其参与施肥后分子过程的阵列,发现是缺陷的蛋白质印迹分析所证实的。该试点研究支持RPL中的父亲氧化优势的贡献,并鼓励进一步调查。

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