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Protamine-2 Deficiency Initiates a Reactive Oxygen Species (ROS)-Mediated Destruction Cascade during Epididymal Sperm Maturation in Mice

机译:protamine-2缺乏在小鼠的附睾精子成熟期间发起反应性氧物质(ROS)介导的破坏级联

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摘要

Protamines are the safeguards of the paternal sperm genome. They replace most of the histones during spermiogenesis, resulting in DNA hypercondensation, thereby protecting its genome from environmental noxa. Impaired protamination has been linked to male infertility in mice and humans in many studies. Apart from impaired DNA integrity, protamine-deficient human and murine sperm show multiple secondary effects, including decreased motility and aberrant head morphology. In this study, we use a Protamine ( )-deficient mouse model in combination with label-free quantitative proteomics to decipher the underlying molecular processes of these effects. We show that loss of the sperm’s antioxidant capacity, indicated by downregulation of key proteins like Superoxide dismutase type 1 (SOD1) and Peroxiredoxin 5 (PRDX5), ultimately initiates an oxidative stress-mediated destruction cascade during epididymal sperm maturation. This is confirmed by an increased level of 8-OHdG in epididymal sperm, a biomarker for oxidative stress-mediated DNA damage. -deficient testicular sperm are not affected and initiate the proper development of blastocyst stage preimplantation embryos in vitro upon intracytoplasmic sperm injection (ICSI) into oocytes. Our results provide new insight into the role of and its downstream molecular effects on sperm function and present an important contribution to the investigation of new treatment regimens for infertile men with impaired protamination.
机译:protamines是父子精子基因组的保障。它们在精子发生过程中替换大部分组蛋白,导致DNA高聚常压,从而保护其基因组免受环境NOxa。在许多研究中,抗蛋白酶与小鼠和人类的男性不孕症有关。除了DNA完整性受损,Protamine缺乏人和鼠精子显示出多种二次效果,包括减少的运动性和异常头形态。在这项研究中,我们使用Protamine() - 缺料小鼠模型与无标记的定量蛋白质组织组合以破译这些效果的底层分子过程。我们表明,通过超氧化物歧化酶1(SOD1)和过氧化嗪5(PRDX5)的关键蛋白质的下调表明,表明精子抗氧化能力的丧失最终在附睾精子成熟期间引发氧化应激介导的破坏级联。这是通过相邻的结果的增加的8-OHDG水平,是氧化应激介导的DNA损伤的生物标志物。 - 缺血性精子不受影响,并在体外胚胎精子注射(ICSI)进入卵母细胞时,在体外进行适当的胚泡阶段预致癌胚胎的应用。我们的结果提供了新的洞察力对精子功能的作用及其下游分子效应的作用,并对抗孕抗植物受损的不孕症男性的新治疗方案进行了重要贡献。

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