首页> 美国卫生研究院文献>Molecular Human Reproduction >Alteration in the processing of the ACRBP/sp32 protein and sperm head/acrosome malformations in proprotein convertase 4 (PCSK4) null mice
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Alteration in the processing of the ACRBP/sp32 protein and sperm head/acrosome malformations in proprotein convertase 4 (PCSK4) null mice

机译:原蛋白转化酶4(PCSK4)无效小鼠中ACRBP / sp32蛋白加工过程和精子头/顶体畸形的改变

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摘要

Proprotein convertase 4 (PCSK4) is a member of a family of proprotein convertases that convert inactive precursor proteins into their mature and active forms. PCSK4 is expressed by testicular germ cells and localizes to the sperm acrosome, suggesting roles in fertilization. Mice lacking PCSK4 exhibit a profound fertility defect; yet, to date, few substrates for PCSK4 are known. In this study, two-dimensional differential in-gel electrophoresis analysis was carried out in order to identify proteins that are altered in spermatozoa from PCSK4 null mice. Herein, we report that the sperm fertilization molecule acrosin-binding protein (ACRBP)/sp32, which normally undergoes processing from a 58.5 kDa precursor to a 27.5 kDa mature form, is not proteolytically processed in PCSK4 null mice and thus may be a substrate for PCSK4. However, analysis of the ACRBP sequence did not show a strong consensus site for convertase cleavage, suggesting that ACRBP processing may require the activity of a yet unknown enzyme that itself may be a PCSK4 substrate. Further analysis of spermatozoa from the PCSK4 null mice showed that proacrosin did not undergo autoactivation, supporting a role for the mature form of ACRBP in the regulation of proacrosin conversion into different acrosin isoforms. Finally, examination of ACRBP localization revealed a previously undetected morphological defect in the head/acrosomes of spermatozoa from PCSK4 null mice. Taken together, these results demonstrate that the fertility defect in the PCSK4 null mice may in part be due to altered ACRBP protein processing as well as abnormalities in the sperm head/acrosome.
机译:前蛋白转化酶4(PCSK4)是前蛋白转化酶家族的成员,其将无活性的前体蛋白转化为成熟和活性形式。 PCSK4由睾丸生殖细胞表达,并定位于精子顶体,提示其在受精中的作用。缺乏PCSK4的小鼠表现出严重的生育能力缺陷;然而,迄今为止,很少知道PCSK4的底物。在这项研究中,进行了二维差分凝胶内电泳分析,以鉴定PCSK4缺失小鼠精子中改变的蛋白质。在这里,我们报道精子受精分子顶肽结合蛋白(ACRBP)/ sp32,通常会从58.5 kDa的前体加工成27.5 kDa的成熟形式,在PCSK4 null小鼠中没有经过蛋白水解处理,因此可能是PCSK4。但是,对ACRBP序列的分析并未显示出强大的转化酶裂解共有位点,这表明ACRBP加工可能需要其本身可能是PCSK4底物的未知酶的活性。对来自PCSK4无效小鼠的精子的进一步分析表明,前前列腺素未经历自激活作用,支持了ACRBP的成熟形式在调节前前列腺素向不同的丙烯醛同工型转化中的作用。最后,对ACRBP定位的检查揭示了PCSK4缺失小鼠精子头部/顶体中先前未发现的形态缺陷。综上所述,这些结果表明PCSK4无效小鼠的生育能力缺陷可能部分归因于ACRBP蛋白加工过程的改变以及精子头/顶体的异常。

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