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首页> 外文期刊>Asian journal of andrology >AMP-activated kinase in human spermatozoa: identification, intracellular localization, and key function in the regulation of sperm motility
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AMP-activated kinase in human spermatozoa: identification, intracellular localization, and key function in the regulation of sperm motility

机译:人精子中的AMP活化激酶:鉴定,细胞内定位和精子运动调节中的关键功能

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AMP-activated kinase (AMPK), a protein that regulates energy balance and metabolism, has recently been identified in boar spermatozoa where regulates key functional sperm processes essential for fertilization. This work's aims are AMPK identification, intracellular localization, and their role in human spermatozoa function. Semen was obtained from healthy human donors. Sperm AMPK and phospho-Thr172-AMPK were analyzed by Western blotting and indirect immunofluorescence. High- and low-quality sperm populations were separated by a 40%-80% density gradient. Human spermatozoa motility was evaluated by an Integrated Semen Analysis System (ISAS) in the presence or absence of the AMPK inhibitor compound C (CC). AMPK is localized along the human spermatozoa, at the entire acrosome, midpiece and tail with variable intensity, whereas its active form, phospho-Thr172-AMPK, shows a prominent staining at the acrosome and sperm tail with a weaker staining in the midpiece and the postacrosomal region. Interestingly, spermatozoa bearing an excess residual cytoplasm show strong AMPK staining in this subcellular compartment. Both AMPK and phospho-Thr172-AMPK human spermatozoa contents exhibit important individual variations. Moreover, active AMPK is predominant in the high motility sperm population, where shows a stronger intensity compared with the low motility sperm population. Inhibition of AMPK activity in human spermatozoa by CC treatment leads to a significant reduction in any sperm motility parameter analyzed: percent of motile sperm, sperm velocities, progressivity, and other motility coefficients. This work identifies and points out AMPK as a new molecular mechanism involved in human spermatozoa motility. Further AMPK implications in the clinical efficiency of assisted reproduction and in other reproductive areas need to be studied.
机译:AMP激活激酶(AMPK)是一种调节能量平衡和新陈代谢的蛋白质,最近在公猪精子中被发现,该蛋白调节受精所必需的关键功能性精子过程。这项工作的目的是鉴定AMPK,细胞内定位及其在人类精子功能中的作用。精液获自健康的人类供体。通过蛋白质印迹和间接免疫荧光分析精子AMPK和磷酸Thr172-AMPK。高品质和低品质的精子群体之间的密度梯度为40%-80%。在有或没有AMPK抑制剂化合物C(CC)的情况下,通过综合精液分析系统(ISAS)评估了人类精子的运动能力。 AMPK沿人的精子分布在整个顶体,中段和尾部,强度可变,而AMPK的活性形式磷酸Thr172-AMPK在顶体和精子尾部表现出明显的染色,而在中段和中部则较弱。顶体后区域。有趣的是,带有过量残留细胞质的精子在该亚细胞区室中显示出很强的AMPK染色。 AMPK和磷酸化Thr172-AMPK人精子含量均显示出重要的个体差异。此外,活跃的AMPK在高活力的精子群体中占主导地位,与低活力的精子群体相比,活动AMPK的强度更高。通过CC治疗抑制人精子中AMPK的活性会导致所分析的任何精子运动参数显着降低:运动精子的百分比,精子速度,进程和其他运动系数。这项工作确定并指出AMPK是参与人类精子运动的新分子机制。 AMPK在辅助生殖和其他生殖领域的临床效率中的进一步意义需要研究。

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