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AMP激活蛋白激酶(AMPK)参与维持公猪精子质膜的组织结构。

AMP-activated kinase, AMPK, is involved in the maintenance of plasma membrane organization in boar spermatozoa.

作者信息

Hurtado de Llera Ana, Martin-Hidalgo David, Rodriguez-Gil Joan E, Gil M Cruz, Garcia-Marin Luis J, Bragado M Julia

机构信息

Research Group of Intracellular Signaling and Technology of Reproduction (SINTREP), School of Veterinary Medicine, University of Extremadura, Caceres, Spain.

出版信息

Biochim Biophys Acta. 2013 Sep;1828(9):2143-51. doi: 10.1016/j.bbamem.2013.05.026. Epub 2013 Jun 4.

Abstract

Spermatozoa undergo energy- and metabolism-dependent processes to successfully fertilize the oocyte. AMP-activated protein kinase, AMPK, is a sensor of cell energy. We recently showed that AMPK controls spermatozoa motility. Our aims are i) to investigate the intracellular localization of AMPK in boar spermatozoa by immunofluorescence, ii) to study whether AMPK plays a role in other relevant processes of spermatozoa: mitochondrial membrane potential (∆Ψm), plasma membrane lipid disorganization, outward phosphatidylserine (PS) exposure, acrosome integrity and induced-acrosome reaction by flow cytometry and iii) to investigate intracellular AMPK pathways by western blot. Spermatozoa were incubated under different conditions in the presence or absence of compound C (CC, 30μM), an AMPK inhibitor and/or cAMP analog 8Br-cAMP. AMPKα protein is expressed at the entire acrosome and at the midpiece of spermatozoa flagellum, whereas phospho-Thr(172)-AMPK is specifically localized at the apical part of acrosome and at flagellum midpiece. CC treatment rapidly confers head-to-head aggregation-promoting property to spermatozoa. Long term AMPK inhibition in spermatozoa incubated in TCM significantly reduces high ∆Ψm. Moreover, AMPK inhibition significantly induces plasma membrane lipid disorganization and simultaneously reduces outward PS translocation at plasma membrane in a time-dependent manner. Acrosomal integrity in TCM is significantly enhanced when AMPK is inhibited. However, neither acrosome reaction nor membrane lipid disorganization induced by ionophore A23187 are affected by CC. AMPK phosphorylation is potently stimulated upon PKA activation in spermatozoa. This work suggests that AMPK, lying downstream of PKA, regulates at different levels mammalian spermatozoa membrane function.

摘要

精子要经历依赖能量和代谢的过程才能成功使卵母细胞受精。AMP激活的蛋白激酶(AMPK)是细胞能量的传感器。我们最近发现AMPK控制精子的运动。我们的目标是:i)通过免疫荧光研究AMPK在公猪精子中的细胞内定位;ii)研究AMPK是否在精子的其他相关过程中发挥作用:线粒体膜电位(∆Ψm)、质膜脂质紊乱、外向磷脂酰丝氨酸(PS)暴露、顶体完整性以及通过流式细胞术检测诱导的顶体反应;iii)通过蛋白质印迹法研究细胞内AMPK信号通路。精子在存在或不存在化合物C(CC,30μM)(一种AMPK抑制剂)和/或cAMP类似物8Br-cAMP的不同条件下孵育。AMPKα蛋白在整个顶体和精子鞭毛的中段表达,而磷酸化的苏氨酸(172)-AMPK则特异性定位于顶体的顶端部分和鞭毛中段。CC处理迅速赋予精子头对头聚集促进特性。在TCM中孵育的精子中,长期抑制AMPK会显著降低高∆Ψm。此外,抑制AMPK会显著诱导质膜脂质紊乱,并同时以时间依赖性方式减少质膜上外向PS的转位。当AMPK被抑制时,TCM中的顶体完整性显著增强。然而,离子载体A23187诱导的顶体反应和膜脂质紊乱均不受CC影响。在精子中PKA激活后,AMPK磷酸化受到强烈刺激。这项工作表明,位于PKA下游的AMPK在不同水平上调节哺乳动物精子的膜功能。

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