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AMP-Activated Kinase AMPK Is Expressed in Boar Spermatozoa and Regulates Motility

机译:AMP激活的激酶AMPK在公猪精子中表达并调节运动能力。

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摘要

The main functions of spermatozoa required for fertilization are dependent on the energy status and metabolism. AMP-activated kinase, AMPK, acts a sensor and regulator of cell metabolism. As AMPK studies have been focused on somatic cells, our aim was to investigate the expression of AMPK protein in spermatozoa and its possible role in regulating motility. Spermatozoa from boar ejaculates were isolated and incubated under different conditions (38,5°C or 17°C, basal medium TBM or medium with Ca2+ and bicarbonate TCM, time from 1–24 hours) in presence or absence of AMPK inhibitor, compound C (CC, 30 µM). Western blotting reveals that AMPK is expressed in boar spermatozoa at relatively higher levels than in somatic cells. AMPK phosphorylation (activation) in spermatozoa is temperature-dependent, as it is undetectable at semen preservation temperature (17°C) and increases at 38,5°C in a time-dependent manner. AMPK phosphorylation is independent of the presence of Ca2+ and/or bicarbonate in the medium. We confirm that CC effectively blocks AMPK phosphorylation in boar spermatozoa. Analysis of spermatozoa motility by CASA shows that CC treatment either in TBM or in TCM causes a significant reduction of any spermatozoa motility parameter in a time-dependent manner. Thus, AMPK inhibition significantly decreases the percentages of motile and rapid spermatozoa, significantly reduces spermatozoa velocities VAP, VCL and affects other motility parameters and coefficients. CC treatment does not cause additional side effects in spermatozoa that might lead to a lower viability even at 24 h incubation. Our results show that AMPK is expressed in spermatozoa at high levels and is phosphorylated under physiological conditions. Moreover, our study suggests that AMPK regulates a relevant function of spermatozoa, motility, which is essential for their ultimate role of fertilization.
机译:受精所需的精子的主要功能取决于能量状态和新陈代谢。 AMP激活的激酶AMPK充当细胞代谢的传感器和调节剂。由于AMPK研究集中于体细胞,因此我们的目的是研究AMPK蛋白在精子中的表达及其在调节运动性中的可能作用。从公猪精液中分离出精子并在不同条件下(38,5°C或17°C,基础培养基TBM或含Ca 2 + 和碳酸氢盐中药的培养基,时间1-24小时)孵育。是否存在AMPK抑制剂化合物C(CC,30 µM)。蛋白质印迹显示,AMPK在公猪精子中的表达水平高于体细胞中的表达水平。精子中的AMPK磷酸化(激活)是温度依赖性的,因为它在精液保存温度(17℃)下无法检测到,并在38.5℃时以时间依赖性方式增加。 AMPK的磷酸化与培养基中Ca 2 + 和/或碳酸氢盐的存在无关。我们确认CC可有效阻断公猪精子中AMPK的磷酸化。通过CASA对精子活力的分析表明,无论是在TBM还是在中医中进行CC治疗,都会以时间依赖性方式显着降低任何精子活力参数。因此,AMPK抑制作用显着降低了运动精子和快速精子的百分比,显着降低了精子速度VAP,VCL,并影响了其他运动参数和系数。 CC治疗不会在精子中引起其他副作用,即使在24小时的温育下也可能导致活力降低。我们的结果表明AMPK在精子中高水平表达,并在生理条件下被磷酸化。此外,我们的研究表明AMPK调节精子的相关功能,运动性,这对于精子的最终作用至关重要。

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