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水通道蛋白 7 介导的甘油通透性与弱精子症和精子获能期间的人精子运动性有关。

Aquaporin-7-Mediated Glycerol Permeability Is Linked to Human Sperm Motility in Asthenozoospermia and during Sperm Capacitation.

机构信息

Unit for Multidisciplinary Research in Biomedicine (UMIB), Institute of Biomedical Sciences Abel Salazar (ICBAS), University of Porto, 4050-313 Porto, Portugal.

Laboratory for Integrative and Translational Research in Population Health (ITR), University of Porto, 4050-313 Porto, Portugal.

出版信息

Cells. 2023 Aug 5;12(15):2003. doi: 10.3390/cells12152003.

Abstract

Osmoregulation plays a vital role in sperm function, encompassing spermatogenesis, maturation, and fertilization. Aquaglyceroporins, a subclass of aquaporins (AQPs), facilitate the transport of water and glycerol across the sperm membrane, with glycerol serving as an important substrate for sperm bioenergetics. This study aimed to elucidate the significance of AQP-mediated glycerol permeability in sperm motility. The presence and localization of AQP3 and AQP7 in human sperm were assessed using immunofluorescence. Subsequently, the glycerol permeability of spermatozoa obtained from normozoospermic individuals ( = 30) was measured, using stopped-flow light scattering, after incubation with specific aquaporin inhibitors targeting AQP3 (DFP00173), AQP7 (Z433927330), or general aquaglyceroporin (phloretin). Sperm from asthenozoospermic men ( = 30) were utilized to evaluate the AQP7-mediated glycerol permeability, and to compare it with that of normozoospermic men. Furthermore, hypermotile capacitated sperm cells were examined, to determine the AQP7 expression and membrane glycerol permeability. AQP3 was predominantly observed in the tail region, while AQP7 was present in the head, midpiece, and tail of human sperm. Our findings indicate that AQP7 plays a key role in glycerol permeability, as the inhibition of AQP7 resulted in a 55% decrease in glycerol diffusion across the sperm membrane. Importantly, this glycerol permeability impairment was evident in spermatozoa from asthenozoospermic individuals, suggesting the dysregulation of AQP7-mediated glycerol transport, despite similar AQP7 levels. Conversely, the AQP7 expression increased in capacitated sperm, compared to non-capacitated sperm. Hence, AQP7-mediated permeability may serve as a valuable indicator of sperm motility, and be crucial in sperm function.

摘要

渗透调节在精子功能中起着至关重要的作用,包括精子发生、成熟和受精。水通道蛋白(AQP)的一个亚类——水甘油通道蛋白(aquaglyceroporins)促进水和甘油穿过精子膜的运输,甘油是精子生物能量的重要底物。本研究旨在阐明 AQP 介导的甘油通透性在精子运动中的意义。使用免疫荧光法评估人精子中 AQP3 和 AQP7 的存在和定位。随后,使用停流光散射法测量来自正常精子个体(n = 30)的精子的甘油通透性,在孵育特异性 AQP3 抑制剂(DFP00173)、AQP7 抑制剂(Z433927330)或通用水甘油通道蛋白抑制剂(根皮苷)后测量。使用来自弱精子症个体(n = 30)的精子评估 AQP7 介导的甘油通透性,并与正常精子个体进行比较。此外,检查超活力获能的精子细胞,以确定 AQP7 的表达和膜甘油通透性。AQP3 主要存在于尾部区域,而 AQP7 存在于头部、中段和尾部。我们的研究结果表明 AQP7 在甘油通透性中起着关键作用,因为 AQP7 的抑制导致甘油穿过精子膜的扩散减少了 55%。重要的是,这种甘油通透性的损伤在弱精子症个体的精子中明显,表明 AQP7 介导的甘油转运失调,尽管 AQP7 水平相似。相反,与非获能精子相比,获能精子中的 AQP7 表达增加。因此,AQP7 介导的通透性可以作为精子运动的有价值指标,并对精子功能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bef/10416866/8a547dcd0ea0/cells-12-02003-g001.jpg

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