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大鼠附睾精子激活状态和鞭毛波形的调节:钙和环磷酸腺苷参与的证据

Regulation of activation state and flagellar wave form in epididymal rat sperm: evidence for the involvement of both Ca2+ and cAMP.

作者信息

Lindemann C B, Goltz J S, Kanous K S

机构信息

Department of Biological Sciences, Oakland University, Rochester, MI 48063.

出版信息

Cell Motil Cytoskeleton. 1987;8(4):324-32. doi: 10.1002/cm.970080405.

Abstract

Rat sperm from the cauda epididymis exhibit increased motility, longevity, and a distinct circular pattern of flagellar curvature in response to 5 mM procaine-HCl or 0.1 mM 8-(N,N-diethylamino)-octyl-3,4,5-trimethoxybenzoate (TMB-8), reagents that are thought to play a role in the immobilization of free cellular calcium. Triton X-100-extracted sperm models will exhibit the same pattern of motility and curvature as procaine- or TMB-8-activated cells, but only when calcium is removed by a strong chelating agent, and in the presence of cAMP (3 microM). Demembranated sperm models produced from epididymal rat sperm are quiescent unless cAMP is added. In these sperm models, the presence or absence of free calcium mediates a transition in flagellar curvature. The increased activity of the procaine-treated intact cells was not accompanied by a change in cellular ATP content, nor was ATP availability the limiting factor in the quiescent sperm. Therefore, the increased motility produced by procaine is probably mediated by a fall in free intracellular Ca2+ accompanied by a rise in cAMP. Our finding that calcium controls the curvature of sperm flagella may explain altered patterns of flagellar beating, such as the hyperactivated motility that sperm exhibit in the female reproductive tract.

摘要

来自附睾尾部的大鼠精子在接触5 mM盐酸普鲁卡因或0.1 mM 8-(N,N-二乙氨基)-辛基-3,4,5-三甲氧基苯甲酸酯(TMB-8)时,会表现出运动能力增强、寿命延长以及鞭毛弯曲呈现独特的圆形模式,这些试剂被认为在游离细胞钙的固定中发挥作用。经Triton X-100处理的精子模型会呈现出与经普鲁卡因或TMB-8激活的细胞相同的运动和弯曲模式,但前提是要用强螯合剂去除钙,并且存在cAMP(3 microM)。由附睾大鼠精子产生的去膜精子模型是静止的,除非添加cAMP。在这些精子模型中,游离钙的存在与否介导了鞭毛弯曲的转变。普鲁卡因处理的完整细胞活性增加,但其细胞ATP含量并未改变,ATP的可用性也不是静止精子中的限制因素。因此,普鲁卡因产生的运动能力增强可能是由细胞内游离Ca2+的下降以及cAMP的升高介导的。我们发现钙控制精子鞭毛的弯曲,这可能解释了鞭毛摆动模式的改变,比如精子在雌性生殖道中表现出的超激活运动。

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