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猪精子表面的ATP是受精所必需的:与精子蛋白酶体功能的相关性。

Sperm-surface ATP in boar spermatozoa is required for fertilization: relevance to sperm proteasomal function.

作者信息

Yi Young-Joo, Park Chang-Sik, Kim Eui-Sook, Song Eun-Sook, Jeong Ji-Hyeon, Sutovsky Peter

机构信息

Division of Animal Sciences, University of Missouri-Columbia, Columbia, MO 65211-5300, USA.

出版信息

Syst Biol Reprod Med. 2009 Mar-Apr;55(2):85-96. doi: 10.1080/19396360802699074.

Abstract

Extracellular ATP has been implicated in a number of cellular events, including mammalian sperm function. The complement of ATP-dependent sperm proteins includes six subunits of the 26S proteasome, a multi-subunit protease specific to ubiquitinated substrate-proteins. Proteolysis of ubiquitinated proteins by the 26S proteasome is necessary for the success of mammalian fertilization, including but not limited to acrosomal exocytosis (AE) and sperm-zona pellucida (ZP) penetration. The 26S proteasome is uniquely present on the sperm acrosomal surface during mammalian, ascidian, and invertebrate fertilization. The proteasome is a multi-subunit protease complex of approximately 2 MDa composed of the 19S regulatory complex and a 20S proteolytic core. Integrity of the 19S complex is maintained by six 19S ATPase subunits (PSMC1 through PSMC6). Consequently, we hypothesized that fertilization will be blocked by the depletion of sperm-surface associated ATP (ssATP). Depletion of ssATP by the Solanum tuberosum apyrase, a 49 kDa, non-cell permeant enzyme, significantly reduced the ATP content measured by an adapted luminescence-ATP assay from which all permeabilizing agents were excluded. Addition of active apyrase to porcine in vitro fertilization (IVF) medium caused a concentration dependent reduction in the overall fertilization rate. No such outcomes were observed in control groups using heat-inactivated apyrase. Apyrase treatment altered the band pattern of 19S ATPase subunits PSMC1 (Rpt2) and PSMC4 (Rpt3) in Western blotting, suggesting that it had an effect on the integrity of the sperm proteasomal 19S complex. Apyrase only altered the proteasomal core activities slightly, since these activities are not directly dependent on external ATP. In contrast, sperm treatment with MG132, a specific inhibitor of the proteasomal core chymotrypsin-like activity, inhibited the target proteolytic activity, but also induced a compensatory elevation in proteasomal peptidyl-glutamyl peptide hydrolase activity. Altogether, the present data provide an important missing piece of evidence in support of the ssATP-dependent, proteasomal-proteolytic model of sperm-ZP interactions.

摘要

细胞外ATP与许多细胞事件有关,包括哺乳动物精子功能。依赖ATP的精子蛋白包括26S蛋白酶体的六个亚基,26S蛋白酶体是一种对泛素化底物蛋白具有特异性的多亚基蛋白酶。26S蛋白酶体对泛素化蛋白的蛋白水解作用对于哺乳动物受精的成功至关重要,包括但不限于顶体胞吐作用(AE)和精子穿透透明带(ZP)。在哺乳动物、海鞘和无脊椎动物受精过程中,26S蛋白酶体独特地存在于精子顶体表面。蛋白酶体是一种约2 MDa的多亚基蛋白酶复合物,由19S调节复合物和20S蛋白水解核心组成。19S复合物的完整性由六个19S ATP酶亚基(PSMC1至PSMC6)维持。因此,我们推测受精将因精子表面相关ATP(ssATP)的耗尽而受阻。马铃薯腺苷三磷酸双磷酸酶(一种49 kDa的非细胞渗透性酶)耗尽ssATP后,通过改良的发光ATP测定法(排除所有透化剂)测量的ATP含量显著降低。向猪体外受精(IVF)培养基中添加活性腺苷三磷酸双磷酸酶导致总体受精率呈浓度依赖性降低。在使用热灭活腺苷三磷酸双磷酸酶的对照组中未观察到此类结果。腺苷三磷酸双磷酸酶处理改变了蛋白质印迹中19S ATP酶亚基PSMC1(Rpt2)和PSMC4(Rpt3)的条带模式,表明其对精子蛋白酶体19S复合物的完整性有影响。腺苷三磷酸双磷酸酶仅轻微改变蛋白酶体核心活性,因为这些活性不直接依赖于外部ATP。相比之下,用蛋白酶体核心胰凝乳蛋白酶样活性的特异性抑制剂MG132处理精子可抑制目标蛋白水解活性,但也会导致蛋白酶体肽基 - 谷氨酰肽水解酶活性的代偿性升高。总之,目前的数据提供了重要的缺失证据,支持精子 - ZP相互作用的ssATP依赖性蛋白酶体蛋白水解模型。

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