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小鼠受精素α和β的去整合素结构域在受精过程中的作用。

Roles of the disintegrin domains of mouse fertilins alpha and beta in fertilization.

作者信息

Evans J P, Schultz R M, Kopf G S

机构信息

Center for Research on Reproduction and Women's Health, University of Pennsylvania, Philadelphia 19104, USA.

出版信息

Biol Reprod. 1998 Jul;59(1):145-52. doi: 10.1095/biolreprod59.1.145.

Abstract

Fertilin is a heterodimer of alpha and beta subunits, both of which are members of the ADAM (A Disintegrin and A Metalloprotease domain)/MDC (Metalloprotease-Disintegrin-Cysteine-rich) family of proteins. We have previously demonstrated that recombinant forms of the putative extracellular domains of mouse fertilin alpha and fertilin beta bind to mouse eggs and inhibit sperm-egg membrane binding. In this study, we examined the roles of the disintegrin domains of fertilins alpha and beta by producing recombinant forms of fertilins alpha and beta that included the disintegrin domains (alphaDCE and betaDCE) or that were truncated so that they lack the disintegrin domains (alphaCE and betaCE) and tested the abilities of these proteins to bind to eggs and to inhibit sperm-egg binding. Fertilin betaDCE was able to inhibit sperm-egg binding, but fertilin betaCE was relatively ineffective, indicating that the disintegrin domain of fertilin beta is required for interactions with egg binding sites and/or for proper protein folding. Fertilins alphaDCE and alphaCE both inhibited sperm-egg interactions, but fertilin alphaDCE tended to be more effective. Thus, the presence of the disintegrin domain in fertilin alphaDCE apparently enhanced the ability of this recombinant protein to inhibit sperm-egg binding, either by interacting with egg binding sites or by improving the efficiency of protein folding. These data also indicate that the other domains of the fertilin alpha extracellular region (cysteine-rich and/or epidermal growth factor-like repeat) have the ability to block sperm binding and suggest that these domains of fertilin alpha may participate in sperm-egg adhesion.

摘要

受精素是由α和β亚基组成的异源二聚体,这两个亚基均属于ADAM(去整合素和金属蛋白酶结构域)/MDC(金属蛋白酶-去整合素-富含半胱氨酸)蛋白家族。我们之前已经证明,小鼠受精素α和受精素β假定的细胞外结构域的重组形式能够与小鼠卵子结合,并抑制精卵膜结合。在本研究中,我们通过制备包含去整合素结构域(αDCE和βDCE)或被截短从而缺失去整合素结构域(αCE和βCE)的受精素α和受精素β的重组形式,来研究受精素α和β的去整合素结构域的作用,并测试这些蛋白与卵子结合以及抑制精卵结合的能力。受精素βDCE能够抑制精卵结合,但受精素βCE相对无效,这表明受精素β的去整合素结构域对于与卵子结合位点的相互作用和/或正确的蛋白质折叠是必需的。受精素αDCE和αCE均能抑制精卵相互作用,但受精素αDCE往往更有效。因此,受精素αDCE中去整合素结构域的存在显然增强了这种重组蛋白抑制精卵结合的能力,这可能是通过与卵子结合位点相互作用或提高蛋白质折叠效率实现的。这些数据还表明,受精素α细胞外区域的其他结构域(富含半胱氨酸和/或表皮生长因子样重复序列)具有阻断精子结合的能力,并提示受精素α的这些结构域可能参与精卵黏附。

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