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去能因子与小鼠精子之间的相互作用似乎涉及岩藻糖残基和一种糖基磷脂酰肌醇锚定受体。

Interactions between a decapacitation factor and mouse spermatozoa appear to involve fucose residues and a GPI-anchored receptor.

作者信息

Fraser L R

机构信息

Department of Anatomy and Human Biology, King's College, London, United Kingdom.

出版信息

Mol Reprod Dev. 1998 Oct;51(2):193-202. doi: 10.1002/(SICI)1098-2795(199810)51:2<193::AID-MRD9>3.0.CO;2-L.

Abstract

Epididymal mouse spermatozoa have a surface-associated decapacitation factor (DF) that can be removed precociously by centrifugation, resulting in acceleration of capacitation and increased fertilizing ability. Addition of exogenous DF to capacitated suspensions inhibits fertilizing ability and reverses capacitation in acrosome-intact cells. DF appears to regulate a Ca2+-ATPase, located primarily in the post-acrosomal region. The present investigations of DF<-->spermatozoon interaction indicate that DF can be removed from uncapacitated cells by treatment with phosphatidylinositol-specific phospholipase C (PIC), suggesting the involvement of a glycosylphosphatidylinositol (GPI) moiety. However, exogenous DF cannot reassociate with PIC-treated spermatozoa, suggesting that DF may bind to spermatozoa via a GPI-anchored receptor. DF binding appears to involve fucose residues, since depletion of endogenous DF followed by brief exposure to fucose (0.1-10 mM) prevented DF reassociation with cells. Furthermore, 5 mM fucose could displace DF from uncapacitated cells, accelerating capacitation and resulting in a higher proportion of fertilized oocytes, with increased polyspermy, than obtained with untreated controls. FITC-labelled fucosylated BSA bound specifically to the postacrosomal region, binding being inhibited by both excess fucose and crude DF. UEA I, a lectin with specificity for fucose residues, bound to the postacrosomal region of cells preincubated in fucose but not crude DF, and blocked DF binding to DF-depleted cells. These results are consistent with the DF binding, via fucose residues, to a GPI-anchored receptor. Fucose binding sites are in the same region where Ca2+-ATPase, the enzyme regulated by DF, has been localized; these results support the hypothesis that DF modulates capacitation by regulating enzyme activity and hence the intracellular Ca2+ concentration.

摘要

附睾中的小鼠精子具有一种与表面相关的去能因子(DF),通过离心可过早地将其去除,从而导致获能加速并提高受精能力。向获能的悬浮液中添加外源性DF会抑制受精能力,并使顶体完整细胞中的获能过程逆转。DF似乎调节一种主要位于顶体后区域的Ca2+ - ATP酶。目前对DF与精子相互作用的研究表明,通过用磷脂酰肌醇特异性磷脂酶C(PIC)处理,可以从未获能细胞中去除DF,这表明存在糖基磷脂酰肌醇(GPI)部分的参与。然而,外源性DF不能与经PIC处理的精子重新结合,这表明DF可能通过GPI锚定受体与精子结合。DF的结合似乎涉及岩藻糖残基,因为内源性DF耗尽后短暂暴露于岩藻糖(0.1 - 10 mM)可阻止DF与细胞重新结合。此外,5 mM岩藻糖可将DF从未获能细胞中置换出来,加速获能,并导致受精的卵母细胞比例更高,与未处理的对照相比,多精受精增加。异硫氰酸荧光素标记的岩藻糖化牛血清白蛋白特异性结合到顶体后区域,过量的岩藻糖和粗制DF均能抑制这种结合。UEA I是一种对岩藻糖残基具有特异性的凝集素,它结合到在岩藻糖而非粗制DF中预孵育的细胞的顶体后区域,并阻断DF与DF耗尽细胞的结合。这些结果与DF通过岩藻糖残基与GPI锚定受体结合一致。岩藻糖结合位点与受DF调节的Ca2+ - ATP酶所在的区域相同;这些结果支持了DF通过调节酶活性从而调节细胞内Ca2+浓度来调节获能的假说。

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