首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Role of the integrin-associated protein CD9 in binding between sperm ADAM 2 and the egg integrin α6β1: Implications for murine fertilization
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Role of the integrin-associated protein CD9 in binding between sperm ADAM 2 and the egg integrin α6β1: Implications for murine fertilization

机译:整合素相关蛋白CD9在精子ADAM 2与卵整合素α6β1结合中的作用:对小鼠受精的意义

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摘要

CD9 is a tetraspan protein that associates with several β1 integrins, including α6β1. Because α6β1 is present on murine eggs and interacts with the sperm-surface glycoprotein ADAM 2 (fertilin β), we first asked whether CD9 is present on murine eggs and whether it functions in sperm–egg binding and fusion. CD9 is present on the plasma membrane of oocytes in the ovary as well as on eggs isolated from the oviduct. The anti-CD9 mAb, JF9, potently inhibits sperm–egg binding and fusion in vitro in a dose-dependent manner. JF9 also disrupts binding of fluorescent beads coated with native fertilin or a recombinant fertilin β disintegrin domain. (Both ligands bind to the egg via α6β1.) Immunohistochemistry showed that CD9 is undetectable in the uterine epithelium, appears basolaterally and as prominent apical patches on the epithelium in the region between the uterus and the oviduct, and then persists apically in the oviduct. The integrin α6A subunit is found in similar apical patches in the region between the uterus and oviduct, but is confined to the basal aspect of the epithelium in the uterus and oviduct. Hence, α6A and CD9 both are expressed on the apical epithelial surface at the uterine–oviduct junction. These findings correlate with the observation that fertilin β “knockout” sperm traverse the uterus but do not progress into the oviduct, contributing to the infertility of fertilin β−/− male mice. Our results suggest that high-avidity binding between fertilin β (ADAM 2) and α6β1 requires cooperation between α6β1 and CD9. Such cooperation may assist sperm passage into the oviduct as well as sperm–egg interactions.
机译:CD9是一种四跨蛋白,与几种β1整联蛋白(包括α6β1)相关。因为鼠卵中存在α6β1并与精子表面糖蛋白ADAM 2(铁蛋白β)相互作用,所以我们首先询问鼠卵中是否存在CD9,以及CD9是否在精卵结合和融合中起作用。 CD9存在于卵巢中卵母细胞的质膜上以及从输卵管分离的卵上。抗CD9单抗JF9在体外以剂量依赖性方式有效抑制精卵结合和融合。 JF9还破坏了涂有天然铁蛋白或重组铁蛋白β整合素结构域的荧光珠的结合。 (两个配体均通过α6β1结合到卵上。)免疫组织化学显示CD9在子宫上皮中不可检测,在子宫和输卵管之间的区域上基底膜上和作为突出的顶端斑块出现,然后在输卵管中持续存在。整联蛋白α6A亚基在子宫和输卵管之间的区域的相似的顶端斑块中发现,但仅限于子宫和输卵管的上皮的基础方面。因此,α6A和CD9都在子宫输卵管交界处的顶上皮表面表达。这些发现与观察到的铁蛋白β“敲除”精子穿过子宫但没有进入输卵管的观察结果有关,这有助于铁蛋白β-/-雄性小鼠的不育。我们的结果表明,铁蛋白β(ADAM 2)和α6β1之间的高亲和力结合需要α6β1和CD9之间的协同作用。这种合作可能有助于精子通过输卵管以及精子与卵的相互作用。

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