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人源ZP3可恢复Zp3基因敲除小鼠的生育能力,且不影响精子结合的顺序特异性。

Human ZP3 restores fertility in Zp3 null mice without affecting order-specific sperm binding.

作者信息

Rankin T L, Tong Z B, Castle P E, Lee E, Gore-Langton R, Nelson L M, Dean J

机构信息

Laboratory of Cellular and Developmental Biology, NIDDK, Developmental Endocrinology Branch, National Institutes of Health, Bethesda, MD, USA.

出版信息

Development. 1998 Jul;125(13):2415-24. doi: 10.1242/dev.125.13.2415.

Abstract

The mammalian zona pellucida surrounding ovulated eggs mediates sperm binding at fertilization, provides a postfertilization block to polyspermy, and facilitates passage of pre-implantation embryos down the oviduct. Although the three zona proteins (ZP1, ZP2, ZP3) are well conserved, mammalian fertilization is relatively specific and human sperm do not bind to the mouse zona pellucida. There are considerable in vitro data that ZP3 acts as a primary sperm adhesion molecule in mice and, by analogy, a similar role has been postulated for human ZP3. Genetically altered mice lacking ZP3 (Zp3(tm/tm)) do not form a zona pellucida and are infertile. To rescue this phenotype, transgenic mice expressing human ZP3 (67% identical to mouse ZP3) were produced and bred with Zp3(tm/tm) null mice. The resultant human ZP3 rescue females had chimeric zonae pellucidae composed of mouse ZP1, mouse ZP2 and human ZP3. Human ZP3 expressed in mouse oocytes had an apparent mass (64 kDa) indistinguishable from native human ZP3 and distinct from mouse ZP3 (83 kDa). Despite the presence of human ZP3, human sperm did not bind to the chimeric zona pellucida, and notwithstanding the absence of mouse ZP3, mouse sperm bound to ovulated eggs in vitro and fertility was restored in vivo. These data have implications regarding the molecular basis of mouse and human sperm binding to their respective zonae pellucidae.

摘要

围绕排卵后卵子的哺乳动物透明带在受精时介导精子结合,提供受精后防止多精入卵的屏障,并促进植入前胚胎沿输卵管下行。尽管三种透明带蛋白(ZP1、ZP2、ZP3)高度保守,但哺乳动物的受精具有相对特异性,人类精子不会与小鼠透明带结合。有大量体外数据表明,ZP3在小鼠中作为主要的精子粘附分子,由此类推,人类ZP3也被假定具有类似作用。缺乏ZP3(Zp3(tm/tm))的基因改造小鼠不形成透明带,因而不育。为挽救这种表型,制备了表达人类ZP3(与小鼠ZP3有67%的同源性)的转基因小鼠,并与Zp3(tm/tm)基因敲除小鼠进行杂交。产生的表达人类ZP3的挽救雌性小鼠具有由小鼠ZP1、小鼠ZP2和人类ZP3组成的嵌合透明带。在小鼠卵母细胞中表达的人类ZP3的表观分子量(64 kDa)与天然人类ZP3无法区分,且与小鼠ZP3(83 kDa)不同。尽管存在人类ZP3,但人类精子并未与嵌合透明带结合,而且尽管缺乏小鼠ZP3,小鼠精子在体外仍能与排卵后的卵子结合,并且在体内恢复了生育能力。这些数据对小鼠和人类精子与其各自透明带结合的分子基础具有启示意义。

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