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缺乏ZP1的小鼠中透明带异常导致早期胚胎损失。

Abnormal zonae pellucidae in mice lacking ZP1 result in early embryonic loss.

作者信息

Rankin T, Talbot P, Lee E, Dean J

机构信息

Laboratory of Cellular and Developmental Biology, NIDDK, National Institutes of Health Bethesda, Maryland 20892, USA.

出版信息

Development. 1999 Sep;126(17):3847-55. doi: 10.1242/dev.126.17.3847.

Abstract

All vertebrates have an egg shell that surrounds ovulated eggs and plays critical roles in gamete recognition. This extracellular matrix is known as the zona pellucida in eutherian mammals and consists of three glycoproteins, ZP1, ZP2 and ZP3 in the mouse. To investigate the role of ZP1 in fertilization and early development, we have used targeted mutagenesis in embryonic stem cells to create mouse lines (Zp1(tm/tm)) lacking ZP1. Although a zona pellucida composed of ZP2 and ZP3 was formed around growing Zp1(tm/tm) oocytes, the matrix was more loosely organized than zonae around normal oocytes. In some Zp1 null follicles, this structural abnormality resulted in ectopic clusters of granulosa cells, lodged between the zona matrix and the oolemma, that perturbed normal folliculogenesis. Comparable numbers of eggs were ovulated from Zp1 null females and normal females following hormonal stimulation. However, after mating with males, fewer two-cell embryos were recovered from Zp1 null females, and their litters were significantly smaller than those produced by normal mice. Therefore, although mouse ZP1 is not essential for sperm binding or fertilization, it is required for the structural integrity of the zona pellucida to minimize precocious hatching and reduced fecundity.

摘要

所有脊椎动物都有一个围绕排卵卵母细胞的卵壳,其在配子识别中起关键作用。这种细胞外基质在真兽类哺乳动物中被称为透明带,在小鼠中由三种糖蛋白ZP1、ZP2和ZP3组成。为了研究ZP1在受精和早期发育中的作用,我们利用胚胎干细胞中的靶向诱变技术创建了缺乏ZP1的小鼠品系(Zp1(tm/tm))。尽管在生长中的Zp1(tm/tm)卵母细胞周围形成了由ZP2和ZP3组成的透明带,但该基质的组织结构比正常卵母细胞周围的透明带更松散。在一些Zp1基因敲除的卵泡中,这种结构异常导致颗粒细胞异位聚集,位于透明带基质和卵细胞膜之间,扰乱了正常的卵泡发生。在激素刺激后,Zp1基因敲除雌性小鼠和正常雌性小鼠排出的卵子数量相当。然而,与雄性小鼠交配后,从Zp1基因敲除雌性小鼠中回收的二细胞胚胎较少,并且它们的窝仔数明显少于正常小鼠产生的窝仔数。因此,尽管小鼠ZP1对于精子结合或受精不是必需的,但透明带的结构完整性需要它来尽量减少过早孵化和降低繁殖力。

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