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携带单个mZP3等位基因的突变雌性小鼠产生的卵子透明带较薄,但仍能正常繁殖。

Mutant female mice carrying a single mZP3 allele produce eggs with a thin zona pellucida, but reproduce normally.

作者信息

Wassarman P M, Qi H, Litscher E S

机构信息

Department of Cell Biology and Anatomy, Mount Sinai School of Medicine, New York, NY 10029-6574, USA.

出版信息

Proc Biol Sci. 1997 Mar 22;264(1380):323-8. doi: 10.1098/rspb.1997.0046.

Abstract

The mouse egg zona pellucida (ZP) is composed of three glycoproteins, called mZP1-3. Disruption of the mZP3 gene by targeted mutagenesis yields mice that are homozygous (mZP3-/-) for the null mutation; although the mutant mice are viable, females are infertile and their eggs lack a ZP. On the other hand, females heterozygous (mZP3+/-) for the mutation are fertile and their eggs have a ZP. Here, we examined fully grown oocytes from mZP3+/- females and found that, although they have a ZP, it is less than half the width (approximately 2.7 microns; volume, approximately 56 pl) of the ZP of oocytes from wild-type (mZP3+/+) mice (approximately 6.2 microns; volume, approximately 145 pl). Oocyte ZP were purified from ovarian homogenates by gradient centrifugation. Immunostaining of purified ZP on Western gels permitted an estimate to be made of the relative amounts of mZP3 and mZP2 present in the ZP of oocytes from mZP3+/+ and mZP3+/- mice. We found that the ZP from mZP3+/- mice contained, on average, 55 +/- 15% of the mZP3 and 44 +/- 8% of the mZP2 present in the ZP of mZP3+/+ mice; a result quite consistent with the observed widths and calculated volumes of the ZP. Despite the presence of a relatively thin ZP surrounding their eggs, reproduction of female mZP3+/- mice was indistinguishable from female mZP3+/+ mice. These results strongly suggest that, when a single mZP3 allele is present, approximately half the wild-type amount of mZP3 and approximately half the wild-type amount of mZP2 is assembled into a ZP. While this produces a relatively thin ZP, it apparently has no affect on reproduction. Furthermore, these results are consistent with the current molecular model for ZP structure.

摘要

小鼠卵透明带(ZP)由三种糖蛋白组成,称为mZP1 - 3。通过靶向诱变破坏mZP3基因可产生纯合(mZP3 - / - )无效突变的小鼠;尽管突变小鼠能够存活,但雌性小鼠不育,其卵子缺乏透明带。另一方面,突变杂合(mZP3 + / - )的雌性小鼠可育,其卵子有透明带。在这里,我们检查了mZP3 + / - 雌性小鼠的完全成熟卵母细胞,发现尽管它们有透明带,但该透明带的宽度不到野生型(mZP3 + / + )小鼠卵母细胞透明带宽度(约6.2微米;体积约145皮升)的一半(约2.7微米;体积约为56皮升)。通过梯度离心从卵巢匀浆中纯化卵母细胞透明带。对Western凝胶上纯化的透明带进行免疫染色,可以估计mZP3 + / + 和mZP3 + / - 小鼠卵母细胞透明带中mZP3和mZP2的相对含量。我们发现,mZP3 + / - 小鼠的透明带平均含有mZP3 + / + 小鼠透明带中mZP3的55±15%和mZP2的44±8%;这一结果与观察到的透明带宽度和计算出的体积相当一致。尽管其卵子周围的透明带相对较薄,但mZP3 + / - 雌性小鼠的繁殖情况与mZP3 + / + 雌性小鼠并无差异。这些结果强烈表明,当存在单个mZP3等位基因时,约一半野生型数量的mZP3和约一半野生型数量的mZP2组装成透明带。虽然这会产生相对较薄的透明带,但显然对繁殖没有影响。此外,这些结果与当前的透明带结构分子模型一致。

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