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卵巢功能的基本机制:生殖细胞。

Basic mechanisms of ovarian function: germ cells.

出版信息

Environ Health Perspect. 1978 Jun;24:11-6. doi: 10.1289/ehp.782411.

Abstract

Recent work is reviewed on several molecular aspects of gene expression during oocyte maturation and early development. Several analyses have been carried out on protein synthesis patterns using the high resolution two-dimensional polyacrylamide gel electrophoresis technique. The protein pattern of some 400-500 spots in sea urchin oocytes before and just after fertilization are quite similar. By gastrula, major stage specific protein changes have been noted. In a similar study major protein changes are noted during the meiotic maturation process in mammals. With the use of the single-copy DNA hybridization technique, the quantitative levels of rare mRNA sequence expression have been determined during oogenesis and early development in the sea urchin model. The mature oocyte sequence set of some 37 x 10(6) nucleotides of information (or potentially 18,500 different proteins) is synthesized during oogenesis and slowly utilized during development. The sea urchin gastrula mRNA is predominantly synthesized by the embryo genome; however, essentially all those gastrula mRNA sequences can also be found in the mature oocyte (maternal) set. It is proposed by Hough-Evans et al. that this maternal sequence set, which is made during oogenesis and both utilized (translated in 10,000-20,000 proteins), and in part, continually synthesized by all stages of the embryo, plays a critical role in the morphogenic formation of a sea urchin embryo.

摘要

最近的工作回顾了卵母细胞成熟和早期发育过程中基因表达的几个分子方面。使用高分辨率二维聚丙烯酰胺凝胶电泳技术对蛋白质合成模式进行了几次分析。在受精前和受精后不久的海胆卵母细胞中,大约有 400-500 个斑点的蛋白质图谱非常相似。到原肠胚期,已经注意到主要的阶段特异性蛋白质变化。在类似的研究中,在哺乳动物的减数分裂成熟过程中也注意到了主要的蛋白质变化。通过使用单拷贝 DNA 杂交技术,在海胆模型中确定了卵子发生和早期发育过程中稀有 mRNA 序列表达的定量水平。成熟卵母细胞序列组约有 37 x 10(6)个核苷酸的信息(或潜在的 18500 种不同的蛋白质),在卵子发生过程中合成,并在发育过程中缓慢利用。海胆原肠胚的 mRNA 主要由胚胎基因组合成;然而,基本上所有这些原肠胚 mRNA 序列也可以在成熟卵母细胞(母体)组中找到。Hough-Evans 等人提出,这个母体序列组是在卵子发生过程中产生的,并且被利用(翻译成 10000-20000 种蛋白质),并且在胚胎的所有阶段部分连续合成,在海胆胚胎的形态形成中起着关键作用。

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本文引用的文献

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