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细菌、酵母和人类中的同源核糖体蛋白。

Homologous ribosomal proteins in bacteria, yeast, and humans.

作者信息

Chen I T, Dixit A, Rhoads D D, Roufa D J

出版信息

Proc Natl Acad Sci U S A. 1986 Sep;83(18):6907-11. doi: 10.1073/pnas.83.18.6907.

Abstract

We describe sequences of two human ribosomal proteins, S14 and S17, and messenger RNAs that encode them. cDNAs were used as molecular hybridization probes to recognize complementary genes in rodent, Drosophila, and yeast chromosomal DNAs. Human ribosomal protein sequences are compared to analogous Chinese hamster, yeast, and bacterial genes. Our observations suggest that some ribosomal protein genes have been conserved stringently in the several phylogenetic lines examined. These genes apparently were established early in evolution and encode products that are fundamental to the translational apparatus. Other ribosomal protein genes examined, although similar enough to heterologous DNA sequences to indicate their structural relationships, appear to have diverged substantially during evolution, probably reflecting adaptations to different genetic environments.

摘要

我们描述了两种人类核糖体蛋白S14和S17的序列以及编码它们的信使RNA。利用互补DNA(cDNA)作为分子杂交探针,来识别啮齿动物、果蝇和酵母染色体DNA中的互补基因。将人类核糖体蛋白序列与类似的中国仓鼠、酵母和细菌基因进行了比较。我们的观察结果表明,在所研究的几个系统发育谱系中,一些核糖体蛋白基因得到了严格的保守。这些基因显然在进化早期就已确立,并且编码对翻译装置至关重要的产物。所研究的其他核糖体蛋白基因,尽管与异源DNA序列相似到足以表明它们的结构关系,但在进化过程中似乎已经发生了很大的分歧,这可能反映了对不同遗传环境的适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cef/386619/360d5e3f4308/pnas00322-0252-a.jpg

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