Suppr超能文献

RP51基因剂量改变对酿酒酵母核糖体合成的影响。

Effect of RP51 gene dosage alterations on ribosome synthesis in Saccharomyces cerevisiae.

作者信息

Abovich N, Gritz L, Tung L, Rosbash M

出版信息

Mol Cell Biol. 1985 Dec;5(12):3429-35. doi: 10.1128/mcb.5.12.3429-3435.1985.

Abstract

The Saccharomyces cerevisiae ribosomal protein rp51 is encoded by two interchangeable genes, RP51A and RP51B. We altered the RP51 gene dose by creating deletions of the RP51A or RP51B genes or both. Deletions of both genes led to spore inviability, indicating that rp51 is an essential ribosomal protein. From single deletion studies in haploid cells, we concluded that there was no intergenic dosage compensation at the level of mRNA abundance or mRNA utilization (translational efficiency), although phenotypic analysis had previously indicated a small compensation effect on growth rate. Similarly, deletions in diploid strains indicated that no strong mechanisms exist for intragenic dosage compensation; in all cases, a decreased dose of RP51 genes was characterized by a slow growth phenotype. A decreased dose of RP51 genes also led to insufficient amounts of 40S ribosomal subunits, as evidenced by a dramatic accumulation of excess 60S ribosomal subunits. We conclude that inhibition of 40S synthesis had little or no effect on the synthesis of the 60S subunit components. Addition of extra copies of rp51 genes led to extra rp51 protein synthesis. The additional rp51 protein was rapidly degraded. We propose that rp51 and perhaps many ribosomal proteins are normally oversynthesized, but the unassembled excess is degraded, and that the apparent compensation seen in haploids, i.e., the fact that the growth rate of mutant strains is less depressed than the actual reduction in mRNA, is a consequence of this excess which is spared from proteolysis under this circumstance.

摘要

酿酒酵母核糖体蛋白rp51由两个可互换的基因RP51A和RP51B编码。我们通过缺失RP51A基因或RP51B基因或两者来改变RP51基因剂量。两个基因的缺失导致孢子无法存活,这表明rp51是一种必需的核糖体蛋白。从单倍体细胞的单基因缺失研究中,我们得出结论,在mRNA丰度或mRNA利用(翻译效率)水平上不存在基因间剂量补偿,尽管之前的表型分析表明对生长速率有小的补偿作用。同样,二倍体菌株中的缺失表明不存在强大的基因内剂量补偿机制;在所有情况下,RP51基因剂量降低的特征是生长缓慢的表型。RP51基因剂量降低还导致40S核糖体亚基数量不足,这表现为60S核糖体亚基大量积累。我们得出结论,抑制40S合成对60S亚基成分的合成几乎没有影响。添加额外的rp51基因拷贝会导致额外的rp51蛋白合成。额外的rp51蛋白会迅速降解。我们提出,rp51以及可能许多核糖体蛋白通常会被过度合成,但未组装的过量蛋白会被降解,并且在单倍体中看到的明显补偿,即突变菌株的生长速率受抑制程度低于mRNA实际减少程度这一事实,是这种过量蛋白在这种情况下免受蛋白水解的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a60/369172/cf97d66d51d9/molcellb00142-0110-a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验