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Roles of the negatively charged N-terminal extension of Saccharomyces cerevisiae ribosomal protein S5 revealed by characterization of a yeast strain containing human ribosomal protein S5

机译:通过鉴定含有人核糖体蛋白S5的酵母菌株来揭示啤酒酵母核糖体蛋白S5带负电荷的N末端延伸的作用

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摘要

Ribosomal protein ( rp) S5 belongs to a family of ribosomal proteins that includes bacterial rpS7. rpS5 forms part of the exit ( E) site on the 40S ribosomal subunit and is essential for yeast viability. Human rpS5 is 67% identical and 79% similar to Saccharomyces cerevisiae rpS5 but lacks a negatively charged (pI; similar to 3.27) 21 amino acid long N-terminal extension that is present in fungi. Here we report that replacement of yeast rpS5 with its human homolog yielded a viable yeast strain with a 20%-25% decrease in growth rate. This replacement also resulted in a moderate increase in the heavy polyribosomal components in the mutant strain, suggesting either translation elongation or termination defects, and in a reduction in the polyribosomal association of the elongation factors eEF3 and eEF1A. In addition, the mutant strain was characterized by moderate increases in +1 and -1 programmed frameshifting and hyperaccurate recognition of the UAA stop codon. The activities of the cricket paralysis virus (CrPV) IRES and two mammalian cellular IRESs (CAT-1 and SNAT-2) were also increased in the mutant strain. Consistently, the rpS5 replacement led to enhanced direct interaction between the CrPV IRES and the mutant yeast ribosomes. Taken together, these data indicate that rpS5 plays an important role in maintaining the accuracy of translation in eukaryotes and suggest that the negatively charged N-terminal extension of yeast rpS5 might affect the ribosomal recruitment of specific mRNAs.
机译:核糖体蛋白(rp)S5属于核糖体蛋白家族,包括细菌rpS7。 rpS5形成40S核糖体亚基出口(E)部位的一部分,对于酵母活力至关重要。人rpS5与酿酒酵母rpS5具有67%的相同性和79%的相似性,但缺乏真菌中存在的带负电荷(pI;类似于3.27)的21个氨基酸长的N端延伸。在这里,我们报道了用其人类同源物替代酵母rpS5产生了可行的酵母菌株,其生长速率降低了20%-25%。这种替代还导致突变菌株中重多核糖体成分的适度增加,提示翻译延伸或终止缺陷,并导致延伸因子eEF3和eEF1A的多核糖体结合减少。另外,该突变株的特征是+1和-1程序性移码和UAA终止密码子的超精确识别的适度增加。在突变株中,para麻痹病毒(CrPV)IRES和两个哺乳动物细胞IRES(CAT-1和SNAT-2)的活性也增加了。一致地,rpS5替代导致CrPV IRES与突变酵母核糖体之间的直接相互作用增强。综上所述,这些数据表明,rpS5在维持真核生物翻译的准确性中起着重要作用,并暗示带负电荷的酵母rpS5的N端延伸可能影响特定mRNA的核糖体募集。

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