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Importance of individual amino acids in the Switch I region in eEF2 studied by functional complementation in S. cerevisiae

机译:通过酿酒酵母中的功能互补研究eEF2中Switch I区单个氨基酸的重要性

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摘要

Elongation factor 2 (eEF2) is a member of the G-protein super family. G-proteins undergo conformational changes associated with binding of the guanosine nucleotide and hydrolysis of the bound GTP. These structural rearrangements affects the Switch I region (also known as the Effector loop). We have studied the role of individual amino acids in the Switch I region (amino acids 25-73) of S. cerevisiae eEF2 using functional complementation in yeast. 21 point mutations in the Switch I region were created by site-directed mutagenesis. Mutants K49R, E52Q, A53G, F55Y, K60R, Q63A, T68S, I69M and A73G were functional while mutants R54H, F55N, D57A, D57E, D57S, R59K, R59M, Q63E, R65A, R65N, T68A and T68M were inactive. Expression of mutants K49R, A53G, Q63A, I69M and A73G was associated with markedly decreased growth rates and yeast cells expressing mutants A53G and I69M became temperature sensitive. The functional capacity of eEF2 in which the major part Switch I (amino acids T56 to 169) was converted into the homologous sequence found in EF-G from E. coli was also studied. This protein chimera could functionally replace yeast eEF2 in vivo. Yeast cells expressing this mutant grew extremely slowly, showed increased cell death and became temperature sensitive. The ability of the mutant to replace authentic eEF2 in vivo indicates that the structural rearrangement of Switch I necessary for eEF2 function is similar in eukaryotes and bacteria. The effect of two point mutations in the P-loop was also studied. Mutant A25G but not A25V could functionally replace yeast eEF2 even if cells expressing the mutant grew slowly. The A25G mutation converted the consensus sequences AXXXXGK[T/S] in eEF2 to the corresponding motif GXXXXGK[T/S] found in all other G-proteins, suggesting that the alanine found in the P-loop of peptidyltranslocases are not essential for function.
机译:延伸因子2(eEF2)是G蛋白超家族的成员。 G蛋白经历与鸟苷核苷酸结合和结合的GTP水解相关的构象变化。这些结构重排影响开关I区域(也称为效应子环)。我们已经使用酵母中的功能互补研究了酿酒酵母eEF2的Switch I区(氨基酸25-73)中单个氨基酸的作用。通过定点诱变在Switch I区域产生21个点突变。突变体K49R,E52Q,A53G,F55Y,K60R,Q63A,T68S,I69M和A73G起作用,而突变体R54H,F55N,D57A,D57E,D57S,R59K,R59M,Q63E,R65A,R65N,T68A和T68M处于失活状态。突变体K49R,A53G,Q63A,I69M和A73G的表达与生长速度明显降低有关,表达突变体A53G和I69M的酵母细胞对温度敏感。还研究了eEF2的功能能力,其中主要部分Switch I(氨基酸T56至169)被转化为大肠杆菌的EF-G中发现的同源序列。这种蛋白质嵌合体可以在体内功能上替代酵母eEF2。表达该突变体的酵母细胞生长极其缓慢,细胞死亡增加,并且对温度敏感。突变体在体内替代真正的eEF2的能力表明,真核生物和细菌中eEF2功能必需的Switch I的结构重排相似。还研究了P环中两点突变的影响。即使表达该突变体的细胞生长缓慢,突变体A25G却不能替代A25V,在功能上可以替代酵母eEF2。 A25G突变将eEF2中的共有序列AXXXXGK [T / S]转换为在所有其他G蛋白中发现的相应基序GXXXXGK [T / S],这表明在肽基转座酶P环中发现的丙氨酸并非功能必需。

著录项

  • 来源
    《Biochimie》 |2008年第5期|736-748|共13页
  • 作者

    Galyna Bartish; Odd Nygard;

  • 作者单位

    School of Life Sciences, Sodertorns hogskola, Box 4101, S-141 04 Huddinge, Sweden Department of Cell Biology, Arrhenius Laboratories E5, Stockholm University, S-106 91 Stockholm, Sweden;

    School of Life Sciences, Sodertorns hogskola, Box 4101, S-141 04 Huddinge, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    elongation factor 2; Functional complementation; Site directed mutagenesis; switch I; yeast;

    机译:伸长因子2;功能互补;定点诱变;切换我;酵母;
  • 入库时间 2022-08-18 01:24:09

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