Studies of tRNA macro molecular mimicry in translation termination
Studies of tRNA macro molecular mimicry in translation termination
批准号:
13480206
负责人:
ITO Koichi
金额:
$9.73万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
2001
资助国家:
日本
项目状态:
已结题
起止时间:
2001 至 2002
中文摘要
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英文摘要
A yeast eRF1-domain swap containing Tetrahymena domain 1 responded only to UGA in vitro and failed to complement a defect in yeast eRF1 in vivo at 37 degrees C. This finding demonstrates that decoding specificity of eRF1 from variant code organisms resides at domain 1. However, the wild-type eRF1 hybrid fully restored the growth of eRF1-deficient yeast at 30 degrees C. Tetrahymena eRF1 contains a variant sequence, KATNIKD, at the tip of domain 1. The TASNIKD variant of hybrid eRF1 rendered the eRF1-nullified yeast viable, although in an in vitro assay, the same hybrid eRF1 responded only to UGA. Nevertheless, the yeast eRF1 bearing the KATNIKD motif instead of the TASNIKS heptapeptide present in higher eukaryotes remains omnipotent in vivo. Collectively, these data suggest that variant genetic code organisms like Tetrahymena have an intrinsic potential to decode three stop codons in vivo, and that interaction within domain 1 between the KAT tripeptide and other sequences modulates the decoding specificity of Tetrahymena eRF1.Thermus thermophilus RRF is nonfunctional in Escherichia coli. It became functional upon introducing a plasmid expressing E. coli EF-G with surface changes in its tRNA-mimic domain or by replacing the E. coli EF-G tRNA-mimic domain by the Thermus domain. Thermus RRF could also be activated by introducing surface substitutions in its anticodon arm-mimic region. These gain-of-function phenotypes depend on the combination of heterologous EF-G and RRF alleles. These mutational studies suggest that EF-G motor action is transmitted to RBF by specific surface contacts between the domains that mimic the anticodon arm.
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伊藤耕一: "翻訳終結の分子機構(「RNAの細胞生物学」)"蛋白質 核酸 酵素. 第48巻. 329-337 (2003)
伊藤浩一:“翻译终止的分子机制(“RNA 的细胞生物学”)”《蛋白质、核酸和酶》,第 48 卷,329-337(2003 年)。
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通讯作者:
Blake, B.K.: "1H, 13C, and 15N assignments of the ribosome recycling factor from Thermus thermophilus"Journal of Biomolecular NMR. 第24巻. 81-82 (2002)
Blake, B.K.:“嗜热栖热菌核糖体回收因子的 1H、13C 和 15N 分配”《生物分子 NMR 杂志》第 24 卷 81-82 (2002)。
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通讯作者:
Uno, M., Ito, K., Nakamura, Y.: "Polypeptide release at sense and noncognate stop codons by localized charge-exchange alterations in translational release factors"Proc. Natl. Acad. Sci. USA. 99. 1819-1824 (2002)
Uno,M.,Ito,K.,Nakamura,Y.:“通过翻译释放因子中的局部电荷交换改变,在有义和非同源终止密码子处释放多肽”Proc。
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通讯作者:
Uno, M.: "Polypeptide release at sense and noncognate stop codons by localized charge-exchange alterations in translational release factors"Proceedings of the National Academy of Sciences of the United States of America. 第99巻. 1819-1824 (2002)
Uno, M.:“通过翻译释放因子中的局部电荷交换改变在有义和非同源终止密码子处释放多肽”,美国国家科学院院刊,第 99 卷,1819-1824 年(2002 年)。
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Gong, F.: "The mechanism of tryptophan induction of tryptophanase operon expression : tryptophan inhibits release factor-mediated cleavage of TnaC-peptidyl-tRNA(Pro)"Proceedings of the National Academy of Sciences of the United States of America. 第98巻. 89
龚F.:“色氨酸诱导色氨酸酶操纵子表达的机制:色氨酸抑制释放因子介导的TnaC-肽基-tRNA(Pro)的切割”美国国家科学院院刊第98卷。 .89
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