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大肠杆菌延伸因子G阻断严谨因子。

Escherichia coli elongation factor G blocks stringent factor.

作者信息

Wagner E G, Kurland C G

出版信息

Biochemistry. 1980 Mar 18;19(6):1234-40. doi: 10.1021/bi00547a030.

Abstract

The relationship between the binding domains of elongation factor G(EF-G) and stringent factor (SF) on ribosomes was studied. The binding of highly purified, radioactively labeled, protein factors to ribosomes was monitored with a column system. The data show that binding of EF-G to ribosomes in the presence of fusidic acid and GDP or of the noncleavable analogue GDPCP prevents subsequent binding of SF to ribosomes. In addition, stabilization of the EF-G-ribosome complex by fusidic acid inhibits SF's enzymatic activities. Removal of protein L7/L12 from ribosomes leads to weaker binding of EF-G, while SF's binding and activity are unaffected. In the absence of L7/L12, EF-G-dependent inhibition of SF binding and function is reduced. The data presented in this report suggest that these two factors bind at overlapping, or at least interacting, ribosomal domains.

摘要

研究了延伸因子G(EF-G)和严谨因子(SF)在核糖体上的结合结构域之间的关系。利用柱系统监测高度纯化的、放射性标记的蛋白质因子与核糖体的结合情况。数据表明,在存在夫西地酸和GDP或不可裂解类似物GDPCP的情况下,EF-G与核糖体的结合会阻止SF随后与核糖体的结合。此外,夫西地酸对EF-G-核糖体复合物的稳定作用会抑制SF的酶活性。从核糖体上去除蛋白质L7/L12会导致EF-G的结合减弱,而SF的结合和活性不受影响。在没有L7/L12的情况下,EF-G对SF结合和功能的依赖性抑制作用会降低。本报告中的数据表明,这两种因子在重叠或至少相互作用的核糖体结构域上结合。

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