Chaperone Properties of Bacterial Elongation Factor EF-Tu
نویسندگان
چکیده
منابع مشابه
Nucleotide sequence of Mycobacterium leprae elongation factor (EF-Tu) gene.
The elongation factor EF-Tu is essential in bacterial translation and has sequences which are highly conserved even in phylogenetically distant bacteria. This allowed us to show that Gram negative bacteria had two copies of the tuf gene whereas most Gram positive bacteria including Mycobacteria had one copy of this gene (1). The agent of leprosy, Mycobacterium leprae, has been isolated from nat...
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Bacterial type VI secretion is an offensive and defensive weapon that utilizes a molecular warhead to inject toxins into neighboring cells. In this issue of Cell, Whitney et al. report a new class of toxin that disrupts the core metabolism of recipient cells and uncover a surprising requirement for EF-Tu.
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Altered expressions of mitochondria elongation factor Tu (EF-Tu) have been observed in certain types of cancers, including gastric cancer cell lines, but the impact of the alterations in gastric adenocarcinoma remains unclear. The purpose of this study was to investigate the expression of EF-Tu in gastric adenocarcinoma and to assess its clinical significance. A total of 104 paired resected gas...
متن کاملRecognition of the universally conserved 3'-CCA end of tRNA by elongation factor EF-Tu.
Escherichia coli tRNA(Val) with pyrimidine substitutions for the universally conserved 3'-terminal adenine can be readily aminoacylated. It cannot, however, transfer valine into polypeptides. Conversely, despite being a poor substrate for valyl-tRNA synthetase, tRNA(Val) with a 3'-terminal guanine is active in in vitro polypeptide synthesis. To better understand the function of the 3'-CCA seque...
متن کاملMechanism of elongation factor (EF)-Ts-catalyzed nucleotide exchange in EF-Tu. Contribution of contacts at the guanine base.
Nucleotide exchange in elongation factor Tu (EF-Tu) is catalyzed by elongation factor Ts (EF-Ts). Similarly to other GTP-binding proteins, the structural changes in the P loop and the Mg(2+) binding site are known to be important for nucleotide release from EF-Tu. In the present paper, we determine the contribution of the contacts between helix D of EF-Tu at the base side of the nucleotide and ...
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ژورنال
عنوان ژورنال: Journal of Biological Chemistry
سال: 1998
ISSN: 0021-9258
DOI: 10.1074/jbc.273.19.11478