Institute of Genomics and Integrative Biology (CSIR), Mall Road, Delhi 110007, India.
J Bacteriol. 2011 Oct;193(19):5347-58. doi: 10.1128/JB.05469-11. Epub 2011 Jul 29.
During protein synthesis, translation elongation factor Tu (Ef-Tu) is responsible for the selection and binding of the cognate aminoacyl-tRNA to the acceptor site on the ribosome. The activity of Ef-Tu is dependent on its interaction with GTP. Posttranslational modifications, such as phosphorylation, are known to regulate the activity of Ef-Tu in several prokaryotes. Although a study of the Mycobacterium tuberculosis phosphoproteome showed Ef-Tu to be phosphorylated, the role of phosphorylation in the regulation of Ef-Tu has not been studied. In this report, we show that phosphorylation of M. tuberculosis Ef-Tu (MtbEf-Tu) by PknB reduced its interaction with GTP, suggesting a concomitant reduction in the level of protein synthesis. Overexpression of PknB in Mycobacterium smegmatis indeed reduced the level of protein synthesis. MtbEf-Tu was found to be phosphorylated by PknB on multiple sites, including Thr118, which is required for optimal activity of the protein. We found that kirromycin, an Ef-Tu-specific antibiotic, had a significant effect on the nucleotide binding of unphosphorylated MtbEf-Tu but not on the phosphorylated protein. Our results show that the modulation of the MtbEf-Tu-GTP interaction by phosphorylation can have an impact on cellular protein synthesis and growth. These results also suggest that phosphorylation can change the sensitivity of the protein to the specific inhibitors. Thus, the efficacy of an inhibitor can also depend on the posttranslational modification(s) of the target and should be considered during the development of the molecule.
在蛋白质合成过程中,翻译延伸因子 Tu(Ef-Tu)负责选择和结合与核糖体上的受体位点对应的氨酰-tRNA。Ef-Tu 的活性依赖于其与 GTP 的相互作用。已知翻译后修饰(如磷酸化)可以调节几种原核生物中 Ef-Tu 的活性。尽管对结核分枝杆菌磷酸蛋白质组的研究表明 Ef-Tu 被磷酸化,但磷酸化在调节 Ef-Tu 中的作用尚未得到研究。在本报告中,我们表明 PknB 对结核分枝杆菌 Ef-Tu(MtbEf-Tu)的磷酸化降低了其与 GTP 的相互作用,这表明蛋白质合成水平的相应降低。分枝杆菌 smegmatis 中 PknB 的过表达确实降低了蛋白质合成水平。发现 MtbEf-Tu 在多个位点被 PknB 磷酸化,包括 Thr118,这是蛋白质最佳活性所必需的。我们发现,埃夫霉素,一种 Ef-Tu 特异性抗生素,对未磷酸化的 MtbEf-Tu 的核苷酸结合有显著影响,但对磷酸化蛋白没有影响。我们的结果表明,磷酸化对 MtbEf-Tu-GTP 相互作用的调节可以影响细胞蛋白质合成和生长。这些结果还表明,磷酸化可以改变蛋白质对特定抑制剂的敏感性。因此,抑制剂的功效也可能取决于靶蛋白的翻译后修饰,在分子开发过程中应加以考虑。