The RNA-bound proteome of MRSA reveals post-transcriptional roles for helix-turn-helix DNA-binding and Rossmann-fold proteins

MRSA 的 RNA 结合蛋白质组揭示了螺旋-转角-螺旋 DNA 结合和罗斯曼折叠蛋白的转录后作用

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作者:Liang-Cui Chu, Pedro Arede, Wei Li, Erika C Urdaneta, Ivayla Ivanova, Stuart W McKellar, Jimi C Wills, Theresa Fröhlich, Alexander von Kriegsheim, Benedikt M Beckmann, Sander Granneman

Abstract

RNA-binding proteins play key roles in controlling gene expression in many organisms, but relatively few have been identified and characterised in detail in Gram-positive bacteria. Here, we globally analyse RNA-binding proteins in methicillin-resistant Staphylococcus aureus (MRSA) using two complementary biochemical approaches. We identify hundreds of putative RNA-binding proteins, many containing unconventional RNA-binding domains such as Rossmann-fold domains. Remarkably, more than half of the proteins containing helix-turn-helix (HTH) domains, which are frequently found in prokaryotic transcription factors, bind RNA in vivo. In particular, the CcpA transcription factor, a master regulator of carbon metabolism, uses its HTH domain to bind hundreds of RNAs near intrinsic transcription terminators in vivo. We propose that CcpA, besides acting as a transcription factor, post-transcriptionally regulates the stability of many RNAs.

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