Crystal structure of the transcription elongation/antitermination factor NusA from Mycobacterium tuberculosis at 1.7 Å resolution

被引:49
作者
Gopal, B
Haire, LF
Gamblin, SJ
Dodson, EJ
Lane, AN
Papavinasasundaram, KG
Colston, MJ
Dodson, G
机构
[1] Natl Inst Med Res, Div Prot Struct, London NW7 1AA, England
[2] Natl Inst Med Res, Div Mol Struct, London NW7 1AA, England
[3] Natl Inst Med Res, Div Mycobacterial Res, London NW7 1AA, England
[4] Univ York, Dept Chem, York Y010 5DD, N Yorkshire, England
关键词
transcription; antitermination; crystal structure; NusA; mycobacterial growth;
D O I
10.1006/jmbi.2000.5144
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mycobacterium tuberculosis is the cause of tuberculosis in humans, a disease that affects over a one-third of the world's population. This slow-growing pathogen has only one ribosomal RNA operon, thus making its transcriptional apparatus a fundamentally interesting target for drug discovery. NusA binds to RNA polymerase and modulates several of the ribosomal RNA transcriptional processes. Here, we report the crystal structure of NusA, and reveal that the molecule consists of four domains. They are organised as two distinct entities. The N-terminal domain (residues 1 to 99) that resembles the B chain of the Rad50cd ATP binding cassette-ATPase (ABC-ATPase) and a C-terminal module (residues 108 to 329) consisting of a ribosomal S1 protein domain followed by two K homology domains. The S1 and KH domains are tightly integrated together to form an extensive RNA-binding structure, but are flexibly tethered to the N-terminal domain. The molecule's surfaces and architecture provide insights into RNA and polymerase interactions and the mechanism of pause site discrimination. They also allow us to rationalize certain termination-defective and cold shock-sensitive mutations in the nusA gene that have been studied in Escherichia coli. (C) 2001 Academic Press.
引用
收藏
页码:1087 / 1095
页数:9
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