Crystal structure of nitrogen regulatory protein IIA super(Ntr )ufrom Neisseria meningitidisi

The NMB0736 gene of Neisseria meningitidis serogroup B strain MC58 encodes the putative nitrogen regulatory protein IIA super(Ntr )u(abbreviated to NM- IIA super(Ntr)u). The homologous protein present in Escherichia coli is implicated in the control of nitrogen assimilation. As part of a structural...

Full description

Saved in:
Bibliographic Details
Published inBMC structural biology Vol. 5; no. 1
Main Authors Ren, Jingshan, Sainsbury, Sarah, Berrow, Nick S, Alderton, David, Nettleship, Joanne E, Stammers, David K, Saunders, Nigel J, Owens, Raymond J
Format Journal Article
LanguageEnglish
Published 01.01.2005
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:The NMB0736 gene of Neisseria meningitidis serogroup B strain MC58 encodes the putative nitrogen regulatory protein IIA super(Ntr )u(abbreviated to NM- IIA super(Ntr)u). The homologous protein present in Escherichia coli is implicated in the control of nitrogen assimilation. As part of a structural proteomics approach to the study of pathogenic Neisseria spp., we have selected this protein for structure determination by X-ray crystallography. The NM-IIA super(Ntr )uwas over-expressed in E. coli and was shown to be partially mono-phosphorylated, as assessed by mass spectrometry of the purified protein. Crystals of un-phosphorylated protein were obtained and diffraction data collected to 2.5 Aa resolution. The structure of NM-IIA super(Ntr )uwas solved by molecular replacement using the coordinates of the E. coli nitrogen regulatory protein IIA super(ntr )u[PDB: ] as the starting model. The overall fold of the Neisseria enzyme shows a high degree of similarity to the IIA super(Ntr )ufrom E. coli, and the position of the phosphoryl acceptor histidine residue (H67) is conserved. The orientation of an adjacent arginine residue (R69) suggests that it may also be involved in coordinating the phosphate group. Comparison of the structure with that of E. coli IIA super(mtl )ucomplexed with HPr [PDB: ] indicates that NM-IIA super(Ntr )ubinds in a similar way to the HPr-like enzyme in Neisseria. The structure of NM-IIA super(Ntr )uconfirms its assignment as a homologue of the IIA super(Ntr )uproteins found in a range of other Gram-negative bacteria. We conclude that the NM- IIA super(Ntr )uprotein functions as part of a phosphorylation cascade which, in contrast to E. coli, shares the upstream phosphotransfer protein with the sugar uptake phosphoenolpyruvate:sugar phosphotransferase system (PTS), but in common with E. coli has a distinct downstream effector mechanism.
Bibliography:ObjectType-Article-1
SourceType-Scholarly Journals-1
content type line 23
ObjectType-Feature-2
ISSN:1472-6807
DOI:10.1186/1472-6807-5-13