About DSpace Software

Digital Knowledge Repository of Central Drug Research Institute, Lucknow (India) >
Publications of CDRI Scientists >
Molecular & Structural Biology >

Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/76

Title: Mechanistic insights from the crystal structures of a feast/famine regulatory protein from Mycobacterium tuberculosis H37Rv
Authors: Shrivastava, Tripti
Ravishankar, Ramachandran
Issue Date: 2007
Citation: Nucleic Acids Research, 2007, 1–12
Series/Report no.: CDRI communication number 7285
Abstract: Rv3291c gene from Mycobacterium tuberculosis codes for a transcriptional regulator belonging to the (leucine responsive regulatory protein/regulator of asparigine synthase C gene product) Lrp/AsnC-family. We have identified a novel effectorbinding site from crystal structures of the apo protein, complexes with a variety of amino acid effectors, X-ray based ligand screening and qualitative fluorescence spectroscopy experiments. The new effector site is in addition to the structural characterization of another distinct site in the protein conserved in the related AsnC-family of regulators. The structures reveal that the ligandbinding loops of two crystallographically ndependent subunits adopt different conformations to generate two distinct effector-binding sites. A change in the conformation of the binding site loop 100–106 in the B subunit is apparently necessary for octameric association and also allows the loop to interact with a bound ligand in the newly identified effector-binding site. There are four sites of each kind in the octamer and the protein preferentially binds to aromatic amino acids. While amino acids like Phe, Tyr and Trp exhibit binding to only one site, His exhibits binding to both sites. Binding of Phe is accompanied by a conformational change of 3.7A ° in the 75–83 loop, which is advantageously positioned to control formation of higher oligomers. Taken together, the present studies suggest an elegant control mechanism for global transcription regulation involving binding of ligands to the two sites, individually or collectively.
URI: http://hdl.handle.net/123456789/76
Appears in Collections:Molecular & Structural Biology

Files in This Item:

File Description SizeFormat
rravi-nucleicacidR-2007-1.pdf8103KbAdobe PDFView/Open

All items in DSpace are protected by copyright, with all rights reserved.

 

DKR - A Collaborative Effort of Documentation & Library Services Division and Information Technology Unit, CDRI, Lucknow
For Suggestions/Observations, Please mail to Suman K Mallik

DSpace Software Copyright © 2002-2005 MIT and Hewlett-Packard - Feedback