Synergistic Allostery, a Sophisticated Regulatory Network for the Control of Aromatic Amino Acid Biosynthesis in Mycobacterium tuberculosis

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dc.contributor.author Webby, CJ en
dc.contributor.author Jiao, WT en
dc.contributor.author Hutton, RD en
dc.contributor.author Blackmore, NJ en
dc.contributor.author Baker, Heather en
dc.contributor.author Baker, Edward en
dc.contributor.author Jameson, GB en
dc.contributor.author Parker, EJ en
dc.date.accessioned 2012-02-27T01:14:04Z en
dc.date.issued 2010-10-01 en
dc.identifier.citation Journal of Biological Chemistry 285(40):30567-30576 01 Oct 2010 en
dc.identifier.issn 0021-9258 en
dc.identifier.uri http://hdl.handle.net/2292/12075 en
dc.description.abstract The shikimate pathway, responsible for aromatic amino acid biosynthesis, is required for the growth of Mycobacterium tuberculosis and is a potential drug target. The first reaction is catalyzed by 3-deoxy-D-arabino-heptulosonate 7-phosphate synthase (DAH7PS). Feedback regulation of DAH7PS activity by aromatic amino acids controls shikimate pathway flux. Whereas Mycobacterium tuberculosis DAH7PS (MtuDAH7PS) is not inhibited by the addition of Phe, Tyr, or Trp alone, combinations cause significant loss of enzyme activity. In the presence of 200 M Phe, only 2.4 M Trp is required to reduce enzymic activity to 50%. Reaction kinetics were analyzed in the presence of inhibitory concentrations of Trp/Phe or Trp/Tyr. In the absence of inhibitors, the enzyme follows Michaelis-Menten kinetics with respect to substrate erythrose 4-phosphate (E4P), whereas the addition of inhibitor combinations caused significant homotropic cooperativity with respect to E4P, with Hill coefficients of 3.3 (Trp/Phe) and 2.8 (Trp/Tyr). Structures of MtuDAH7PS/Trp/Phe, MtuDAH7PS/Trp, and MtuDAH7PS/ Phe complexes were determined. The MtuDAH7PS/Trp/Phe homotetramer binds four Trp and six Phe molecules. Binding sites for both aromatic amino acids are formed by accessory elements to the core DAH7PS ( / )8 barrel that are unique to the type II DAH7PS family and contribute to the tight dimer and tetramer interfaces. A comparison of the liganded and unliganded MtuDAH7PS structures reveals changes in the interface areas associated with inhibitor binding and a small displacement of the E4P binding loop. These studies uncover a previously unrecognized mode of control for the branched pathways of aromatic amino acid biosynthesis involving synergistic inhibition by specific pairs of pathway end products. en
dc.language EN en
dc.publisher AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC en
dc.relation.ispartofseries Journal of Biological Chemistry en
dc.rights Items in ResearchSpace are protected by copyright, with all rights reserved, unless otherwise indicated. Previously published items are made available in accordance with the copyright policy of the publisher. Details obtained from http://www.sherpa.ac.uk/romeo/issn/0021-9258/ en
dc.rights.uri https://researchspace.auckland.ac.nz/docs/uoa-docs/rights.htm en
dc.subject 3-DEOXY-D-ARABINO-HEPTULOSONATE 7-PHOSPHATE SYNTHASE en
dc.subject 3-DEOXY-D-MANNO-OCTULOSONATE 8-PHOSPHATE SYNTHASE en
dc.subject ACTINOMYCETE AMYCOLATOPSIS-METHANOLICA en
dc.subject SOLANUM-TUBEROSUM-L en
dc.subject ESCHERICHIA-COLI en
dc.subject SHIKIMATE PATHWAY en
dc.subject SACCHAROMYCES-CEREVISIAE en
dc.subject CRYSTAL-STRUCTURE en
dc.subject CATALYTIC MECHANISM en
dc.subject SUBSTRATE AMBIGUITY en
dc.title Synergistic Allostery, a Sophisticated Regulatory Network for the Control of Aromatic Amino Acid Biosynthesis in Mycobacterium tuberculosis en
dc.type Journal Article en
dc.identifier.doi 10.1074/jbc.M110.111856 en
pubs.issue 40 en
pubs.begin-page 30567 en
pubs.volume 285 en
dc.rights.holder Copyright: American Society for Biochemistry and Molecular Biology en
dc.identifier.pmid 20667835 en
pubs.end-page 30576 en
dc.rights.accessrights http://purl.org/eprint/accessRights/RestrictedAccess en
pubs.subtype Article en
pubs.elements-id 165708 en
pubs.org-id Science en
pubs.org-id Science Research en
pubs.org-id Maurice Wilkins Centre (2010-2014) en
pubs.record-created-at-source-date 2012-02-17 en
pubs.dimensions-id 20667835 en


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