| Literature DB >> 11513881 |
P T Erskine1, L Coates, R Newbold, A A Brindley, F Stauffer, S P Wood, M J Warren, J B Cooper, P M Shoolingin-Jordan, R Neier.
Abstract
The structures of 5-aminolaevulinic acid dehydratase complexed with two irreversible inhibitors (4-oxosebacic acid and 4,7-dioxosebacic acid) have been solved at high resolution. Both inhibitors bind by forming a Schiff base link with Lys 263 at the active site. Previous inhibitor binding studies have defined the interactions made by only one of the two substrate moieties (P-side substrate) which bind to the enzyme during catalysis. The structures reported here provide an improved definition of the interactions made by both of the substrate molecules (A- and P-side substrates). The most intriguing result is the novel finding that 4,7-dioxosebacic acid forms a second Schiff base with the enzyme involving Lys 210. It has been known for many years that P-side substrate forms a Schiff base (with Lys 263) but until now there has been no evidence that binding of A-side substrate involves formation of a Schiff base with the enzyme. A catalytic mechanism involving substrate linked to the enzyme through Schiff bases at both the A- and P-sites is proposed.Entities:
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Year: 2001 PMID: 11513881 DOI: 10.1016/s0014-5793(01)02721-1
Source DB: PubMed Journal: FEBS Lett ISSN: 0014-5793 Impact factor: 4.124