Crystal structure of the catalytic domain of LiCMS in complexed with pyruvate and acetyl-CoACrystal structure of the catalytic domain of LiCMS in complexed with pyruvate and acetyl-CoA

Structural highlights

3bli is a 1 chain structure with sequence from Leptospira interrogans. Full crystallographic information is available from OCA. For a guided tour on the structure components use FirstGlance.
Method:X-ray diffraction, Resolution 2.5Å
Ligands:, ,
Resources:FirstGlance, OCA, PDBe, RCSB, PDBsum, ProSAT

Function

CIMA_LEPIN Catalyzes the condensation of pyruvate and acetyl-coenzyme A to form (R)-citramalate (PubMed:15292141, PubMed:18498255, PubMed:19351325). Shows strict substrate specificity for pyruvate. Cannot use alpha-ketoisovalerate, alpha-ketobutyrate, alpha-ketoisocaproate, alpha-ketoglutarate or glyoxylate (PubMed:15292141, PubMed:18498255).[1] [2] [3]

Evolutionary Conservation

 

Check, as determined by ConSurfDB. You may read the explanation of the method and the full data available from ConSurf.

Publication Abstract from PubMed

Leptospira interrogans is the causative agent for leptospirosis, a zoonotic disease of global importance. In contrast with most other micro-organisms, L. interrogans employs a pyruvate pathway to synthesize isoleucine and LiCMS (L. interrogans citramalate synthase) catalyses the first reaction of the pathway which converts pyruvate and acetyl-CoA into citramalate, thus making it an attractive target for the development of antibacterial agents. We report here the crystal structures of the catalytic domain of LiCMS and its complexes with substrates, and kinetic and mutagenesis studies of LiCMS, which together reveal the molecular basis of the high substrate specificity and the catalytic mechanism of LiCMS. The catalytic domain consists of a TIM barrel flanked by an extended C-terminal region. It forms a homodimer in the crystal structure, and the active site is located at the centre of the TIM barrel near the C-terminal ends of the beta-strands and is composed of conserved residues of the beta-strands of one subunit and the C-terminal region of the other. The substrate specificity of LiCMS towards pyruvate against other alpha-oxo acids is dictated primarily by residues Leu(81), Leu(104) and Tyr(144), which form a hydrophobic pocket to accommodate the C(2)-methyl group of pyruvate. The catalysis follows the typical aldol condensation reaction, in which Glu(146) functions as a catalytic base to activate the methyl group of acetyl-CoA to form an enolated acetyl-CoA intermediate and Arg(16) as a general acid to stabilize the intermediate.

Molecular basis of the substrate specificity and the catalytic mechanism of citramalate synthase from Leptospira interrogans.,Ma J, Zhang P, Zhang Z, Zha M, Xu H, Zhao G, Ding J Biochem J. 2008 Oct 1;415(1):45-56. PMID:18498255[4]

From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.

References

  1. Xu H, Zhang Y, Guo X, Ren S, Staempfli AA, Chiao J, Jiang W, Zhao G. Isoleucine biosynthesis in Leptospira interrogans serotype lai strain 56601 proceeds via a threonine-independent pathway. J Bacteriol. 2004 Aug;186(16):5400-9. PMID:15292141 doi:10.1128/JB.186.16.5400-5409.2004
  2. Ma J, Zhang P, Zhang Z, Zha M, Xu H, Zhao G, Ding J. Molecular basis of the substrate specificity and the catalytic mechanism of citramalate synthase from Leptospira interrogans. Biochem J. 2008 Oct 1;415(1):45-56. PMID:18498255 doi:http://dx.doi.org/10.1042/BJ20080242
  3. Zhang P, Ma J, Zhang Z, Zha M, Xu H, Zhao G, Ding J. Molecular basis of the inhibitor selectivity and insights into the feedback inhibition mechanism of citramalate synthase from Leptospira interrogans. Biochem J. 2009 Jun 12;421(1):133-43. PMID:19351325 doi:10.1042/BJ20090336
  4. Ma J, Zhang P, Zhang Z, Zha M, Xu H, Zhao G, Ding J. Molecular basis of the substrate specificity and the catalytic mechanism of citramalate synthase from Leptospira interrogans. Biochem J. 2008 Oct 1;415(1):45-56. PMID:18498255 doi:http://dx.doi.org/10.1042/BJ20080242

3bli, resolution 2.50Å

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