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2WUU

Structure of N-myristoyltransferase from L. donovani

Summary for 2WUU
Entry DOI10.2210/pdb2wuu/pdb
DescriptorN-MYRISTOYLTRANSFERASE, 2-oxopentadecyl-CoA (3 entities in total)
Functional Keywordstransferase, acyltransferase
Biological sourceLEISHMANIA DONOVANI
Total number of polymer chains1
Total formula weight49649.31
Authors
Brannigan, J.A.,Smith, B.A.,Yu, Z.,Hodgkinson, M.R.,Leatherbarrow, R.J.,Tate, E.W.,Brzozowski, A.M.,Smith, D.F.,Wilkinson, A.J. (deposition date: 2009-10-09, release date: 2009-12-01, Last modification date: 2023-12-20)
Primary citationBrannigan, J.A.,Smith, B.A.,Yu, Z.,Brzozowski, A.M.,Hodgkinson, M.R.,Maroof, A.,Price, H.P.,Meier, F.,Leatherbarrow, R.J.,Tate, E.W.,Smith, D.F.,Wilkinson, A.J.
N-Myristoyltransferase from Leishmania Donovani: Structural and Functional Characterisation of a Potential Drug Target for Visceral Leishmaniasis.
J.Mol.Biol., 396:985-, 2010
Cited by
PubMed Abstract: N-Myristoyltransferase (NMT) catalyses the attachment of the 14-carbon saturated fatty acid, myristate, to the amino-terminal glycine residue of a subset of eukaryotic proteins that function in multiple cellular processes, including vesicular protein trafficking and signal transduction. In these pathways, N-myristoylation facilitates association of substrate proteins with membranes or the hydrophobic domains of other partner peptides. NMT function is essential for viability in all cell types tested to date, demonstrating that this enzyme has potential as a target for drug development. Here, we provide genetic evidence that NMT is likely to be essential for viability in insect stages of the pathogenic protozoan parasite, Leishmania donovani, causative agent of the tropical infectious disease, visceral leishmaniasis. The open reading frame of L. donovani NMT has been amplified and used to overproduce active recombinant enzyme in Escherichia coli, as demonstrated by gel mobility shift assays of ligand binding and peptide-myristoylation activity in scintillation proximity assays. The purified protein has been crystallized in complex with the non-hydrolysable substrate analogue S-(2-oxo)pentadecyl-CoA, and its structure was solved by molecular replacement at 1.4 A resolution. The structure has as its defining feature a 14-stranded twisted beta-sheet on which helices are packed so as to form an extended and curved substrate-binding groove running across two protein lobes. The fatty acyl-CoA is largely buried in the N-terminal lobe, its binding leading to the loosening of a flap, which in unliganded NMT structures, occludes the protein substrate binding site in the carboxy-terminal lobe. These studies validate L. donovani NMT as a potential target for development of new therapeutic agents against visceral leishmaniasis.
PubMed: 20036251
DOI: 10.1016/J.JMB.2009.12.032
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.42 Å)
Structure validation

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