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5I8U

Crystal Structure of the RV1700 (MT ADPRASE) E142Q mutant

Summary for 5I8U
Entry DOI10.2210/pdb5i8u/pdb
DescriptorADP-ribose pyrophosphatase, SULFATE ION, FORMIC ACID, ... (6 entities in total)
Functional Keywordsnudix, nudix hydrolase, adp-ribose hydrolase, adprase, adpr hydrolase, hydrolase
Biological sourceMycobacterium tuberculosis
Total number of polymer chains7
Total formula weight160971.37
Authors
Thirawatananond, P.,Kang, L.-W.,Amzel, L.M.,Gabelli, S.B. (deposition date: 2016-02-19, release date: 2016-10-12, Last modification date: 2023-09-27)
Primary citationO'Handley, S.F.,Thirawatananond, P.,Kang, L.W.,Cunningham, J.E.,Leyva, J.A.,Amzel, L.M.,Gabelli, S.B.
Kinetic and mutational studies of the adenosine diphosphate ribose hydrolase from Mycobacterium tuberculosis.
J. Bioenerg. Biomembr., 48:557-567, 2016
Cited by
PubMed Abstract: Mycobacterium tuberculosis represents one of the world's most devastating infectious agents - with one third of the world's population infected and 1.5 million people dying each year from this deadly pathogen. As part of an effort to identify targets for therapeutic intervention, we carried out the kinetic characterization of the product of gene rv1700 of M. tuberculosis. Based on its sequence and its structure, the protein had been tentatively identified as a pyrophosphohydrolase specific for adenosine diphosphate ribose (ADPR), a compound involved in various pathways including oxidative stress response and tellurite resistance. In this work we carry out a kinetic, mutational and structural investigation of the enzyme, which provides a full characterization of this Mt-ADPRase. Optimal catalytic rates were achieved at alkaline pH (7.5-8.5) with either 0.5-1 mM Mg or 0.02-1 mM Mn. K and k values for hydrolysis of ADPR with Mg ions are 200 ± 19 μM and 14.4 ± 0.4 s, and with Mn ions are 554 ± 64 μM and 28.9 ± 1.4 s. Four residues proposed to be important in the catalytic mechanism of the enzyme were individually mutated and the kinetics of the mutant enzymes were characterized. In the four cases, the K increased only slightly (2- to 3-fold) but the k decreased significantly (300- to 1900-fold), confirming the participation of these residues in catalysis. An analysis of the sequence and structure conservation patterns in Nudix ADPRases permits an unambiguous identification of members of the family and provides insight into residues involved in catalysis and their participation in substrate recognition in the Mt-ADPRase.
PubMed: 27683242
DOI: 10.1007/s10863-016-9681-9
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2 Å)
Structure validation

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