moaE2



Type
protein_coding
Name
moaE2
Locus Name

Rv0866

Product

Probable molybdenum cofactor biosynthesis protein E2 MoaE2 (molybdopterin converting factor large subunit) (molybdopterin [MPT] converting factor, subunit 2)

Functional Category

Intermediary metabolism and respiration

Location
963869..964294 (+ strand)
Gene Length
425 bp
Nucleotides
TGACGCAGGTCCTGCGCGCCGCGCTGACAGATCAACCGATCTTTCTGGCCGAGCACGAGGAGCTGGTGAGCCATCGGTCGGCTGGCGCCATTGTCGGGTTCGTCGGAATGATCCGCGACCGTGACGGTGGACGGGGGGTGTTGCGGCTGGAGTACTCCGCGCACCCGTCGGCCGCACAGGTCCTTGCGGATTTGGTGGCGGAGGTAGCTGAAGAGTCCAGTGGCGTGCGTGCGGTGGCGGCCAGCCACCGGATCGGCGTCTTGCAGGTCGGGGAGGCCGCCCTGGTGGCGGCGGTTGCCGCCGATCACCGGCGGGCGGCGTTTGGCACCTGTGCGCACCTGGTGGAGACCATCAAGGCGCGGCTTCCCGTGTGGAAGCACCAGTTCTTCGAGGACGGTACCGACGAATGGGTGGGTTCGGTTTAA
Drug Resistance

Check for drug resistance association at TBDREAMDB

Mutations

Check for mutants available at TARGET


Function
Converts molybdopterin precursor Z into molybdopterin. This requires the incorporation of two sulfur atoms into precursor Z to generate a dithiolene group. The sulfur is provided by MoaD (By similarity). {ECO:0000250}.
Family

MoaE family

GO
InterPro

UniProt
P9WJR1
GenBank
Rv0866
EnsemblBacteria
Rv0866
Mycobrowser
Rv0866


Summary
Name
Molybdopterin synthase catalytic subunit 2 (EC 2.8.1.12) (MPT synthase subunit 2 2) (Molybdenum cofactor biosynthesis protein E 2) (Molybdopterin-converting factor large subunit 2) (Molybdopterin-converting factor subunit 2 2)
Family
MoaE family
Protein Sequence
MTQVLRAALTDQPIFLAEHEELVSHRSAGAIVGFVGMIRDRDGGRGVLRLEYSAHPSAAQVLADLVAEVAEESSGVRAVAASHRIGVLQVGEAALVAAVAADHRRAAFGTCAHLVETIKARLPVWKHQFFEDGTDEWVGSV
Mass
15,048 Da
Length
141 Aa

Rv0866 doesn't seem to be a targeted by any drug.



Proteogenomic analysis of Mycobacterium tuberculosis by high resolution mass spectrometry.
Mol Cell Proteomics. 2011 Dec;10(12):M111.011627. doi: 10.1074/mcp.M111.011445. Epub 2011 Oct 3.
Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence.
Nature. 1998 Jun 11;393(6685):537-44. doi: 10.1038/31159.