glnD



Type
protein_coding
Name
glnD
Locus Name

Rv2918c

Product

Probable [protein-PII] uridylyltransferase GlnD (PII uridylyl-transferase) (uridylyl removing enzyme) (UTASE)

Functional Category

Intermediary metabolism and respiration

Location
3228254..3230680 (- strand)
Gene Length
2426 bp
Nucleotides
ATGGAGGCAGAAAGTCCTTGTGCCGCAAGCGATTTAGCTGTCGCCCGACGCGAGCTGCTGTCCGGCAACCATCGCGAGCTGGATCCGGTCGGGCTGCGGCAGACGTGGCTGGATCTGCATGAGTCTTGGCTGATCGACAAGGCCGACGAGATCGGGATCGCCGATGCCAGTGGTTTTGCAATCGTCGGGGTCGGCGGGCTCGGCCGCCGCGAGCTGCTGCCGTATTCGGACCTGGACGTGTTGCTGTTGCACGATGGCAAGCCTGCTGACATCTTGCGGCCCGTCGCCGACAGGTTGTGGTATCCGTTGTGGGATGCCAACATTCGGCTCGATCACAGTGTGCGAACGGTTAGTGAGGCATTGACCATCGCCAATTCCGATCTGATGGCCGCTCTAGGCATGCTGGAAGCCCGCCACATCGCCGGCGATCAGCAGCTCTCGTTCGCGTTGATCGACGGCGTGCGACGCCAGTGGCGCAACGGAATTCGTTCCCGCATGGGCGAACTCGTCGAAATGACATATGCGCGTTGGCGGCGCTGTGGCCGGATCGCGCAGCGCGCAGAGCCCGATCTCAAATTGGGTCGCGGCGGCCTTCGGGACGTCCAGTTGCTAGACGCGCTGGCTCTCGCCCAGCTCATCGACCGGCACGGTATCGGCCACACGGACCTGCCGGCGGGTTCGCTGGACGGTGCGTATCGCACCTTGCTGGATGTGCGCACCGAACTGCACCGGGTGTCGGGCCGCGGACGCGACCACCTGCTGGCCCAGTTCGCCGACGAGATCAGCGCCGCGTTGGGTTTCGGTGACCGATTCGATTTGGCGCGCACACTGTCGAGTGCTGGCCGCACCATCGGTTACCACGCCGAAGCCGGGCTGCGGACTGCGGCGAATGCATTGCCGCGGCGCGGCATCTCGGCCTTGGTGCGGCGGCCAAAGCGGCGACCGCTCGACGAGGGTGTCGTCGAGTATGCCGGCGAAATCGTGCTCGCCCGCGACGCCGAACCCGAACACGATCCCGGCCTGGTGCTCCGAGTGGCCGCCGCGTCGGCCGACACCGGATTGCCCATTGGCGCCGCCACCCTGAGCCGGTTGGCCGCCAGCGTCCCGGATCTGCCGACTCCCTGGCCGCAAGAGGCATTGGACGACTTACTAGTTGTGCTCTCCGCCGGCCCCACCACGGTGGCTACCATCGAAGCGCTCGACCGAACCGGGCTCTGGGGCCGGTTGTTGCCGGAATGGGAGCCCATTCGCGACCTTCCGCCGCGCGACGTCGCCCACAAGTGGACGGTTGACCGACACGTGGTCGAGACCGCGGTGCATGCGGCGCCACTGGCCACCCGGGTGGCACGTCCCGACCTGCTTGCGCTTGGCGCGCTGCTGCACGACATCGGCAAGGGACGGGGCACCGATCACAGTGTGCTCGGGGCCGAATTGGTAATCCCGGTTTGCACCAGGCTGGGGTTGTCGCCGCCGGACGTGCGGACGCTCTCCAAGCTGGTCCGCCACCACCTGCTGCTGCCGATTACGGCAACCCGACGTGACTTAAACGACCCCAAAACCATCGAGGCGGTGTCCGAGGCGCTGGGTGGGGATCCGCAACTGCTCGAAGTTTTGCACGCCCTGTCGGAGGCGGACTCGAAGGCCACCGGCCCCGGGGTGTGGAGCGATTGGAAGGCGTCACTGGTCGATGACCTGGTGCGTCGCTGCCGGATGGTGATGGCCGGAGAGTCGCTGCCTCAAGCCGAACCGACTGCACCCCATTATCTTTCGCTGGCGGCCGACCACGGGGTGCATGTGGAGATTAGTCCGCGCGACGGTGAACGCATCGACGCCGTAATAGTGGCGCCGGACGAGCGGGGACTGGTGTCGAAAGCCGCCGCGGTGCTGGCGCTGAACTCGCTGCGCGTACATTCGGCGTCGGTCAACGTCCACCAGGGTGTCGCGATAACCGAGTTTGTGGTGTCACCACTGTTTGGGTCCCCGCCCGCGGCGGAGTTGGTGCGTCAGCAGTTTGTCGGTGCCCTCAACGGCGACGTCGACGTGCTGGGCATGCTGCAGAAGCGGGACAGCGATGCCGCCAGCTTGGTATCCGCTCGGGCCGGGGACGTGCAGGCCGGGGTGCCCGTGACTCGTACGGCCGCTCCGCCCCGCATCCTGTGGCTCGACACCGCCGCGCCGGCCAAGCTGATCCTCGAAGTTCGGGCCATGGATCGGGCGGGTTTGCTCGCGTTGCTGGCCGGGGCGCTGGAGGGCGCGGGAGCCGGCATTGTCTGGGCGAAGGTCAATACGTTCGGATCGACCGCGGCCGATGTGTTCTGTGTGACGGTCCCCGCGGAGTTGGACGCGAGAGCCGCGGTCGAGCAACACCTGCTGGAGGTGTTGGGCGCCAGCGTCGACGTTGTGGTCGACGAACCCGTCGGCGATTA
Drug Resistance

Check for drug resistance association at TBDREAMDB

Mutations

Check for mutants available at TARGET


Function
Modifies, by uridylylation and deuridylylation, the PII regulatory protein (GlnB), in response to the nitrogen status of the cell that GlnD senses through the glutamine level. Under low glutamine levels, catalyzes the conversion of the PII protein and UTP to PII-UMP and PPi, while under higher glutamine levels, GlnD hydrolyzes PII-UMP to PII and UMP (deuridylylation). Thus, controls uridylylation state and activity of the PII protein, and plays an important role in the regulation of nitrogen assimilation and metabolism (Probable). {ECO:0000305|PubMed:17303474}.
Family

GlnD family

GO
InterPro

UniProt
P9WN29
GenBank
Rv2918c
EnsemblBacteria
Rv2918c
Mycobrowser
Rv2918c


Summary
Name
Bifunctional uridylyltransferase/uridylyl-removing enzyme (UTase/UR) (Bifunctional [protein-PII] modification enzyme) (Bifunctional nitrogen sensor protein) [Includes: [Protein-PII] uridylyltransferase (PII uridylyltransferase) (UTase) (EC 2.7.7.59); [Protein-PII]-UMP uridylyl-removing enzyme (UR) (EC 3.1.4.-)]
Family
GlnD family
Protein Sequence
MEAESPCAASDLAVARRELLSGNHRELDPVGLRQTWLDLHESWLIDKADEIGIADASGFAIVGVGGLGRRELLPYSDLDVLLLHDGKPADILRPVADRLWYPLWDANIRLDHSVRTVSEALTIANSDLMAALGMLEARHIAGDQQLSFALIDGVRRQWRNGIRSRMGELVEMTYARWRRCGRIAQRAEPDLKLGRGGLRDVQLLDALALAQLIDRHGIGHTDLPAGSLDGAYRTLLDVRTELHRVSGRGRDHLLAQFADEISAALGFGDRFDLARTLSSAGRTIGYHAEAGLRTAANALPRRGISALVRRPKRRPLDEGVVEYAGEIVLARDAEPEHDPGLVLRVAAASADTGLPIGAATLSRLAASVPDLPTPWPQEALDDLLVVLSAGPTTVATIEALDRTGLWGRLLPEWEPIRDLPPRDVAHKWTVDRHVVETAVHAAPLATRVARPDLLALGALLHDIGKGRGTDHSVLGAELVIPVCTRLGLSPPDVRTLSKLVRHHLLLPITATRRDLNDPKTIEAVSEALGGDPQLLEVLHALSEADSKATGPGVWSDWKASLVDDLVRRCRMVMAGESLPQAEPTAPHYLSLAADHGVHVEISPRDGERIDAVIVAPDERGLVSKAAAVLALNSLRVHSASVNVHQGVAITEFVVSPLFGSPPAAELVRQQFVGALNGDVDVLGMLQKRDSDAASLVSARAGDVQAGVPVTRTAAPPRILWLDTAAPAKLILEVRAMDRAGLLALLAGALEGAGAGIVWAKVNTFGSTAADVFCVTVPAELDARAAVEQHLLEVLGASVDVVVDEPVGD
Mass
86,438 Da
Length
808 Aa

Rv2918c 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.
The role of GlnD in ammonia assimilation in Mycobacterium tuberculosis.
Tuberculosis (Edinb). 2007 Jul;87(4):384-90. doi: 10.1016/j.tube.2006.12.003. Epub 2007 Feb 15.
Deciphering the biology of Mycobacterium tuberculosis from the complete genome sequence.
Nature. 1998 Jun 11;393(6685):537-44. doi: 10.1038/31159.