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NMR solution structure of LSR2 binding domain.
Authors
Barthe, P., Cohen-Gonsaud, M., Mukamolova, G.V.
Assembly
Nucleoid-associated protein Lsr2
Entity
1. Nucleoid-associated protein Lsr2 (polymer, Thiol state: not present), 50 monomers, 5385.831 Da Detail

GHMSGSGRGR GAIDREQSAA IREWARRNGH NVSTRGRIPA DVIDAYHAAT


Formula weight
5385.831 Da
Source organism
Mycobacterium tuberculosis H37Rv
Exptl. method
solution NMR
Refine. method
MDSA and refinement in explicit water
Data set
assigned_chemical_shifts
Chem. Shift Complete
Sequence coverage: 96.0 %, Completeness: 94.2 %, Completeness (bb): 94.2 % Detail

Polymer type: polypeptide(L)

Total1H15N
All94.2 % (307 of 326)94.1 % (257 of 273)94.3 % (50 of 53)
Backbone94.2 % (146 of 155)94.3 % (100 of 106)93.9 % (46 of 49)
Sidechain94.2 % (161 of 171)94.0 % (157 of 167)100.0 % (4 of 4)
Aromatic88.2 % (15 of 17)87.5 % (14 of 16)100.0 % (1 of 1)
Methyl100.0 % (22 of 22)100.0 % (22 of 22)

1. entity 1

GHMSGSGRGR GAIDREQSAA IREWARRNGH NVSTRGRIPA DVIDAYHAAT

Sample #1

Solvent system 90% H2O/10% D2O, Pressure 1 bar, Temperature 293 K, pH 6.8, Details 0.5 mM [U-15N] LSR2 protein, 90% H2O/10% D2O


#NameIsotope labelingTypeConcentration
1LSR2 protein[U-15N]0.5 mM
Sample #2

Solvent system 100% D2O, Pressure 1 bar, Temperature 293 K, pH 6.8, Details 0.5 mM [U-15N] LSR2 protein, 100% D2O


#NameIsotope labelingTypeConcentration
2LSR2 protein[U-15N]0.5 mM

Protein Blocks Logo
Calculated from 20 models in PDB: 6QKP, Strand ID: A Detail


Release date
2019-09-26
Citation
Protein kinase B controls Mycobacterium tuberculosis growth via phosphorylation of the transcriptional regulator Lsr2 at threonine 112
Alqaseer, K., Turapov, O., Barthe, P., Jagatia, H., De Visch, A., Roumestand, C., Wegrzyn, M., Bartek, I.L., Voskuil, M.I., O'Hare, H.M., Ajuh, P., Bottrill, A.R., Witney, A.A., Cohen-Gonsaud, M., Waddell, S.J., Mukamolova, G.V.
Mol. Microbiol. (2019), 112, 1847-1862, PubMed 31562654 , DOI 10.1111/mmi.14398 ,
Related entities 1. Nucleoid-associated protein Lsr2, : 1 : 2 : 6 entities Detail
Experiments performed 5 experiments Detail
Chemical shift validation 3 contents Detail
Keywords DNA BINDING PROTEIN, DNA organisation, PknB substrate, Transcriptional regulator, Tuberculosis