Filter results by: Taxon Proteome
1 - 50 of 4083 UniProtKB matches
(5366 models, 4952 structures.)
UniProtKB AC
(Name)
UniProtKB Section
 
Homology Model
 
Experimental Structure
OrganismDescription
P9WNR3
(ECCB3_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESX-3 secretion system ATPase EccB3;
ESX conserved component B3;
Type VII secretion system protein EccB3;
P9WJF3
(CWSA_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Cell wall synthesis protein CwsA;
Cell wall synthesis and cell shape protein A;
P9WFB3
(VAPC7_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Ribonuclease VapC7;
Toxin VapC7;
P9WJT3
(MMPS2_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Probable transport accessory protein MmpS2;
P9WF87
(VPC24_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Ribonuclease VapC24;
Toxin VapC24;
P9WF47
(VPC48_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Ribonuclease VapC48;
Toxin VapC48;
P9WLU7
(Y1546_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv1546;
P9WMF1
(Y880_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
HTH-type transcriptional regulator Rv0880;
P9WJA3
(HRP1_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Hypoxic response protein 1;
P9WJN9
(MRAZ_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Transcriptional regulator MraZ;
P9WGC3
(Y3284_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized SufE-like protein Rv3284;
P9WLS1
(Y1813_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv1813c;
P9WL69
(Y2599_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv2599;
P9WL51
(Y2645_MYCTU)
Swiss-ProtMycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv2645;
P9WNS9
(DTD_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
D-aminoacyl-tRNA deacylase;
Gly-tRNA(Ala) deacylase;
O05598
(Y1013_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Putative ligase Rv1013;
P9WHE1
(RL13_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Large ribosomal subunit protein uL13;
50S ribosomal protein L13;
P9WIW9
(NUON_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
NADH-quinone oxidoreductase subunit N;
NADH dehydrogenase I subunit N;
NDH-1 subunit N;
P9WN87
(FURA_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Transcriptional regulator FurA;
P9WF55
(VPC43_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Ribonuclease VapC43;
Toxin VapC43;
P9WL25
(Y2910_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv2910c;
O06553
(F420R_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
F420H(2)-dependent reductase Rv1155;
P9WJR3
(MOAE1_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Molybdopterin synthase catalytic subunit 1;
MPT synthase subunit 2 1;
Molybdenum cofactor biosynthesis protein E 1;
Molybdopterin-converting factor large subunit 1;
Molybdopterin-converting factor subunit 2 1;
P9WPX7
(AROQ_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
3-dehydroquinate dehydratase;
Type II DHQase;
P9WM29
(Y1312_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv1312;
P9WGD1
(CPSY_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Exopolysaccharide phosphotransferase CpsY;
Stealth protein CpsY;
P9WKI7
(IMDH_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Inosine-5'-monophosphate dehydrogenase;
IMPDH2;
P9WHD7
(RL15_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Large ribosomal subunit protein uL15;
50S ribosomal protein L15;
O53509
(Y2175_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
DNA-binding protein Rv2175c;
P9WF59
(VPC41_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Ribonuclease VapC41;
Toxin VapC41;
P9WIE9
(PG44_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized PE-PGRS family protein PE_PGRS44;
P9WKZ5
(Y3403_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv3403c;
P9WI23
(PPE20_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized PPE family protein PPE20;
P9WJI3
(Y2287_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized Na(+)/H(+) exchanger Rv2287;
P9WH31
(RS6_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Small ribosomal subunit protein bS6;
30S ribosomal protein S6;
P9WP47
(CSTA_MYCTU)
Swiss-ProtMycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Peptide transporter CstA;
Carbon starvation protein A homolog;
O07434
(RICR_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Copper-sensing transcriptional repressor RicR;
Regulated in copper repressor;
P9WNK3
(ESXH_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESAT-6-like protein EsxH;
10 kDa antigen CFP7;
Low molecular weight protein antigen 7;
Protein TB10.4;
P9WNI9
(ESXR_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESAT-6-like protein EsxR;
TB10.3;
O53611
(IDH2_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Isocitrate dehydrogenase [NADP] 2;
Oxalosuccinate decarboxylase;
P9WNB3
(ECC1A_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESX-1 secretion system protein EccCa1;
ESX conserved component Ca1;
Snm1 secretory protein;
Type VII secretion system protein EccCa1;
P9WNJ7
(ESXK_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESAT-6-like protein EsxK;
P9WNI3
(ESXW_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESAT-6-like protein EsxW;
P9WNI5
(ESXP_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESAT-6-like protein EsxP;
P9WKL9
(Y968_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv0968;
P9WM27
(Y1322_MYCTU)
Swiss-ProtMycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Uncharacterized protein Rv1322;
P9WNK7
(ESXA_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
6 kDa early secretory antigenic target;
ESAT-6;
P9WJ21
(VPB41_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
Antitoxin VapB41;
P9WNI1
(ESXC_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ESAT-6-like protein EsxC;
P9WQN3
(FTSH_MYCTU)
Swiss-Prot
Mycobacterium tuberculosis
(strain ATCC 25618 / H37Rv)
ATP-dependent zinc metalloprotease FtsH;
1 - 50 of 4083
Mycobacterium tuberculosis (ATCC 25618 / H37Rv)

Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) is an obligate pathogenic bacterial species in the family Mycobacteriaceae and the causative agent of tuberculosis (TB). First discovered in 1882 by Robert Koch, M. tuberculosis has an unusual, waxy coating on its cell surface (primarily due to the presence of mycolic acid), which makes the cells impervious to Gram staining. The physiology of M. tuberculosis is highly aerobic and requires high levels of oxygen. It is primarily a pathogen of the mammalian respiratory system and mainly infects the lungs.

An estimated one third of the world population is infected with M. tuberculosis (around 90% in a latent state). TB was responsible for 1.5 million deaths in 2014, with 9.6 million acute cases. TB is considered a leading cause of death worldwide alongside HIV.

The genome of M. tuberculosis was first sequenced in 1998.

"2015 Global tuberculosis report", World Health Organization

"Mycobacterium tuberculosis", Wikipedia: The Free Encyclopedia

Protein models in Repository

From left to right: i) The number of proteins in the reference proteome of Mycobacterium tuberculosis, ii) the number of unique protein sequences for which at least one model is available, iii) the total number of models and iv) a coverage bar plot is shown.
The bar plot shows the coverage for every protein in the reference proteome of Mycobacterium tuberculosis for which there is at least one model. Different colours (dark green to red boxes) represent the coverage of the targets. Targets with high coverage are represented in dark green (more than 80% of the target's length is covered by models), whereas low coverage is shown in red. The size of each box is proportional to the number of target sequences with a given coverage.

For information on the latest proteome for Mycobacterium tuberculosis, please visit UniProtKB.

You can easily download the latest protein sequences for Mycobacterium tuberculosis proteome here. Please note this download is for the current UniProtKB release, which may be different to release 2026_01 that was used for the most up to date SWISS-MODEL Repository.

Proteins in proteomeSequences modelledModels
3,9973,3395,331

Detailed coverage numbers are obtained by hovering the mouse over one of the boxes.

Structural Coverage

The plot shows the evolution over years (x-axis) of the fraction of Mycobacterium tuberculosis reference proteome residues (y-axis) for which structural information is available. Different colors (light blue to dark blue) in the plot represent the quality of the sequence alignment between the reference proteome sequences (targets) and the sequences of the proteins in the structure database (templates). Alignments with low sequence identity are displayed in light blue, whereas alignments with high sequence identity are depicted in dark blue. The SWISS-MODEL Template Library is used as database of templates. Only target-template alignments found by HHblits and only residues with atom coordinates are considered.

Residue Coverage

This chart shows the percentage of residues in the Mycobacterium tuberculosis proteome which are covered by experimental structures and the enhancement of coverage by homology modelling by the SWISS-MODEL pipeline. Experimental residue coverage is determined using SIFTS mapping. For residues which are not covered by experimental structures (including where there are no atom records in SIFTS mapping) the model coverage bars are coloured by QMEANDisCo local quality score.

Oligomeric State

Many proteins form oligomeric structures either by self-assembly (homo-oligomeric) or by assembly with other proteins (hetero-oligomeric) to accomplish their function. In SWISS-MODEL Repository, the quaternary structure annotation of the template is used to model the target sequence in its oligomeric form. Currently our method is limited to the modelling of homo-oligomeric assemblies. The oligomeric state of the template is only considered if the interface is conserved.

Single Chain2-mer3-mer4-mer5-mer6-mer7-mer8-mer9-mer10-mer11-mer12-mer14-mer16-mer24-mer26-mer32-mer40-mer54-mer60-mer
3,3311,410127276119472711111462511321
Download