KpATCC43816 Protein target profile

3-methyl-adenine DNA glycosylase II, inducible

Accession: VK055_5007

Gene: AIK83533.1 3D evidence: AlphaFold DB model + ColabFold model Metabolism Not in network UniProt A0A0H3GVA4
Length 282
Pocket druggability (P2Rank · AlphaFold DB model) 0.817
Direct ligand evidence 0 1 total records
Functional annotation 1 EC 11 GO
Target summary

Promising target candidate with multiple supporting evidence streams.

Automated synthesis of the evidence currently loaded. Review the underlying records before prioritizing this protein.

Terms and data sources used on this page

PDB: experimentally determined structures from the Protein Data Bank. These are the strongest structural evidence, but may cover only part of the protein.

AlphaFold DB model: a precomputed predicted structure downloaded from AlphaFold Database/UniProt, not an experiment performed here.

ColabFold model: a predicted structure generated for this workspace; interpret it with coverage and confidence.

pLDDT: confidence score for predicted structures. High values support local geometry; low values mean the region should not drive pocket interpretation.

FPocket / P2Rank: software tools that predict possible ligand-binding pockets on a 3D structure. They are useful screening signals, not experimental validation.

Druggability: a pocket-based estimate of whether a small molecule could bind productively. It does not mean a drug already exists.

PDB ligand: a compound observed in an experimental structure. Direct same-protein records are stronger than homolog-transferred records.

ChEMBL: a public database of measured compound bioactivity. Direct entries are stronger than entries transferred from similar proteins.

ZINC: a purchasable-compound database. Here it marks proposed candidates from chemical similarity, not measured binders.

LigQ / LigQ_2: an internal Target pipeline step that gathers PDB, ChEMBL, and ZINC ligand evidence for each protein.

Off-target: sequence similarity to proteins we prefer not to hit, such as human proteins or beneficial gut microbiome proteins.

DEG: Database of Essential Genes. A match suggests the protein resembles genes known to be essential in other organisms.

Roary / CoreCruncher: pan-genome tools used to decide whether a gene is core across analyzed strains or accessory/strain-specific.

EC / GO: functional annotations: EC describes enzyme reactions; GO describes biological process, molecular function, or cellular component.

KEGG pathway: a curated metabolic route label used here to group reactions imported from the metabolic model.

Chokepoint: a metabolic reaction that is the only producer or consumer of a metabolite in the imported model.

Prioritization evidence

Selectivity, essentiality, structural confidence, conservation, and predicted binding-site evidence.

Off-target risk

Human off-target
No hit
Gut microbiome similarity
1.4% of screened genomes Lower prevalence suggests narrower overlap with the screened gut microbiome.

Essentiality

Essential (DEG)
N
DEG identity (%)
0.0 Higher values support similarity to known essential genes.

Structure confidence

ColabFold pLDDT
96.62 0-100 confidence; >70 supports local structural interpretation.

Binding-site evidence

AlphaFold DB / UniProt model

P2Rank's binding-site probability is the primary druggability signal shown across the app; FPocket's druggability score is shown alongside it for comparison. Both estimate small-molecule pocket quality after applying the curated structure priority — neither is experimental binding evidence. The 3D viewer may show a different loaded structure, so visible pockets can differ.

Druggability (P2Rank) 0.817
Structure A0A0H3GVA4
Pocket Pocket 1
Druggability (FPocket) 0.927
Structure A0A0H3GVA4
Pocket Pocket 1
ColabFold model
P2Rank 0.804 · Pocket 1
FPocket 0.868 · Pocket 1
Core conservation Conserved core gene
Roary core
CoreCruncher core
Gut microbiome 65 / 4744 genomes with a hit
Prevalence 1.4%

Metabolic context

Reactions catalyzed, pathway membership, and centrality in the genome-scale metabolic network.

This protein is not associated with the imported metabolic network for this genome.

Browse the genome's metabolic network

Imported from KpATCC43816.sbml · 2026-07-09

Sequence

Primary amino-acid sequence viewer.

MVLLPWTPPYDWAWMVGFLQARAVAGVERFHDGGYSRSFGVEGHRGLIHLAPDEEAQGLRVTLSPGLQPVAEICYARIGQLFDLACDPRQVARTLGDLAQARPGLRLPGALDAFEQAVRAVLGQLVSVAMAARLTAKVAAGWGEPLAEAPGYVLFPTPEALSRADPQALKALGMPLRRAEALIHLARAALSGELPLTAPADIDAGLRQLQTLPGIGRWTANYFALRGWQAKDIFLPDDYLIKQRFPGMTPAAIARYARRWQPMRSYALLHIWYTDDWAPAAE

Functional annotations

Enzyme classification and Gene Ontology terms linked to this protein.

1 EC 11 GO

Subcellular localization

Localization
Unknown

Enzyme Commission (EC)

1

Gene Ontology (GO)

11
  • GO:0003905 Catalysis of the reaction: DNA with alkylated base + H2O = DNA with abasic site + alkylated base. This reaction is the hydrolysis of DNA by cleavage of the N-C1' glycosidic bond between the target damaged DNA base and the deoxyribose sugar to remove an alkylated base, leaving an apyrimidinic or apurinic site.
  • GO:0003824 Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic.
  • GO:0006281 The process of restoring DNA after damage. Genomes are subject to damage by chemical and physical agents in the environment (e.g. UV and ionizing radiations, chemical mutagens, fungal and bacterial toxins, etc.) and by free radicals or alkylating agents endogenously generated in metabolism. DNA is also damaged because of errors during its replication. A variety of different DNA repair pathways have been reported that include direct reversal, base excision repair, nucleotide excision repair, photoreactivation, bypass, double-strand break repair pathway, and mismatch repair pathway.
  • GO:0006284 In base excision repair, an altered base is removed by a DNA glycosylase enzyme, followed by excision of the resulting sugar phosphate. The small gap left in the DNA helix is filled in by the sequential action of DNA polymerase and DNA ligase.
  • GO:0005737 The contents of a cell excluding the plasma membrane and nucleus, but including other subcellular structures.
  • GO:0032993 A macromolecular complex containing both protein and DNA molecules.
  • GO:0032131 Binding to an alkylated residue in DNA.
  • GO:0008725 Catalysis of the reaction: DNA containing 3-methyladenine + H2O = DNA with abasic site + 3-methyladenine. This reaction is the hydrolysis of DNA by cleavage of the N-C1' glycosidic bond between the damaged DNA 3-methyladenine and the deoxyribose sugar to remove the 3-methyladenine, leaving an abasic site.
  • GO:0043916 Catalysis of the reaction: DNA containing 7-methylguanine + H2O = DNA with abasic site + 7-methylguanine. This reaction is the hydrolysis of DNA by cleavage of the N-C1' glycosidic bond between the damaged DNA 7-methylguanine and the deoxyribose sugar to remove the 7-methylguanine, leaving an abasic site.
  • GO:0006285 The formation of an AP site, a deoxyribose sugar with a missing base, by DNA glycosylase which recognizes an altered base in DNA and catalyzes its hydrolytic removal. This sugar phosphate is the substrate recognized by the AP endonuclease, which cuts the DNA phosphodiester backbone at the 5' side of the altered site to leave a gap which is subsequently repaired.
  • GO:0006307 The repair of alkylation damage in DNA, e.g. the removal of a non-physiological alkyl group from a nucleobase. This is usually mediated by DNA alkyltransferases.

Sequence domains and features

Domain and signature matches imported from InterPro and related databases.

22 records
Show feature table
Start End DB Term Name
214 238 ProSitePatterns PS00516 Alkylbase DNA glycosidases alkA family signature.
214 238 InterPro IPR000035 Alkylbase DNA glycosidase, conserved site
2 112 Gene3D G3DSA:3.30.310.20 -
2 112 InterPro IPR037046 DNA-3-methyladenine glycosylase AlkA, N-terminal domain superfamily
1 112 SMART SM01009 AlkA_N_2
1 112 InterPro IPR010316 DNA-3-methyladenine glycosylase AlkA, N-terminal
114 273 CDD cd00056 ENDO3c
114 273 InterPro IPR003265 HhH-GPD domain
113 230 FunFam G3DSA:1.10.340.30:FF:000008 DNA-3-methyladenine glycosylase 2
101 274 PANTHER PTHR43003 DNA-3-METHYLADENINE GLYCOSYLASE
113 230 Gene3D G3DSA:1.10.340.30 Hypothetical protein; domain 2
3 112 Pfam PF06029 AlkA N-terminal domain
3 112 InterPro IPR010316 DNA-3-methyladenine glycosylase AlkA, N-terminal
231 281 Gene3D G3DSA:1.10.1670.10 -
231 281 InterPro IPR023170 Helix-hairpin-helix, base-excision DNA repair, C-terminal
101 275 SUPERFAMILY SSF48150 DNA-glycosylase
101 275 InterPro IPR011257 DNA glycosylase
2 97 SUPERFAMILY SSF55945 TATA-box binding protein-like
130 276 SMART SM00478 endo3end
130 276 InterPro IPR003265 HhH-GPD domain
118 241 Pfam PF00730 HhH-GPD superfamily base excision DNA repair protein
118 241 InterPro IPR003265 HhH-GPD domain

3D structure

Selected loaded structure. Experimental PDB entries may cover only a portion of the sequence; AlphaFold DB and ColabFold models typically cover the full protein but remain computational predictions.

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Pocket score High Medium Low
How colors and pocket overlays are used
Uniform protein color marks the displayed model as a single molecular object.
Experimental PDB structures may be colored by chain to distinguish subunits or copies present in the file.
Pocket colors and alpha spheres are evidence overlays for predicted binding cavities; they are not alternative protein chains.
'Alpha spheres' is FPocket's own cavity-shape geometry, imported when available and aligned with the loaded structure.
'Pocket atoms'/'Predicted site atoms' show the pocket's residue atoms instead: P2Rank reports residues rather than alpha spheres, and FPocket falls back to this when alpha-sphere geometry is unavailable or doesn't align.
'No pocket geometry' means neither alpha spheres nor residue-position data could be found for that pocket; the layer just highlights the same residues as 'Nearby residues'.
Pocket details Inspect a specific pocket, or open the full viewer

Binding pockets · P2Rank

Druggability (P2Rank): high ≥ 0.5 · medium 0.2–0.49 · low < 0.2

Pocket 1 P2Rank #1
0.817
Likely same site as FPocket 1 1.1 Å 26 shared residues 96% of smaller site
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Surrounding area
Pocket 2 P2Rank #2
0.207
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Surrounding area
Pocket 3 P2Rank #3
0.076
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Surrounding area
Pocket 4 P2Rank #4
0.006
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Surrounding area

Binding pockets · FPocket

Druggability (FPocket): high ≥ 0.7 · medium 0.4–0.69 · low < 0.4

Pocket 1 FPocket #1
0.927 Unusual size
Likely same site as P2Rank 1 1.1 Å 26 shared residues 96% of smaller site
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Surrounding area
Pocket 2 FPocket #18
0.539 Unusual size
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Surrounding area
All structural evidence 0 experimental · 2 predicted

Structural evidence

0 + 2

Experimental PDB entries plus predicted AlphaFold DB or ColabFold models. Click Switch to display a different loaded structure in the viewer.

Entry Method Resolution Chain Coverage Links Status
AlphaFold DB AF_A0A0H3GVA4
AlphaFold DB full sequence Viewing
ColabFold VK055_5007
ColabFold full sequence Loaded

Ligand evidence

Ligands grouped by evidence source. PDB ligands keep the source crystal visible, and loaded crystals can be opened directly in the structure viewer.

1 records
Chemistry signal

Structural ligand evidence is available for this target.

Direct evidence 0 same-protein records
Transferred evidence 1 records from similar proteins
Structural ligands 1 0 loaded crystals
Measured bioactivity 0 direct and transferred ChEMBL records
Proposed compounds 0 similarity-based ZINC candidates
Best available ligand signal
7HP PDB via homolog 136.1 Da · LogP 0.06 · TPSA 74.7 Open detail RCSB PDB

Structural evidence inferred from similar proteins. The source crystal indicates where the ligand was observed; the UniProt column identifies the homologous protein carrying that ligand.

Show only:
Ligand Source crystal UniProt (homolog) MW · LogP · TPSA Lipinski PAINS SMILES
7HP RCSB PDB P04395 136.1 Da LogP 0.06 TPSA 74.7 ✓ Ro5 ✓ Clean c1c2c(c(ncn2)O)[nH]n1

PDB and ChEMBL records on this protein are shown in full. ChEMBL records from similar proteins are capped at the top 100 per protein (by pchembl) and ZINC at the top 50 (Tanimoto ≥ 0.5). ADME columns are descriptor-based screening flags, not experimental toxicity results.

Cross-references

External database identifiers for this protein, its structures, ligands, and metabolic reactions.