Protein profile

KP13_04012

putative lysozyme from lambdoid prophage DLP12

Genome: KpKP13

Gene: arrD AHE45190.1 Structure source: AlphaFold + ColabFold UniProt A0A927DW90
Amino acids 165
Annotations 3
Features 18
PDB binders 0
Druggability 0.476

Overview

Basic information about this protein and its source genome.

Accession
KP13_04012
Gene
arrD AHE45190.1
Status
annotated
Amino acids
165
Structure source
AlphaFold + ColabFold

Target profile

Computed evidence for target prioritization.

Human off-target
No hit
Human identity (%)
0.0
Gut microbiome off-target
hit
Essential (DEG)
N
DEG identity (%)
0.0
Localization
Unknown
ColabFold pLDDT
96.53

Selected Druggability evidence

AlphaFold / UniProt model

Selected Druggability is the FPocket score chosen for ranking using the curated structure priority. The 3D viewer may show a different loaded structure, so its visible pockets can differ.

FPocket 0.476
Structure A0A927DW90
Pocket Pocket 4
P2Rank 0.002
Structure A0A927DW90
Pocket Pocket 1
ColabFold model
FPocket 0.528 · Pocket 1
Core conservation Accessory gene
Roary accessory
CoreCruncher accessory
Gut microbiome 45 / 4744 genomes with a hit
Normalized 0.009

Sequence

Primary amino-acid sequence viewer.

Functional Annotations

Enzyme classification and Gene Ontology terms linked to this protein.

3 GO

Gene Ontology (GO)

3
  • GO:0009253 The chemical reactions and pathways resulting in the breakdown of peptidoglycans, any of a class of glycoconjugates found in bacterial cell walls and consisting of long glycan strands of alternating residues of beta-(1,4) linked N-acetylglucosamine and N-acetylmuramic acid, cross-linked by short peptides.
  • GO:0003796 Catalysis of the hydrolysis of the beta-(1->4) linkages between N-acetylmuramic acid and N-acetyl-D-glucosamine residues in a peptidoglycan.
  • GO:0016998 The chemical reactions and pathways resulting in the breakdown of macromolecules that form part of a cell wall.

Sequence Features

Domain/signature hits from InterPro and related databases.

18 records
Show feature table
Start End DB Term Name
6 163 Hamap MF_04136 SAR-endolysin.
6 163 InterPro IPR043688 SAR-endolysin-like
8 18 Phobius SIGNAL_PEPTIDE_H_REGION Hydrophobic region of a signal peptide.
1 7 Phobius SIGNAL_PEPTIDE_N_REGION N-terminal region of a signal peptide.
1 23 Phobius SIGNAL_PEPTIDE Signal peptide region
24 165 Phobius NON_CYTOPLASMIC_DOMAIN Region of a membrane-bound protein predicted to be outside the membrane, in the extracellular region.
15 161 CDD cd16900 endolysin_R21-like
1 23 SignalP_GRAM_NEGATIVE SignalP-noTM SignalP-noTM
21 163 SUPERFAMILY SSF53955 Lysozyme-like
21 163 InterPro IPR023346 Lysozyme-like domain superfamily
11 163 Hamap MF_04110 Endolysin.
11 163 InterPro IPR034690 Endolysin T4 type
1 164 Gene3D G3DSA:1.10.530.40 -
1 164 InterPro IPR023347 Lysozyme domain superfamily
5 163 PANTHER PTHR38107 -
48 154 Pfam PF00959 Phage lysozyme
48 154 InterPro IPR002196 Glycoside hydrolase, family 24
19 23 Phobius SIGNAL_PEPTIDE_C_REGION C-terminal region of a signal peptide.

3D Structure

Selected loaded structure. Experimental PDB entries may cover only a portion of the sequence; predicted models typically cover the full protein.

3D visualization script Full viewer

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Structural evidence

0 + 2

Experimental PDB entries and predicted models. Click Switch to display a different structure in the viewer.

Entry Method Resolution Chain Coverage Links Status
AlphaFold AF_A0A927DW90
AlphaFold full sequence Viewing
ColabFold KP13_04012
ColabFold full sequence Loaded
Pocket details FPocket · P2Rank — toggle visibility and zoom from here, or open full viewer

Pockets (FPOCKET)

Showing top-ranked FPocket candidates by druggability. Druggability is color-coded: high (0.7 or higher), medium (0.4 to 0.69), low (below 0.4).

FPOCKET Sticks Spheres Surfaces Druggability Labels Zoom Positions
4 0.476
1 0.292

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.

17 records

Proposed virtual-screening candidates from ZINC. Score = Tanimoto similarity to a known binder (0–1; higher = more similar).

Show only:
Ligand Tanimoto MW · LogP · TPSA Lipinski PAINS SMILES
ZINC1532902 0.700 206.2 Da LogP -0.86 TPSA 132.1 ✓ Ro5 ✓ Clean O=C(O)CC[C@@](O)(CC(=O)O)C(=O)O
ZINC2018106 0.700 206.2 Da LogP -0.86 TPSA 132.1 ✓ Ro5 ✓ Clean O=C(O)CC[C@](O)(CC(=O)O)C(=O)O
ZINC3593496 0.652 206.2 Da LogP -1.16 TPSA 121.1 ✓ Ro5 ✓ Clean COC(=O)C[C@@](O)(CC(=O)O)C(=O)O
ZINC3593497 0.652 206.2 Da LogP -1.16 TPSA 121.1 ✓ Ro5 ✓ Clean COC(=O)C[C@](O)(CC(=O)O)C(=O)O
ZINC14686440 0.625 436.4 Da LogP -2.64 TPSA 247.9 1 viol. ✓ Clean O=C(O)C[C@](O)(CC(=O)NCCCCNC(=O)C[C@@](O)(CC(=O…
ZINC14686442 0.625 436.4 Da LogP -2.64 TPSA 247.9 1 viol. ✓ Clean O=C(O)C[C@@](O)(CC(=O)NCCCCNC(=O)C[C@](O)(CC(=O…
ZINC14686444 0.625 436.4 Da LogP -2.64 TPSA 247.9 1 viol. ✓ Clean O=C(O)C[C@@](O)(CC(=O)NCCCCNC(=O)C[C@@](O)(CC(=…
ZINC13398039 0.577 234.2 Da LogP -0.38 TPSA 121.1 ✓ Ro5 ✓ Clean CC(C)OC(=O)C[C@](O)(CC(=O)O)C(=O)O
ZINC2528012 0.577 234.2 Da LogP -0.38 TPSA 121.1 ✓ Ro5 ✓ Clean CC(C)OC(=O)C[C@@](O)(CC(=O)O)C(=O)O
ZINC146315135 0.560 204.2 Da LogP 0.86 TPSA 94.8 ✓ Ro5 ✓ Clean CCCCC[C@@](O)(CC(=O)O)C(=O)O
ZINC146315336 0.560 204.2 Da LogP 0.86 TPSA 94.8 ✓ Ro5 ✓ Clean CCCCC[C@](O)(CC(=O)O)C(=O)O
ZINC1850353 0.556 206.1 Da LogP -0.86 TPSA 132.1 ✓ Ro5 ✓ Clean O=C(O)CC(O)(CC(=O)O)CC(=O)O
ZINC13398014 0.522 220.2 Da LogP -1.07 TPSA 110.1 ✓ Ro5 ✓ Clean COC(=O)CC(O)(CC(=O)OC)C(=O)O
ZINC3861629 0.522 206.1 Da LogP -1.16 TPSA 121.1 ✓ Ro5 ✓ Clean COC(=O)C(O)(CC(=O)O)CC(=O)O
ZINC100969993 0.500 359.5 Da LogP 2.70 TPSA 123.9 ✓ Ro5 ✓ Clean CCCCCCCCCCCCNC(=O)C[C@](O)(CC(=O)O)C(=O)O
ZINC100969996 0.500 359.5 Da LogP 2.70 TPSA 123.9 ✓ Ro5 ✓ Clean CCCCCCCCCCCCNC(=O)C[C@@](O)(CC(=O)O)C(=O)O
ZINC1711854 0.500 248.2 Da LogP -0.13 TPSA 149.2 ✓ Ro5 ✓ Clean O=C(O)CC(CC(=O)O)(CC(=O)O)CC(=O)O

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.