5L3U: Thermolysin

Thermolysin in complex with JC149 (MPD cryo protectant). Determined by X-ray diffraction at 1.23 Å resolution. Released 21 Dec 2016.

Method
X-ray diffraction
Resolution
1.23 Å
Organism
Bacillus thermoproteolyticus
Chains
1
Atoms
2,981
Mol. weight
35.28 kDa
Ligands
6NG, CA, ZN
Released
21 Dec 2016

Explore 5L3U in 3D Show helices and sheets RCSB PDB PDBe

Secondary structure: helices and β-sheets

5L3U contains 14 α-helices and 17 β-strands across 1 chain. Residue ranges use author residue numbering, as in the PDB file, from PDBe. To see them in 3D, choose the Cartoon representation with Secondary structure coloring: helices, sheets and coils get different colors.

Chain E: 14 helices, 17 β-strands

ElementResiduesLengthSheet
β-strand4-1181
β-strand17-2591
β-strand27-2931
β-strand31-3222
β-strand39-4352
β-strand53-5422
β-strand56-5721
β-strand61-6221
α-helix65-673
α-helix68-8821
α-helix98-992
β-strand100-10672
β-strand113-11532
β-strand120-12342
β-strand13013
α-helix133-1353
α-helix137-15115
α-helix159-18022
β-strand187-18824
β-strand19313
β-strand203-20424
α-helix208-2114
α-helix217-2193
α-helix225-2295
α-helix234-24613
β-strand248-25035
β-strand253-25535
α-helix260-26910
α-helix270-2745
α-helix281-29616
α-helix301-31212

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
ThermolysinEprotein316Bacillus thermoproteolyticusP00800 (AlphaFold model)
Sequence of entity 1 (E), FASTA
>5L3U_1 Thermolysin (chains E)
ITGTSTVGVGRGVLGDQKNINTTYSTYYYLQDNTRGNGIFTYDAKYRTTLPGSLWADADN
QFFASYDAPAVDAHYYAGVTYDYYKNVHNRLSYDGNNAAIRSSVHYSQGYNNAFWNGSQM
VYGDGDGQTFIPLSGGIDVVAHELTHAVTDYTAGLIYQNESGAINEAISDIFGTLVEFYA
NKNPDWEIGEDVYTPGISGDSLRSMSDPAKYGDPDHYSKRYTGTQDNGGVHINSGIINKA
AYLISQGGTHYGVSVVGIGRDKLGKIFYRALTQYLTPTSNFSQLRAAAVQSATDLYGSTS
QEVASVKQAFDAVGVK

Ligands and cofactors

IDNameFormulaCopies
6NGN~2~-[(R)-({[(benzyloxy)carbonyl]amino}methyl)(hydroxy)phosphoryl]-N-[(2R)-2,3,…C22 H38 N3 O5 P1
CACalcium ionCa4
ZNZinc ionZn1

Water and common crystallization additives (DMS) are not listed.

Primary citation

Rational Design of Thermodynamic and Kinetic Binding Profiles by Optimizing Surface Water Networks Coating Protein-Bound Ligands. Krimmer, S.G., Cramer, J., Betz, M. et al. J Med Chem (2016) 59:10530-10548. DOI 10.1021/acs.jmedchem.6b00998 · PubMed

Other PDB entries of the same protein (UniProt P00800 (AlphaFold model), which also has an AlphaFold model), best resolution first:

Browse structure collections

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