5FSJ: Thermolysin

Structure of thermolysin prepared by the 'soak-and-freeze' method under 45 bar of oxygen pressure. Determined by X-ray diffraction at 1.2 Å resolution. Released 26 Oct 2016.

Method
X-ray diffraction
Resolution
1.2 Å
Organism
BACILLUS THERMOPROTEOLYTICUS
Chains
1
Atoms
3,155
Mol. weight
34.99 kDa
Ligands
VAL, ZN, OXY, CA
Released
26 Oct 2016

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

Secondary structure: helices and β-sheets

5FSJ 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 A: 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
ThermolysinAprotein316BACILLUS THERMOPROTEOLYTICUSP00800 (AlphaFold model)
Sequence of entity 1 (A), FASTA
>5FSJ_1 THERMOLYSIN (chains A)
ITGTSTVGVGRGVLGDQKNINTTYSTYYYLQDNTRGNGIFTYDAKYRTTLPGSLWADADN
QFFASYDAPAVDAHYYAGVTYDYYKNVHNRLSYDGNNAAIRSSVHYSQGYNNAFWNGSQM
VYGDGDGQTFIPLSGGIDVVAHELTHAVTDYTAGLIYQNESGAINEAISDIFGTLVEFYA
NKNPDWEIGEDVYTPGISGDSLRSMSDPAKYGDPDHYSKRYTGTQDNGGVHINSGIINKA
AYLISQGGTHYGVSVVGIGRDKLGKIFYRALTQYLTPTSNFSQLRAAAVQSATDLYGSTS
QEVASVKQAFDAVGVK

Ligands and cofactors

IDNameFormulaCopies
VALValineC5 H11 N O21
ZNZinc ionZn2
OXYOxygen moleculeO21
CACalcium ionCa5
LYSLysineC6 H15 N2 O21

Primary citation

Gas-Sensitive Biological Crystals Processed in Pressurized Oxygen and Krypton Atmospheres: Deciphering Gas Channels in Proteins Using a Novel `Soak-and-Freeze' Methodology. Lafumat, B., Mueller-Dieckmann, C., Colloc'h, N. et al. J Appl Crystallogr (2016) 49:1478. DOI 10.1107/S1600576716010992

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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