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EC Tree
The expected taxonomic range for this enzyme is: Saccharolobus solfataricus
Reaction Schemes
hydrolysis of proteins, such as azocasein
Synonyms
sso0660,
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hydrolysis of proteins, such as azocasein
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azocasein + H2O
fragments of azocasein
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Zn2+
5 mM, stimulates activity up to 160%, contains a zinc-binding motif
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1,10-phenanthroline
10 mM, 90% inhibition
Co2+
5 mM, 91% inhibition
Cu2+
5 mM, 37% inhibition
E-64
0.01 mM, 44% inhibition
EDTA
5 mM, complete inhibition
Fe2+
5 mM, 93% inhibition
Hg2+
5 mM, 15% inhibition
Mg2+
5 mM, 97% inhibition
Mn2+
5 mM, 37% inhibition
N-ethylmaleimide
5 mM, 64% inhibition
Sr2+
5 mM, 83% inhibition
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leupeptin
1 mM, 1.7fold activation
PMSF
5 mM, 1.2fold activation
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6 - 9
6: more than 75% of maximal activity, pH 9: about 80% of maximal activity
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45 - 85
45°C: about 85% of maximal activity, 85°C: about 60% of maximal activity
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UniProt
brenda
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TLDD_SACS2
Saccharolobus solfataricus (strain ATCC 35092 / DSM 1617 / JCM 11322 / P2)
443
0
49882
Swiss-Prot
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55000
2 * 55000, the protein forms disulfide bond via the Cys416 residue, yielding protein dimer that is the active form of the enzyme, SDS-PAGE
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dimer
2 * 55000, the protein forms disulfide bond via the Cys416 residue, yielding protein dimer that is the active form of the enzyme, SDS-PAGE
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C416G
4% of the activity compared to wild-type enzyme, azocasein as substrate
E229D
11% of the activity compared to wild-type enzyme, azocasein as substrate
H228F
8% of the activity compared to wild-type enzyme, azocasein as substrate
H233Y
14% of the activity compared to wild-type enzyme, azocasein as substrate
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overexpression in Escherichia coli
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Hu, Y.; Peng, N.; Han, W.; Mei, Y.; Chen, Z.; Feng, X.; Liang, Y.X.; She, Q.
An archaeal protein evolutionarily conserved in prokaryotes is a zinc-dependent metalloprotease
Biosci. Rep.
32
609-618
2012
Saccharolobus solfataricus (Q7LXP6), Saccharolobus solfataricus
brenda
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