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Class 2 Family 10

Family 10 Overview

5 experimentally studied proteins

5 sequences in Swiss-Prot

1,570 unique sequences in UniRef100

Archaeal and bacterial l‑asparaginases

Clan 4: Family 10, Family 11, Family 12

Reference Monomer1

mono2-10.png

Reference Structure

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Family 10 Motifs
(Q5JHT1)

motifs2-10

Experimentally Studied Proteins

Fam ? Class - Clan - Family Alt ? Alternative historical name / classification AN ? UniProt accession number Name ? UniProt entry name, only given here for Swiss-Prot entries EC Organism Cell-Loc AAs Structure PDB Km i for Asn [mM] Vmax i for Asn [μmol/min/mg] Kcat i for Asn [s-1]
2-4-10 - A0A0N7IWY2 3.5.1.1 Aquabacterium sp. 306 - - 33.7 - 0.0087
2-4-10 - Q6L1Z2 3.5.1.1 Picrophilus torridus - 297 - - 11.69 - 0.056
2-4-10 - A3MUS8 ASPGP_PYRCJ 3.5.1.1 Pyrobaculum calidifontis - 299 Dimer i Determined from gel filtration - 4.5 355 374.0
2-4-10 - Q9V262 ASPGP_PYRAB 3.5.1.1 Pyrococcus abyssi - 305 - - 2.051 - -
2-4-10 - Q5JHT1 ASPGP_THEKO 3.5.1.1 Thermococcus kodakarensis - 306 Dimer i Determined from gel filtration - 3.1 833 -

Swiss-Prot Sequences

Fam ? Class - Clan - Family Alt ? Alternative historical name / classification AN ? UniProt accession number Name ? UniProt entry name, only given here for Swiss-Prot entries EC Organism Cell-Loc AAs Structure PDB Km i for Asn [mM] Vmax i for Asn [μmol/min/mg] Kcat i for Asn [s-1]
2-4-10 - A3MUS8 ASPGP_PYRCJ 3.5.1.1 Pyrobaculum calidifontis - 299 Dimer i Determined from gel filtration - 4.5 355 374.0
2-4-10 - Q9V262 ASPGP_PYRAB 3.5.1.1 Pyrococcus abyssi - 305 - - 2.051 - -
2-4-10 - Q8U4E6 ASPGP_PYRFU 3.5.1.1 Pyrococcus furiosus - 306 - - - - -
2-4-10 - O57971 ASPGP_PYRHO 3.5.1.1 Pyrococcus horikoshii - 305 - - - - -
2-4-10 - Q5JHT1 ASPGP_THEKO 3.5.1.1 Thermococcus kodakarensis - 306 Dimer i Determined from gel filtration - 3.1 833 -

UniRef100 Sequences2

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Representative Sequence Alignment

Motifs Image

Additional Information

Clan 4 enzymes are isoaspartyl peptidases and/or l‑asparaginases.

Family 10 and Family 11 both contain sequences from bacteria and archaea.

1Varadi, M et al. AlphaFold Protein Structure Database in 2024: providing structure coverage for over 214 million protein sequences. Nucleic Acids Research (2024). Licensed under CC BY 4.0.

2Suzek, B.E. et al. UniRef: comprehensive and non-redundant UniProt reference clusters. Bioinformatics (2007). Licensed under CC BY 4.0. Added classification code to sequence headers.


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