Detail Information for IndEnz0008000524
IED ID IndEnz0008000524
Enzyme Type ID cellulase000524
Protein Name Endo-1,4-beta-xylanase C
Xylanase C
EC 3.2.1.8
1,4-beta-D-xylan xylanohydrolase C
Gene Name xlnC
Organism Streptomyces lividans
Taxonomic Lineage cellular organisms Bacteria Terrabacteria group Actinobacteria Actinomycetia (high G+C Gram-positive bacteria) Streptomycetales Streptomycetaceae Streptomyces Streptomyces lividans
Enzyme Sequence MQQDGTQQDRIKQSPAPLNGMSRRGFLGGAGTLALATASGLLLPGTAHAATTITTNQTGTDGMYYSFWTDGGGSVSMTLNGGGSYSTQWTNCGNFVAGKGWSTGDGNVRYNGYFNPVGNGYGCLYGWTSNPLVEYYIVDNWGSYRPTGTYKGTVSSDGGTYDIYQTTRYNAPSVEGTKTFQQYWSVRQSKVTSGSGTITTGNHFDAWARAGMNMGQFRYYMIMATEGYQSSGSSNITVSG
Enzyme Length 240
Uniprot Accession Number P26220
Absorption
Active Site ACT_SITE 134; /note=Nucleophile; /evidence=ECO:0000255|PROSITE-ProRule:PRU10062; ACT_SITE 226; /note=Proton donor; /evidence=ECO:0000255|PROSITE-ProRule:PRU10063
Activity Regulation
Binding Site
Calcium Binding
catalytic Activity CATALYTIC ACTIVITY: Reaction=Endohydrolysis of (1->4)-beta-D-xylosidic linkages in xylans.; EC=3.2.1.8;
DNA Binding
EC Number 3.2.1.8
Enzyme Function FUNCTION: Contributes to hydrolyze hemicellulose, the major component of plant cell-walls.
Temperature Dependency
PH Dependency
Pathway PATHWAY: Glycan degradation; xylan degradation.
nucleotide Binding
Features Active site (2); Chain (1); Compositional bias (1); Domain (1); Mutagenesis (2); Region (1); Signal peptide (1)
Keywords Carbohydrate metabolism;Direct protein sequencing;Glycosidase;Hydrolase;Polysaccharide degradation;Secreted;Signal;Xylan degradation
Interact With
Induction
Subcellular Location SUBCELLULAR LOCATION: Secreted.
Modified Residue
Post Translational Modification PTM: Exported by the Tat system. The position of the signal peptide cleavage has been experimentally proven.
Signal Peptide SIGNAL 1..49; /note="Tat-type signal"; /evidence="ECO:0000255|PROSITE-ProRule:PRU00648, ECO:0000269|PubMed:1743521"
Structure 3D
Cross Reference PDB -
Mapped Pubmed ID -
Motif
Gene Encoded By
Mass 25,673
Kinetics
Metal Binding
Rhea ID
Cross Reference Brenda