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Human Centrin-2 (aa 1-172)
CALT Swiss Prot#
P41208
CALT Protein names
Centrin-2 (Caltractin isoform 1)
CALT Gene names
CETN2 (CALT) (CEN2)
Organism
Human
CALT Entry name
CETN2_HUMAN
CALT Codon optimized cDNA(gene) Clone
CALT Cat #
RPE0030
Tag
CALT contains A 6x histidine tag
CALT Formulation
Liquid
CALT Storage
Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw cycles.
CALT Applications
Applications: 1. Codon-optimized cDNA(gene) sequence designed for protein production in both E.coli and Mammalian cell. The cDNA(gene) has been cloned into E.coli expression vector with 6x Histidine tag.2. May be used as RNAi assistance to restore the loss-of-function.
Recombinant CALT Protein
CALT Cat #
PE0030
CALT Source
recombinant
CALT Applications
Western Blot, SDS-Page or may be used for other applications determined by user
CALT Purity
>90%, as determined by SDS-PAGE under reducing conditions
CALT Activity
N/A
Tag
CALT Contains A 6x histidine tag
CALT Formulation
Liquid
CALT Storage
;. Storage at -20℃ to −80℃ Upon receipt. Avoid repeated freeze-thaw cycles.
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CALT family
Centrin family
CALT Subcellular locations
Cytoplasm > cytoskeleton > centrosome > centriole. Nucleus.
CALT FUNCTION According to UniProtKB Swiss Prot
FUNCTION: Plays a fundamental role in microtubule-organizing center structure and function. Required for centriole duplication and correct spindle formation. Has a role in regulating cytokinesis and genome stability via cooperation with CALM1 and CEP110.; FUNCTION: Involved in global genome nucleotide excision repair (GG-NER) by acting as component of the XPC complex. Cooperatively with RAD23B appears to stabilize XPC. In vitro, stimulates DNA binding of the XPC:RAD23B dimer.; FUNCTION: The XPC complex is proposed to represent the first factor bound at the sites of DNA damage and together with other core recognition factors, XPA, RPA and the TFIIH complex, is part of the pre-incision (or initial recognition) complex. The XPC complex recognizes a wide spectrum of damaged DNA characterized by distortions of the DNA helix such as single-stranded loops, mismatched bubbles or single stranded overhangs. The orientation of XPC complex binding appears to be crucial for inducing a productive NER. XPC complex is proposed to recognize and to interact with unpaired bases on the undamaged DNA strand which is followed by recruitment of the TFIIH complex and subsequent scanning for lesions in the opposite strand in a 5'-to-3' direction by the NER machinery. Cyclobutane pyrimidine dimers (CPDs) which are formed upon UV-induced DNA damage esacpe detection by the XPC complex due to a low degree of structural perurbation. Instead they are detected by the UV-DDB complex which in turn recruits and cooperates with the XPC complex in the respective DNA repair.
CALT Sequence
DDBJ EMBL GenBank
CALT 3D structure
ModBase
CALT interaction
STRING
CALT Proteomic
PRIDE
CALT Genome annotation
Ensembl GeneID KEGG UCSC
CALT Organism specific
CTD MGI
CALT Phylogenomics
eggNOG GeneTree HOGENOM HOVERGEN

InParanoid OrthoDB PhylomeDB OMA
CALT Gene expression
Bgee ArrayExpress Genevestigator
CALT Family and domain
InterPro PROSITE ProtoNet
FOR in vitro RESEARCH USE ONLY