ERCC6 Antibody - #DF8814
製品: | ERCC6 Antibody |
カタログ: | DF8814 |
タンパク質の説明: | Rabbit polyclonal antibody to ERCC6 |
アプリケーション: | WB IHC |
反応性: | Human, Mouse |
予測: | Pig, Bovine, Sheep, Rabbit, Dog, Chicken, Xenopus |
分子量: | 168 kDa; 168kD(Calculated). |
ユニプロット: | Q03468 |
RRID: | AB_2842011 |
製品説明
*The optimal dilutions should be determined by the end user.
*Tips:
WB: For western blot detection of denatured protein samples. IHC: For immunohistochemical detection of paraffin sections (IHC-p) or frozen sections (IHC-f) of tissue samples. IF/ICC: For immunofluorescence detection of cell samples. ELISA(peptide): For ELISA detection of antigenic peptide.
引用形式: Affinity Biosciences Cat# DF8814, RRID:AB_2842011.
折りたたみ/展開
4732403I04; ARMD 5; ARMD5; ATP dependent helicase ERCC6; ATP-dependent helicase ERCC6; C130058G22Rik; CKN 2; CKN2; Cockayne syndrome B protein; Cockayne syndrome group B protein; Cockayne syndrome protein CSB; COFS; COFS1; CS group B correcting; CSB; DNA excision repair protein ERCC 6; DNA excision repair protein ERCC-6; ERCC 6; ERCC6; ERCC6_HUMAN; Excision repair cross complementing rodent repair deficiency, complementation group 6; OTTHUMP00000019581; RAD26; Rad26 homolog; UVSS1;
免疫原
- Q03468 ERCC6_HUMAN:
- Protein BLAST With
- NCBI/
- ExPASy/
- Uniprot
MPNEGIPHSSQTQEQDCLQSQPVSNNEEMAIKQESGGDGEVEEYLSFRSVGDGLSTSAVGCASAAPRRGPALLHIDRHQIQAVEPSAQALELQGLGVDVYDQDVLEQGVLQQVDNAIHEASRASQLVDVEKEYRSVLDDLTSCTTSLRQINKIIEQLSPQAATSRDINRKLDSVKRQKYNKEQQLKKITAKQKHLQAILGGAEVKIELDHASLEEDAEPGPSSLGSMLMPVQETAWEELIRTGQMTPFGTQIPQKQEKKPRKIMLNEASGFEKYLADQAKLSFERKKQGCNKRAARKAPAPVTPPAPVQNKNKPNKKARVLSKKEERLKKHIKKLQKRALQFQGKVGLPKARRPWESDMRPEAEGDSEGEESEYFPTEEEEEEEDDEVEGAEADLSGDGTDYELKPLPKGGKRQKKVPVQEIDDDFFPSSGEEAEAASVGEGGGGGRKVGRYRDDGDEDYYKQRLRRWNKLRLQDKEKRLKLEDDSEESDAEFDEGFKVPGFLFKKLFKYQQTGVRWLWELHCQQAGGILGDEMGLGKTIQIIAFLAGLSYSKIRTRGSNYRFEGLGPTVIVCPTTVMHQWVKEFHTWWPPFRVAILHETGSYTHKKEKLIRDVAHCHGILITSYSYIRLMQDDISRYDWHYVILDEGHKIRNPNAAVTLACKQFRTPHRIILSGSPMQNNLRELWSLFDFIFPGKLGTLPVFMEQFSVPITMGGYSNASPVQVKTAYKCACVLRDTINPYLLRRMKSDVKMSLSLPDKNEQVLFCRLTDEQHKVYQNFVDSKEVYRILNGEMQIFSGLIALRKICNHPDLFSGGPKNLKGLPDDELEEDQFGYWKRSGKMIVVESLLKIWHKQGQRVLLFSQSRQMLDILEVFLRAQKYTYLKMDGTTTIASRQPLITRYNEDTSIFVFLLTTRVGGLGVNLTGANRVVIYDPDWNPSTDTQARERAWRIGQKKQVTVYRLLTAGTIEEKIYHRQIFKQFLTNRVLKDPKQRRFFKSNDLYELFTLTSPDASQSTETSAIFAGTGSDVQTPKCHLKRRIQPAFGADHDVPKRKKFPASNISVNDATSSEEKSEAKGAEVNAVTSNRSDPLKDDPHMSSNVTSNDRLGEETNAVSGPEELSVISGNGECSNSSGTGKTSMPSGDESIDEKLGLSYKRERPSQAQTEAFWENKQMENNFYKHKSKTKHHSVAEEETLEKHLRPKQKPKNSKHCRDAKFEGTRIPHLVKKRRYQKQDSENKSEAKEQSNDDYVLEKLFKKSVGVHSVMKHDAIMDGASPDYVLVEAEANRVAQDALKALRLSRQRCLGAVSGVPTWTGHRGISGAPAGKKSRFGKKRNSNFSVQHPSSTSPTEKCQDGIMKKEGKDNVPEHFSGRAEDADSSSGPLASSSLLAKMRARNHLILPERLESESGHLQEASALLPTTEHDDLLVEMRNFIAFQAHTDGQASTREILQEFESKLSASQSCVFRELLRNLCTFHRTSGGEGIWKLKPEYC
種類予測
Score>80(red) has high confidence and is suggested to be used for WB detection. *The prediction model is mainly based on the alignment of immunogen sequences, the results are for reference only, not as the basis of quality assurance.
High(score>80) Medium(80>score>50) Low(score<50) No confidence
PTMs - Q03468 基板として
Site | PTM Type | Enzyme | Source |
---|---|---|---|
Ubiquitination | Uniprot | ||
S10 | Phosphorylation | Uniprot | |
K32 | Sumoylation | Uniprot | |
S35 | Phosphorylation | Uniprot | |
C61 | S-Nitrosylation | Uniprot | |
S124 | Phosphorylation | Uniprot | |
K131 | Ubiquitination | Uniprot | |
S158 | Phosphorylation | Uniprot | |
K170 | Methylation | Uniprot | |
S173 | Phosphorylation | Uniprot | |
S212 | Phosphorylation | Uniprot | |
T242 | Phosphorylation | Uniprot | |
T246 | Phosphorylation | Uniprot | |
T250 | Phosphorylation | Uniprot | |
K262 | Sumoylation | Uniprot | |
K297 | Methylation | Uniprot | |
T303 | Phosphorylation | Uniprot | |
K345 | Ubiquitination | Uniprot | |
S429 | Phosphorylation | Uniprot | |
S430 | Phosphorylation | Uniprot | |
K448 | Methylation | Uniprot | |
S486 | Phosphorylation | Uniprot | |
S489 | Phosphorylation | Uniprot | |
S624 | Phosphorylation | Uniprot | |
Y625 | Phosphorylation | Uniprot | |
K663 | Ubiquitination | Uniprot | |
K729 | Ubiquitination | Uniprot | |
K759 | Ubiquitination | Uniprot | |
K774 | Ubiquitination | Uniprot | |
K783 | Ubiquitination | Uniprot | |
K817 | Ubiquitination | Uniprot | |
K820 | Ubiquitination | Uniprot | |
K836 | Ubiquitination | Uniprot | |
S893 | Phosphorylation | Uniprot | |
Y932 | Phosphorylation | P00519 (ABL1) | Uniprot |
K955 | Ubiquitination | Uniprot | |
S1009 | Phosphorylation | Uniprot | |
K1054 | Methylation | Uniprot | |
S1142 | Phosphorylation | Uniprot | |
S1146 | Phosphorylation | Uniprot | |
K1156 | Ubiquitination | Uniprot | |
S1189 | Phosphorylation | Uniprot | |
K1198 | Ubiquitination | Uniprot | |
K1254 | Ubiquitination | Uniprot | |
K1258 | Ubiquitination | Uniprot | |
S1276 | Phosphorylation | Uniprot | |
Y1279 | Phosphorylation | Uniprot | |
K1295 | Ubiquitination | Uniprot | |
S1337 | Phosphorylation | Uniprot | |
S1340 | Phosphorylation | Uniprot | |
S1345 | Phosphorylation | Uniprot | |
S1346 | Phosphorylation | Uniprot | |
T1347 | Phosphorylation | Uniprot | |
S1348 | Phosphorylation | Uniprot | |
T1350 | Phosphorylation | Uniprot | |
K1352 | Ubiquitination | Uniprot | |
K1359 | Ubiquitination | Uniprot | |
K1363 | Ubiquitination | Uniprot | |
S1381 | Phosphorylation | Uniprot | |
K1392 | Ubiquitination | Uniprot | |
K1457 | Ubiquitination | Uniprot | |
S1461 | Phosphorylation | Uniprot | |
K1487 | Ubiquitination | Uniprot |
研究背景
Essential factor involved in transcription-coupled nucleotide excision repair which allows RNA polymerase II-blocking lesions to be rapidly removed from the transcribed strand of active genes. Upon DNA-binding, it locally modifies DNA conformation by wrapping the DNA around itself, thereby modifying the interface between stalled RNA polymerase II and DNA. It is required for transcription-coupled repair complex formation. It recruits the CSA complex (DCX(ERCC8) complex), nucleotide excision repair proteins and EP300 to the sites of RNA polymerase II-blocking lesions. Plays an important role in regulating the choice of the DNA double-strand breaks (DSBs) repair pathway and G2/M checkpoint activation; DNA-dependent ATPase activity is essential for this function. Regulates the DNA repair pathway choice by inhibiting non-homologous end joining (NHEJ), thereby promoting the homologous recombination (HR)-mediated repair of DSBs during the S/G2 phases of the cell cycle. Mediates the activation of the ATM- and CHEK2-dependent DNA damage responses thus preventing premature entry of cells into mitosis following the induction of DNA DSBs. Acts as a chromatin remodeler at DSBs; DNA-dependent ATPase-dependent activity is essential for this function. Remodels chromatin by evicting histones from chromatin flanking DSBs, limiting RIF1 accumulation at DSBs thereby promoting BRCA1-mediated HR. Required for stable recruitment of ELOA and CUL5 to DNA damage sites. Involved in UV-induced translocation of ERCC8 to the nuclear matrix. Essential for neuronal differentiation and neuritogenesis; regulates transcription and chromatin remodeling activities required during neurogenesis.
Phosphorylated in a cell cycle-dependent manner at Ser-158 by cyclin A-CDK2 and at Ser-10 by ATM in response to DNA damage. Phosphorylation at these two sites promotes the intramolecular interaction of the N-terminal domain with the helicase ATP-binding domain, thereby probably releasing the inhibitory effect of the N-terminal domain on its ATPase activity. Phosphorylation is essential for its chromatin remodeling activity.
Ubiquitinated at the C-terminus. Ubiquitination by the CSA complex leads to ERCC6 proteasomal degradation in a UV-dependent manner. Stabilized following interaction with KIAA1530/UVSSA, which promotes recruitment of deubiquitinating enzyme USP7, leading to deubiquitination of ERCC6 thereby preventing UV-induced degradation of ERCC6 by the proteasome.
Sumoylation at Lys-205 in an UV-radiation-dependent manner is essential for its transcription-coupled nucleotide excision repair activity.
Nucleus.
Homodimer. Binds DNA. Interacts with ERCC8. Interacts with RNA polymerase II; interaction is enhanced by UV irradiation. Component of the B-WICH complex, at least composed of SMARCA5/SNF2H, BAZ1B/WSTF, SF3B1, DEK, MYO1C, ERCC6, MYBBP1A and DDX21. Interacts with KIAA1530/UVSSA. Interacts with ELOA and CUL5; the interaction is induced by DNA damaging agents or by inhibitors of RNA polymerase II elongation. Interacts (via WHD region) with RIF1. Interacts with SMARCC2/BAF170, SMARCB1/BAF47 and the neuron-specific chromatin remodeling complex (nBAF complex). Interacts with CAND1, CSTF1, DDX3X, DDX5, DDX17, DDX23, DHX36, HDAC1, HNRNPU, MTA2, PRPF3, PSMD3, RBBP4, SFPQ, SMARCA1, SMARCA2, TOP1, USP7, XRCC5, COPS3, COPS4, COPS6, DDX1, DDX41, GATAD2A, GATAD2B, PRPF4, PSMC5, SF3B2, CTR9, NONO, PSMD12 and TOP2A.
A C-terminal ubiquitin-binding domain (UBD) is essential for transcription-coupled nucleotide excision repair activity, interaction with RNA polymerase II, association with chromatin after UV irradiation and for mediating the UV-induced translocation of ERRC8 to the nuclear matrix.
The N-terminal domain exerts an inhibitory effect on the helicase ATP-binding domain in such a manner that its ATPase activity is restricted (PubMed:29203878). Phosphorylation at Ser-10 and Ser-158 promotes the intramolecular interaction of the N-terminal domain with the helicase ATP-binding domain, thereby probably releasing the inhibitory effect of the N-terminal domain on its ATPase activity (PubMed:29203878).
Belongs to the SNF2/RAD54 helicase family.
研究領域
· Genetic Information Processing > Replication and repair > Nucleotide excision repair.
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