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ELK Biotechnology Rad17 (phospho-Ser635)  rabbit pAb
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ELK Biotechnology Rad17 (phospho-Ser635) rabbit pAb

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Rad17 (phospho-Ser635) rabbit polyclonal antibody로, 인간·쥐·마우스에서 반응합니다. WB, ELISA, IHC에 적합하며 DNA 손상 반응 연구에 유용합니다. 핵 내에 존재하며 DNA 손상 시 인산화되어 G2 체크포인트 조절에 관여합니다.

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pk
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ELK Biotechnology ES13475-100UL Rad17 (phospho-Ser635) rabbit pAb, 100UL pk판매 단위 pk ·
재고 확인 필요
402,000원VAT 포함 442,200원
ELK Biotechnology ES13475-50UL Rad17 (phospho-Ser635) rabbit pAb, 50UL pk판매 단위 pk ·
재고 확인 필요
301,000원VAT 포함 331,100원

ELK Biotechnology · ELK Biotechnology Rad17 (phospho-Ser635) rabbit pAb

제품명

Rad17 (phospho-Ser635) rabbit pAb

제품 설명

Rad17 (phospho-Ser635) 항체는 DNA 손상 반응 및 세포 주기 조절 연구에 사용되는 rabbit polyclonal antibody입니다. 인간, 쥐, 마우스 시료에서 반응하며, Western blot, ELISA, IHC 등 다양한 응용에 적합합니다.

제품 스펙

항목 내용
Product name Rad17 (phospho-Ser635) rabbit pAb
Alternative Names Cell cycle checkpoint protein RAD17 (hRad17), RF-C/activator 1 homolog
Applications WB, ELISA, IHC
Recommended Dilutions WB 1:500–2000; IHC-p 1:50–300; ELISA 1:2000–1:20000
Immunogen Synthesized phospho peptide around human Rad17 (Ser635)
Host Rabbit
Storage -20°C, 1 year
Clonality Polyclonal
Isotype IgG
Concentration 1 mg/ml
Observed Band 77 kDa
Gene ID (Human) 5884
Human Swiss-Prot No. O75943
Cellular Localization Nucleus. Phosphorylated form redistributes to discrete nuclear foci upon DNA damage.
Species Reactivity Human, Rat, Mouse

Background

The protein encoded by this gene is highly similar to the gene product of Schizosaccharomyces pombe rad17, a cell cycle checkpoint gene required for cell cycle arrest and DNA damage repair in response to DNA damage. This protein shares strong similarity with DNA replication factor C (RFC) and can form a complex with RFCs. It binds to chromatin prior to DNA damage and is phosphorylated by the checkpoint kinase ATR following damage. This protein recruits the RAD1-RAD9-HUS1 checkpoint protein complex onto chromatin after DNA damage, which may be required for its phosphorylation. The phosphorylation of this protein is required for the DNA-damage-induced cell cycle G2 arrest and is thought to be a critical early event during checkpoint signaling in DNA-damaged cells. Multiple alternatively spliced transcript variants of this gene encode distinct protein isoforms.

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