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ELK Biotechnology TERT (phospho Ser227) rabbit pAb
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ELK Biotechnology TERT (phospho Ser227) rabbit pAb

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인산화된 Ser227 부위를 인식하는 TERT rabbit polyclonal antibody. 인간, 생쥐, 랫드 시료에 반응. IF 및 ELISA에 사용 가능하며, 세포 내 TERT 단백질의 위치 및 발현 연구에 적합. -20°C에서 1년 보관 가능.

판매단위
pk
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ELK Biotechnology ES7372-100UL TERT (phospho Ser227) rabbit pAb, 100UL pk판매 단위 pk ·
재고 확인 필요
402,000원VAT 포함 442,200원
ELK Biotechnology ES7372-50UL TERT (phospho Ser227) rabbit pAb, 50UL pk판매 단위 pk ·
재고 확인 필요
301,000원VAT 포함 331,100원

ELK Biotechnology · ELK Biotechnology TERT (phospho Ser227) rabbit pAb

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TERT (phospho Ser227) rabbit pAb

제품 정보

항목 내용
Alternative Names TERT; EST2; TCS1; TRT; Telomerase reverse transcriptase; HEST2; Telomerase catalytic subunit; Telomerase-associated protein 2; TP2
Applications IF; ELISA
Recommended Dilutions Immunofluorescence: 1/200 - 1/1000
ELISA: 1/10000
Not yet tested in other applications
Immunogen The antiserum was produced against synthesized peptide derived from human Telomerase around the phosphorylation site of Ser227. AA range: 196–245
Host Rabbit
Storage -20°C / 1 year
Clonality Polyclonal
Isotype IgG
Concentration 1 mg/ml
Gene ID (Human) 7015
Human Swiss-Prot No. O14746
Species Reactivity Human; Rat; Mouse
Cellular Localization Nucleus, nucleolus, nucleoplasm, chromosome (telomere), cytoplasm, PML body. Shuttling between nucleus and cytoplasm depends on cell cycle, phosphorylation states, transformation, and DNA damage. Diffuse localization in nucleoplasm, enriched in nucleoli of certain cell types. Translocated to cytoplasm via nuclear pores in a CRM1/RAN-dependent manner involving oxidative stress-mediated phosphorylation at Tyr-707. Dephosphorylation at this site by SHP2 retains TERT in the nucleus. Translocated to the nucleus by phosphorylation by AKT.
Background Telomerase is a ribonucleoprotein polymerase that maintains telomere ends by addition of the telomere repeat TTAGGG. It consists of a protein component with reverse transcriptase activity and an RNA component serving as a template. Telomerase expression is normally repressed in somatic cells, leading to telomere shortening and cellular senescence. Deregulation may contribute to oncogenesis. Studies in mice suggest telomerase also participates in chromosomal repair via de novo synthesis of telomere repeats at double-stranded breaks. Alternatively spliced variants encoding different isoforms have been identified.

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