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ELK Biotechnology Cleaved-Caspase-1 (M211) rabbit pAb
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ELK Biotechnology Cleaved-Caspase-1 (M211) rabbit pAb

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Cleaved-Caspase-1 (M211) rabbit pAb는 인간, 생쥐, 랫트 시료에 반응하는 폴리클로날 항체로, WB, IHC, IF, ELISA에 적합합니다. 세포자멸사 관련 단백질 연구에 유용하며, 고순도 IgG 형태로 제공됩니다. -20°C에서 1년 보관 가능합니다.

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pk
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ELK Biotechnology ES7676-100UL Cleaved-Caspase-1 (M211) rabbit pAb, 100UL pk판매 단위 pk ·
재고 확인 필요
402,000원VAT 포함 442,200원
ELK Biotechnology ES7676-50UL Cleaved-Caspase-1 (M211) rabbit pAb, 50UL pk판매 단위 pk ·
재고 확인 필요
301,000원VAT 포함 331,100원

ELK Biotechnology · ELK Biotechnology Cleaved-Caspase-1 (M211) rabbit pAb

Cleaved-Caspase-1 (M211) rabbit pAb

공급업체: ELK Biotechnology

제품 정보

항목 내용
Product name Cleaved-Caspase-1 (M211) rabbit pAb
Alternative Names CASP1; IL1BC; IL1BCE; Caspase-1; CASP-1; Interleukin-1 beta convertase; IL-1BC; Interleukin-1 beta-converting enzyme; ICE; IL-1 beta-converting enzyme; p45
Applications WB; IHC; IF; ELISA
Recommended Dilutions Western Blot: 1/500 - 1/2000
Immunohistochemistry: 1/100 - 1/300
ELISA: 1/20000
Not yet tested in other applications
Immunogen The antiserum was produced against synthesized peptide derived from human CASP1 (AA range: 192–241)
Host Rabbit
Storage -20°C, 1 year
Clonality Polyclonal
Isotype IgG
Concentration 1 mg/ml
GeneID (Human) 834
Human Swiss-Prot No P29466
Cellular Localization Cytoplasm, Cell membrane
Species Reactivity Human, Mouse, Rat

Background

This gene encodes a protein which is a member of the cysteine-aspartic acid protease (caspase) family. Sequential activation of caspases plays a central role in the execution phase of cell apoptosis. Caspases exist as inactive proenzymes that undergo proteolytic processing at conserved aspartic residues to produce two subunits, large and small, which dimerize to form the active enzyme.
This gene was identified by its ability to proteolytically cleave and activate the inactive precursor of interleukin-1, a cytokine involved in inflammation, septic shock, and wound healing. It has been shown to induce cell apoptosis and may function in various developmental stages. Studies in mouse suggest a role in the pathogenesis of Huntington disease. Alternative splicing results in transcript variants encoding distinct isoforms.
[provided by RefSeq, Mar 2012]

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