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ELK Biotechnology p38 (phospho Tyr323) rabbit pAb
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ELK Biotechnology p38 (phospho Tyr323) rabbit pAb

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p38 (phospho Tyr323) rabbit pAb는 인산화된 p38 MAPK를 인식하는 폴리클로날 항체로, IF, WB, IHC, ELISA에 적합합니다. 인간, 마우스, 랫트에 반응하며 세포 스트레스 및 신호전달 연구에 활용됩니다. -20°C에서 1년 보관 가능합니다.

판매단위
pk
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ELK Biotechnology ES1491-100UL p38 (phospho Tyr323) rabbit pAb, 100UL pk판매 단위 pk ·
재고 확인 필요
402,000원VAT 포함 442,200원
ELK Biotechnology ES1491-50UL p38 (phospho Tyr323) rabbit pAb, 50UL pk판매 단위 pk ·
재고 확인 필요
301,000원VAT 포함 331,100원

ELK Biotechnology · ELK Biotechnology p38 (phospho Tyr323) rabbit pAb

제품명

p38 (phospho Tyr323) rabbit pAb

제품 정보

항목 내용
Alternative Names MAPK14; CSBP; CSBP1; CSBP2; CSPB1; MXI2; SAPK2A; Mitogen-activated protein kinase 14; MAP kinase 14; MAPK 14; Cytokine suppressive anti-inflammatory drug-binding protein; CSAID-binding protein; CSBP; MAP kinase MXI2; MAX-interacting protein
Applications IF; WB; IHC; ELISA
Recommended Dilutions IF: 1:50–200; Western Blot: 1:500–1:2000; IHC: 1:100–1:300; ELISA: 1:5000; Not yet tested in other applications
Immunogen Synthesized peptide derived from human p38 MAPK around the phosphorylation site of Tyr322 (AA range: 288–337)
Host Rabbit
Storage -20°C, 1 year
Clonality Polyclonal
Isotype IgG
Concentration 1 mg/ml
Observed Band 38 kD
Gene ID (Human) 1432
Human Swiss-Prot No. Q16539
Cellular Localization Cytoplasm, Nucleus
Species Reactivity Human, Mouse, Rat

Background

The protein encoded by this gene is a member of the MAP kinase family. MAP kinases act as integration points for multiple biochemical signals and are involved in various cellular processes such as proliferation, differentiation, transcription regulation, and development. This kinase is activated by environmental stresses and proinflammatory cytokines, requiring phosphorylation by MAP kinase kinases (MKKs) or autophosphorylation triggered by interaction with MAP3K7IP1/TAB1. Its substrates include transcription regulators (ATF2, MEF2C, MAX), cell cycle regulator CDC25B, and tumor suppressor p53, indicating roles in stress-related transcription, cell cycle regulation, and genotoxic stress response. Four alternatively spliced transcript variants have been identified.

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