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WISP2抗原,結締組織生長因子樣蛋白抗原

2024-11-12  閱讀(119)

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Recombinant human WISP2   

CTGFL; CCN family member 5; CCN5; Connective tissue growth factor like protein; Connective tissue growth factor related protein 58; Connective tissue growth factor-like protein; Connective tissue growth factor-related protein 58; CT58; CTGF L; CTGFL; CTGF-L; WISP 2; WISP-2; Wisp2; WISP2_HUMAN; WNT1 inducible signaling pathway protein 2; WNT1-inducible-signaling pathway protein 2.   

濃度:1mg/ ml

來源:Recombinant Human

純度:95% SDS-PAGE

表達系統:Escherichia coli

標簽:His tag   

蛋白長度:Full length protein

內毒素水平:<1.000 Eu/µg

純化方法:HPLC

應用:SDS-PAGEWestern blotELISA

Biological activity,immunology research

保存:-20

保質期:1

WISP2 a member of the WNT1 inducible signaling pathway (WISP) protein subfamily, which belongs to the connective tissue growth factor (CTGF) family. WNT1 is a member of a family of cysteine-rich, glycosylated signaling proteins that mediate diverse developmental processes. The CTGF family members are characterized by four conserved cysteine-rich domains: insulin-like growth factor-binding domain, von Willebrand factor type C module, thrombospondin domain and C-terminal cystine knot-like (CT) domain. WISP2 lacks the CT domain which is implicated in dimerization and heparin binding. It is 72% identical to the mouse protein at the amino acid level. This gene may be downstream in the WNT1 signaling pathway that is relevant to malignant transformation. Its expression in colon tumors is reduced while the other two WISP members are overexpressed in colon tumors. It is expressed at high levels in bone tissue, and may play an important role in modulating bone turnover.



產品名稱:Rabbit Anti-WISP2 antibody

Rabbit Anti-WISP2 

別名:CTGFL; CCN family member 5; CCN5; Connective tissue growth factor like protein; Connective tissue growth factor related protein 58; Connective tissue growth factor-like protein; Connective tissue growth factor-related protein 58; CT58; CTGF L; CTGFL; CTGF-L; WISP 2; WISP-2; Wisp2; WISP2_HUMAN; WNT1 inducible signaling pathway protein 2; WNT1-inducible-signaling pathway protein 2.               

來源:Rabbit

克隆類型:Polyclonal

濃度:1mg/ml

亞型:IgG

反應:Human,Mouse (predicted: Rat,Rabbit,Pig,Sheep,Cow)

應用: WB=1:1000-1:2000,Elisa=1:1000-1:2000,IHC-P=1:100-500

       IHC-F=1:100-500,ICC/IF=1:100-500,IF=1:100-500

理論分子量:24kDa

免疫原:KLH conjugated synthetic peptide derived from human WISP2

保存:-20
保質期:1

 

 

產品名稱:Anti-WISP2 antibody

Mouse Anti-WISP2

別名:CTGFL; CCN family member 5; CCN5; Connective tissue growth factor like protein; Connective tissue growth factor related protein 58; Connective tissue growth factor-like protein; Connective tissue growth factor-related protein 58; CT58; CTGF L; CTGFL; CTGF-L; WISP 2; WISP-2; Wisp2; WISP2_HUMAN; WNT1 inducible signaling pathway protein 2; WNT1-inducible-signaling pathway protein 2.                 

來源:Mouse

克隆類型:Monoclonal

濃度:1mg/ml

亞型:IgG

反應:Human

應用:WB=1:1000-1:2000,Elisa=1:1000-1:2000,IHC-P=1:100-500

       IHC-F=1:100-500,ICC/IF=1:100-500,IF=1:100-500

反應:  Human

理論分子量:24kDa

免疫原:KLH conjugated synthetic peptide derived from human WISP2

保存:-20
保質期:1

WISP2 a member of the WNT1 inducible signaling pathway (WISP) protein subfamily, which belongs to the connective tissue growth factor (CTGF) family. WNT1 is a member of a family of cysteine-rich, glycosylated signaling proteins that mediate diverse developmental processes. The CTGF family members are characterized by four conserved cysteine-rich domains: insulin-like growth factor-binding domain, von Willebrand factor type C module, thrombospondin domain and C-terminal cystine knot-like (CT) domain. WISP2 lacks the CT domain which is implicated in dimerization and heparin binding. It is 72% identical to the mouse protein at the amino acid level. This gene may be downstream in the WNT1 signaling pathway that is relevant to malignant transformation. Its expression in colon tumors is reduced while the other two WISP members are overexpressed in colon tumors. It is expressed at high levels in bone tissue, and may play an important role in modulating bone turnover.


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