深圳欣博盛生物科技有限公司 a1

WISP1 antibody, C-term
货号:GTX88924 规格:100μg 目录价:¥5600
产品详情
* 以下信息仅供参考,详情请以原厂网站为准
产品名称:
WISP1 antibody, C-term
别名:
cellular communication network factor 4 , WISP1 , WISP1-OT1 , WISP1-UT1 , WISP1c , WISP1i , WISP1tc
反应种属:
Human
宿主来源:
Goat
实验应用:
WB
靶标/特异性:
This antibody is expected to recognize both reported isoforms (NP_003873.1; NP_543028.1).
同种型:
IgG
免疫原:
Peptide with sequence C-ESYPDFSEIAN, from the C Terminus of the protein sequence according to NP_003873.1; NP_543028.1.
克隆性:
Polyclonal
克隆号:
纯化方式:
Purified by ammonium sulphate precipitation followed by antigen affinity chromatography
偶联:
Unconjugated
产品浓度:
0.50 mg/ml (Please refer to the vial label for the specific concentration.)
保存温度:
Store as concentrated solution. Centrifuge briefly prior to opening vial. For short-term storage (1-2 weeks), store at 4ºC. For long-term storage, aliquot and store at -20ºC or below. Avoid multiple freeze-thaw cycles.
运输温度:
4°C
产品形式:
Liquid
存储溶液:
TBS, 0.5% BSA, 0.02% Sodium azide.
生产商:
GeneTex
功能与背景:
This gene encodes 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 domain. This gene may be downstream in the WNT1 signaling pathway that is relevant to malignant transformation. It is expressed at a high level in fibroblast cells, and overexpressed in colon tumors. The encoded protein binds to decorin and biglycan, two members of a family of small leucine-rich proteoglycans present in the extracellular matrix of connective tissue, and possibly prevents the inhibitory activity of decorin and biglycan in tumor cell proliferation. It also attenuates p53-mediated apoptosis in response to DNA damage through activation of the Akt kinase. It is 83% identical to the mouse protein at the amino acid level. Multiple alternatively spliced transcript variants have been identified. [provided by RefSeq, Mar 2011]
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