ENTPD5 (18I11) Rabbit Monoclonal Antibody

ENTPD5 (18I11) Rabbit Monoclonal Antibody

规格:50μL 价格:¥1350
规格:100μL 价格:¥2250
应用(Application):WB,IHC-P

种属(Reactivity):Human,Mouse,Rat
偶联物(Conjugate):Unconjugated
基因名(Gene Name):ENTPD5
SKU: AMRe10483 Category: 兔单克隆抗体 Tags: , , , , , , ,

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产品概述

产品名称(Product Name)

ENTPD5 (18I11) Rabbit Monoclonal Antibody

描述(Description)

Recombinant rabbit monoclonal antibody

宿主(Host)

Rabbit

应用(Application)

WB,IHC

种属反应性(Reactivity)

Human,Mouse,Rat

 

产品性能

偶联物(Conjugation)

Unconjugated

修饰(Modification)

Unmodified

同种型(Isotype)

IgG

克隆(Clonality)

Monoclonal

形式(Form)

Liquid

存放说明(Storage)

Store at 4°C short term. Aliquot and store at -20°C long term. Avoid freeze/thaw cycles.

储存溶液(Buffer)

Supplied in 50mM Tris-Glycine(pH 7.4), 0.15M NaCl, 40%Glycerol, 0.01% New type preservative N and 0.05% protective protein.

纯化方式(Purification)

Affinity purification

 

免疫原

基因名(Gene Name)

ENTPD5

别名(Alternative Names)

CD39L4; Entpd5; mNTPase; NTPDase 5; PCPH;

基因ID(Gene ID)

957

蛋白ID(SwissProt ID)

O75356

 

产品应用

稀释比(Dilution Ratio)

WB 1:1000-1:5000,IHC 1:100-1:200

蛋白分子量(Molecular Weight)

48kDa

 

研究背景

Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Uridine diphosphatase (UDPase) that promotes protein N- glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP > IDP > UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.

 

研究领域


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