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Tigar (基因名), Fructose-2,6-bisphosphatase TIGAR (蛋白名), tigar_mouse.
产品名称:

Mouse Tigar/ Fructose-2,6-bisphosphatase TIGAR ELISA Kit
果糖-2,6-二磷酸酶TIGAR

货号:

E5948m

商标:
EIAab®
监管等级:
别名:

TP53-induced glycolysis and apoptosis regulator, TP53-induced glycolysis regulatory phosphatase

检测方法:
ELISA
实验类型:
Sandwich
检测范围:
0.78-50ng/mL
灵敏度:
0.392ng/mL
特异性:
Natural and recombinant mouse Fructose-2,6-bisphosphatase TIGAR
样品类型:
Serum, plasma, tissue homogenates, cell culture supernates and other biological fluids
样品数据:
实验步骤:
实验步骤
研究领域:
-
Mouse Tigar ELISA Kit
规格 & 价格: cart
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Mouse Tigar ELISA Kit
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产品说明书
数据表: 下载说明书
说明书: 下载说明书
MSDS: MSDS
在线询价


精密度
批内差:已知浓度的3个样本在一个板子内重复检测20次,以评估批内精密度。
批内 CV: ≤5.8%
批间差:已知浓度的3个样本在不同的板子上重复测定5次,以评估测定批间精密度。
批间 CV: ≤8.3%
回收率
回收率:低、中和高浓度的分析物被掺入到血清或者血浆样本中,进行回收实验测定。

Sample Type

Average(%)

Recovery Range(%)

Serum

111

105-117

Plasma

113

107-119

 

 

 

 

线性
线性:给定样本通过梯度稀释,每次稀释的测量值与理论值的比值。

Sample

1:2

1:4

1:8

1:16

serum(n=5)

103-115%

107-116%

103-114%

100-112%

EDTA plasma(n=5)

103-114%

114-124%

106-115%

91-101%

heparin plasma(n=5)

97-107%

 

101-110%

104-114%

89-101%

 

通用注释


亚单元:
Interacts with HK2; the interaction increases hexokinase HK2 activity in a hypoxia- and HIF1A-dependent manner, resulting in the regulation of mitochondrial membrane potential, thus increasing NADPH production and decreasing intracellular ROS levels.


功能:
Fructose-bisphosphatase hydrolyzing fructose-2,6-bisphosphate as well as fructose-1,6-bisphosphate (By similarity). Acts as a negative regulator of glycolysis by lowering intracellular levels of fructose-2,6-bisphosphate in a p53/TP53-dependent manner, resulting in the pentose phosphate pathway (PPP) activation and NADPH production (PubMed:23726973). Contributes to the generation of reduced glutathione to cause a decrease in intracellular reactive oxygen species (ROS) content, correlating with its ability to protect cells from oxidative or metabolic stress-induced cell death (PubMed:23726973). Plays a role in promoting protection against cell death during hypoxia by decreasing mitochondria ROS levels in a HK2-dependent manner through a mechanism that is independent of its fructose-bisphosphatase activity (By similarity). In response to cardiac damage stress, mediates p53-induced inhibition of myocyte mitophagy through ROS levels reduction and the subsequent inactivation of BNIP3 (PubMed:22044588). Reduced mitophagy results in an enhanced apoptotic myocyte cell death, and exacerbates cardiac damage (PubMed:22044588). Plays a role in adult intestinal regeneration; contributes to the growth, proliferation and survival of intestinal crypts following tissue ablation (PubMed:23726973). Plays a neuroprotective role against ischemic brain damage by enhancing PPP flux and preserving mitochondria functions (PubMed:24872551). Protects glioma cells from hypoxia- and ROS-induced cell death by inhibiting glycolysis and activating mitochondrial energy metabolism and oxygen consumption in a TKTL1-dependent and p53/TP53-independent manner. Plays a role in cancer cell survival by promoting DNA repair through activating PPP flux in a CDK5-ATM-dependent signaling pathway during hypoxia and/or genome stress-induced DNA damage responses (By similarity). Involved in intestinal tumor progression (PubMed:23726973).


亚细胞位置:
Cytoplasm Nucleus Mitochondrion Translocated to the mitochondria during hypoxia in a HIF1A-dependent manner. Colocalizes with HK2 in the mitochondria during hypoxia. Translocated to the nucleus during hypoxia and/or genome stress-induced DNA damage responses in cancer cells (By similarity). Translocation to the mitochondria is enhanced in ischemic cortex after reperfusion and/or during oxygen and glucose deprivation (OGD)/reoxygenation insult in primary neurons (PubMed:24872551).


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