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GMF beta/GMFB Protein, Human, Recombinant (His)

产品编号 TMPJ-00024

Glia maturation factor beta (GMFB) contains a ADF-H domain,which is a member of the actin-binding proteins ADF family, GMF subfamily. It is a nerve growth factor implicated in nervous system development, angiogenesis and immune function. GMFB causes differentiation of brain cells, stimulation of neural regeneration, and inhibition of proliferation of tumor cells. It is phosphorylated after phorbol ester stimulation, and is crucial for the nervous system. GMFB overexpression in astrocytes results in the increase of BDNF production. GMFB expression is increased by exercise, thus BDNF is important for exercise-induction of BDNF.

GMF beta/GMFB Protein, Human, Recombinant (His)

GMF beta/GMFB Protein, Human, Recombinant (His)

产品编号 TMPJ-00024
Glia maturation factor beta (GMFB) contains a ADF-H domain,which is a member of the actin-binding proteins ADF family, GMF subfamily. It is a nerve growth factor implicated in nervous system development, angiogenesis and immune function. GMFB causes differentiation of brain cells, stimulation of neural regeneration, and inhibition of proliferation of tumor cells. It is phosphorylated after phorbol ester stimulation, and is crucial for the nervous system. GMFB overexpression in astrocytes results in the increase of BDNF production. GMFB expression is increased by exercise, thus BDNF is important for exercise-induction of BDNF.
规格价格库存数量
10 μg¥ 3805日内发货
50 μg¥ 8205日内发货
500 μg¥ 5,1305日内发货
1 mg¥ 8,3005日内发货
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产品信息

生物活性
Activity has not been tested. It is theoretically active, but we cannot guarantee it. If you require protein activity, we recommend choosing the eukaryotic expression version first.
产品描述
Glia maturation factor beta (GMFB) contains a ADF-H domain,which is a member of the actin-binding proteins ADF family, GMF subfamily. It is a nerve growth factor implicated in nervous system development, angiogenesis and immune function. GMFB causes differentiation of brain cells, stimulation of neural regeneration, and inhibition of proliferation of tumor cells. It is phosphorylated after phorbol ester stimulation, and is crucial for the nervous system. GMFB overexpression in astrocytes results in the increase of BDNF production. GMFB expression is increased by exercise, thus BDNF is important for exercise-induction of BDNF.
种属
Human
表达系统
E. coli
标签C-6xHis
蛋白编号P60983
别名
GMF-β,GMF-beta,GMFB,Glia maturation factor β,Glia maturation factor beta
氨基酸序列
Met1-His142
蛋白构建
Met1-His142
蛋白纯度
Greater than 95% as determined by reducing SDS-PAGE. (QC verified)
分子量18 KDa (reducing condition)
内毒素< 0.1 ng/µg (1 EU/µg) as determined by LAL test.
缓冲液Lyophilized from a solution filtered through a 0.22 μm filter, containing 20 mM Tris-HCl, 200 mM NaCl, pH 8.0.
复溶方法
Reconstitute the lyophilized protein in distilled water. The product concentration should not be less than 100 μg/ml. Before opening, centrifuge the tube to collect powder at the bottom. After adding the reconstitution buffer, avoid vortexing or pipetting for mixing.
存储
Lyophilized powders can be stably stored for over 12 months, while liquid products can be stored for 6-12 months at -80°C. For reconstituted protein solutions, the solution can be stored at -20°C to -80°C for at least 3 months. Please avoid multiple freeze-thaw cycles and store products in aliquots.
运输方式In general, Lyophilized powders are shipping with blue ice. Solutions are shipping with dry ice.
研究背景
Glia maturation factor beta (GMFB) contains a ADF-H domain,which is a member of the actin-binding proteins ADF family, GMF subfamily. It is a nerve growth factor implicated in nervous system development, angiogenesis and immune function. GMFB causes differentiation of brain cells, stimulation of neural regeneration, and inhibition of proliferation of tumor cells. It is phosphorylated after phorbol ester stimulation, and is crucial for the nervous system. GMFB overexpression in astrocytes results in the increase of BDNF production. GMFB expression is increased by exercise, thus BDNF is important for exercise-induction of BDNF.

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