Guanosine 5'-triphosphate trisodium salt

CAS号

36051-31-7

分子式

C10H13N5Na3O14P3

主要靶点

Endogenous Metabolite

仅限科研使用

Cat No : CM00287

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Synonyms

Inhibitor|鸟苷-5'-三磷酸三钠盐|5'-GTP|5'-GTP trisodium|5'-GTP trisodium salt|EndogenousMetabolite|GTP Trisodium|GTP Trisodium salt|GTP|Guanosine 5' triphosphate trisodium salt|Guanosine 5'-triphosphate|Guanosine 5'-triphosphate trisodium|Guanosine 5'triphosphate trisodium salt|inhibit|Human Endogenous Metabolite|Endogenous Metabolite



产品信息

CAS号 36051-31-7
分子式 C10H13N5Na3O14P3
主要靶点 Endogenous Metabolite
主要通路 代谢
分子量 589.13
纯度 100%, 此纯度可做参考,具体纯度与批次有关系,可咨询客服
储存条件 store at low temperature | Powder: -20°C for 3 years | In solvent: -80°C for 1 year | Shipping with blue ice.
别名 Inhibitor|鸟苷-5'-三磷酸三钠盐|5'-GTP|5'-GTP trisodium|5'-GTP trisodium salt|EndogenousMetabolite|GTP Trisodium|GTP Trisodium salt|GTP|Guanosine 5' triphosphate trisodium salt|Guanosine 5'-triphosphate|Guanosine 5'-triphosphate trisodium|Guanosine 5'triphosphate trisodium salt|inhibit|Human Endogenous Metabolite|Endogenous Metabolite

溶解度

H2O:10 mM;DMSO:Insoluble

参考文献

1.Gutkind, Silvio J . Cell growth control by G protein-coupled receptors: from signal transduction to signal integration[J]. Oncogene, 1998, 17(11):1331-1342.
2.Dhanasekaran N , Tsim S T , Dermott J M , et al. Regulation of cell proliferation by G proteins[J]. ONCOGENE, 1998, 17(11):1383-1394.
3.J Gómez, C Martínez-A, A González, et al. Dual role of Ras and Rho proteins: at the cutting edge of life and death[J]. Immunology and Cell Biology, 1998, 76(2):125-134.
4.Lacal, Carlos J . Regulation of proliferation and apoptosis by Ras and Rho GTPases through specific phospholipid-dependent signaling[J]. Febs Letters, 1997, 410(1):73-77.
5.Schimmoller F , Simon I , Pfeffer S R . Rab GTPases, Directors of Vesicle Docking[J]. Journal of Biological Chemistry, 1998, 273(35):22161-22164.

The molarity calculator equation

Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)

质量   浓度   体积   分子量 *
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The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
This equation is commonly abbreviated as: C1V1 = C2V2

浓度 (start) × 体积 (start) = 浓度 (final) × 体积 (final)
×
=
×
C1   V1   C2   V2