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Molecule Parameter List for RasGTP | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| The statistics table lists the distribution of a molecule acting either as a substrate, product, enzyme or as a molecule within the network. The text color of a molecule is highlighted by color. | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Statistics | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| RasGTP participated as | Molecule | Sum total of | Enzyme | Substrate of an enzyme | Product of an enzyme | Substrate in Reaction | Product in Reaction |
| No. of occurrences | 1 | 0 | 0 | 0 | 0 | 1 | 0 |
Accession and Pathway Details |
| Accession Name | Accession No. | Accession Type | Pathway Link |
| RasGTPase | 71 | Pathway | RasGTPase |
| Ras is an important regulator of cell growth in all eukaryotic cells. The model represent hydrolysis of active Ras-bound GTP to give inactive Ras-bound GDP catalyzed by GTPase activating proteins i.e NF1. The inactive Ras-bound GDP turns signalling protein off. | |||
RasGTP acting as a Molecule in RasGTPase Network
| Name | Accession Name | Pathway Name | Initial Conc. (uM) | Volume (fL) | Buffered | |
| RasGTP | RasGTPase Accession No. : 71 | RasGTPase Pathway No. : 307 | 1 | 523.6 | No | |
| The concentration of Ras GTP is 1 um. Ref: Fig-2 Phillips RA et al Biochemistry 2003, 42, 3956-3965. | ||||||
RasGTP acting as a Substrate in a reaction in RasGTPase Network
| Kd is calculated only for second order reactions, like nA+nB <->nC or nA<->nC+nD, where n is number and A,B,C,D are molecules, where as for first order reactions Keq is calculated. Kd for higher order reaction are not consider. |
| Name | Accession Name | Pathway Name | Kf | Kb | Kd | tau | Reagents |
| NF1_binding | RasGTPase Accession No. : 71 | RasGTPase Pathway No. : 307 | 1.2 (uM^-1 s^-1) | 6.36 (s^-1) | Kd(bf) = 5.3(uM) | - | Substrate NF1 RasGTP Product RasGTP-NF1 |
| Binding of NF1 to Ras.GTP NF1 is a mammalian GAP Kd = 5.3 uM Table 3, Phillips RA et al 2003 Biochemistry 42: 3956-3965 | |||||||
color.