期刊名称:Proceedings of the National Academy of Sciences
印刷版ISSN:0027-8424
电子版ISSN:1091-6490
出版年度:2004
卷号:101
期号:24
页码:8858-8863
DOI:10.1073/pnas.0401675101
语种:English
出版社:The National Academy of Sciences of the United States of America
摘要:A remote labeling method has been developed to determine 18O kinetic isotope effects (KIEs) in Ras-catalyzed GTP hydrolysis. Substrate mixtures consist of 13C-depleted GTP and [18O,13C]GTP that contains 18O at phosphoryl positions of mechanistic interest and 13C at all carbon positions of the guanosine moiety. Isotope ratios of the nonvolatile substrates and products are measured by using a chemical reaction interface/isotope ratio mass spectrometer. The isotope effects are 1.0012 (0.0026) in the {gamma} nonbridge oxygens, 1.0194 (0.0025) in the leaving group oxygens (the {beta}-{gamma} oxygen and the two {beta} nonbridge oxygens), and 1.0105 (0.0016) in the two {beta} nonbridge oxygens. The KIE in the {beta}-{gamma} bridge oxygen was computed to be 1.0116 or 1.0088 by two different methods. The significant KIE in the leaving group reveals that chemistry is largely rate-limiting whereas the KIEs in the {gamma} nonbridge oxygens and the leaving group indicate a loose transition state that approaches a metaphosphate. The KIE in the two {beta} nonbridge oxygens is roughly equal to that in the {beta}-{gamma} bridge oxygen. This indicates that, in the transition state, Ras shifts one-half of the negative charge that arises from P{gamma}-O{beta}-{gamma} fission from the {beta}-{gamma} bridge oxygen to the two {beta} nonbridge oxygens. The KIE effects, interpreted in light of structural and spectroscopic data, suggest that Ras promotes a loose transition state by stabilizing negative charge in the {beta}-{gamma} bridge and {beta} nonbridge oxygens of GTP.