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121.
Initial velocity steady-state substrate kinetics for the ATP phosphoribosyltransferase reaction in the biosynthetic direction were determined and are consistent with a sequential kinetic mechanism. To hold the fractions of magnesium-complexed substrates and products constant so as to avoid possible distortion of reciprocal velocity plots Mg2+ binding constants to the substrates ATP and phosphoribosylpyrophosphate and the product pyrophosphate were measured under assay conditions. Several conformational states of the phosphoribosyltransferase distinguishable by other criteria gave similar substrate kinetic behavior. Product inhibition studies were conducted to elucidate the binding order. Phosphoribosyl-ATP was competitive with respect to ATP and was non-competitive with respect to phosphoribosylpyrophosphate. Pyrophosphate was non-competitive with respect to both substrates. The data are consistent with the ordered Bi-Bi kinetic mechanism with ATP binding first to free enzyme and phosphoribosyl-ATP dissociating last from enzyme-product complexes. 相似文献
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W. J. Keon P. Bédard Y. Akyurekli M. Brais F. Berkman K. W. Tan B. C. Morton 《CMAJ》1976,114(4):312-315
During a 5-year period (Apr. 14, 1970 to Apr. 14, 1975) 930 patients underwent aortocoronary bypass grafting; the procedure was done as an emergency in 141. Of the entire group 3.3% died at operation, 1.6% died in hospital and 5.8% died later; of the patients undergoing emergency grafting 12.1% died at operation and 5.7% died later. From a detailed analysis of the first 600 patients it was found that both operative and late mortality were clearly related to two factors: severe left ventricular dysfunction at the time of operation and inadequate surgical treatment because of insertion of insufficient numbers of grafts or because of poor blood flow through the grafts. 相似文献
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C. R. Morton N. J. Rzechorzek J. D. Maman M. Kuramochi H. Sekiguchi R. Rambo Y. C. Sasaki O. R. Davies L. Pellegrini 《Open biology》2021,11(6)
The DNA repair factor CtIP has a critical function in double-strand break (DSB) repair by homologous recombination, promoting the assembly of the repair apparatus at DNA ends and participating in DNA-end resection. However, the molecular mechanisms of CtIP function in DSB repair remain unclear. Here, we present an atomic model for the three-dimensional architecture of human CtIP, derived from a multi-disciplinary approach that includes X-ray crystallography, small-angle X-ray scattering (SAXS) and diffracted X-ray tracking (DXT). Our data show that CtIP adopts an extended dimer-of-dimers structure, in agreement with a role in bridging distant sites on chromosomal DNA during the recombinational repair. The zinc-binding motif in the CtIP N-terminus alters dynamically the coiled-coil structure, with functional implications for the long-range interactions of CtIP with DNA. Our results provide a structural basis for the three-dimensional arrangement of chains in the CtIP tetramer, a key aspect of CtIP function in DNA DSB repair. 相似文献
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