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EC Number Crystallization (Commentary)
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2-
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2a dimeric and a octameric isoform
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2brain-type isoform
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2crystal structure analysis of muscle cytosolic isozyme
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2crystal structure analysis of muscle-type cytosolic isozyme crystallized with transition state analogue complex
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2crystal structure analysis of muscle-type cytosolic isozyme, and of ubiquitous mitochondrial isozyme, and of cytosolic brain type isozyme
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2crystal structure analysis of the cytosolic brain isozyme, and of the cardiac sarcomeric mitochondrial crystallized free or bound to MgATP or transition state analogue complex
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2crystallized at 22°C using PEG 4000 as a precipitant. X-ray diffraction data are collected to 2.2 A resolution using synchrotron radiation. The crystals belong to the tetragonal space group P4(3)2(1)2, with cell parameters of a = b = 97.963, c = 164.312 A, and alpha = beta = gamma = 90°. The symmetric unit contains two molecules of creatine kinase
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2crystals of the mutant G268N are successfully raised to study the fine structural change around the active site. Results show that one residue mutation in can cause the mutant G268N to exhibit cold-adapted enzyme properties comparable to those of Cyprinus carpio M1-creatine kinase
Display the word mapDisplay the reaction diagram Show all sequences 2.7.3.2in complex with a transistion-state analog
Results 1 - 10 of 17 > >>