STRUCTURAL-CHANGES OF CREATINE-KINASE UPON SUBSTRATE-BINDING

Citation
M. Forstner et al., STRUCTURAL-CHANGES OF CREATINE-KINASE UPON SUBSTRATE-BINDING, Biophysical journal, 75(2), 1998, pp. 1016-1023
Citations number
31
Categorie Soggetti
Biophysics
Journal title
ISSN journal
00063495
Volume
75
Issue
2
Year of publication
1998
Pages
1016 - 1023
Database
ISI
SICI code
0006-3495(1998)75:2<1016:SOCUS>2.0.ZU;2-3
Abstract
Small-angle x-ray scattering was used to investigate structural change s upon binding of individual substrates or a transition state analog c omplex (TSAC; Mg-ADP, creatine, and KNO3) to creatine kinase (CK) isoe nzymes (dimeric muscle-type (M)-CK and octameric mitochondrial (MI)-CK ) and monomeric arginine kinase (AK). Considerable changes in the shap e and the size of the molecules occurred upon binding of Mg-nucleotide or TSAC, The radius of gyration of MI-CK was reduced from 55.6 Angstr om (free enzyme) to 48.9 Angstrom (enzyme plus Mg-ATP) and to 48.2 Ang strom (enzyme plus TSAC), M-CK showed similar changes from 28.0 Angstr om (free enzyme) to 25.6 Angstrom (enzyme plus Mg-ATP) and to 25.5 Ang strom (enzyme plus TSAC). Creatine alone did not lead to significant c hanges in the radii of gyration, nor did free ATP or ADP. AK also show ed a change of the radius of gyration from 21.5 Angstrom (free enzyme) to 19.7 Angstrom (enzyme plus Mg-ATP), whereas with arginine alone on ly a minor change could be observed. The primary change in structure a s seen with monomeric AK seems to be a Mg-nucleotide-induced domain mo vement relative to each other, whereas the effect of substrate may be of local order only. In CK, however, additional movements have to be i nvolved.