Structural and functional properties of a yeast xylitol dehydrogenase, a Zn2+-containing metalloenzyme similar to medium-chain sorbitol dehydrogenases

Citation
R. Lunzer et al., Structural and functional properties of a yeast xylitol dehydrogenase, a Zn2+-containing metalloenzyme similar to medium-chain sorbitol dehydrogenases, BIOCHEM J, 336, 1998, pp. 91-99
Citations number
40
Categorie Soggetti
Biochemistry & Biophysics
Journal title
BIOCHEMICAL JOURNAL
ISSN journal
02646021 → ACNP
Volume
336
Year of publication
1998
Part
1
Pages
91 - 99
Database
ISI
SICI code
0264-6021(19981115)336:<91:SAFPOA>2.0.ZU;2-J
Abstract
The NAD(+)-dependent xylitol dehydrogenase from the xylose-assimilating yea st Galactocandida mastotermitis has been purified in high yield (80 %) and characterized. Xylitol dehydrogenase is a heteronuclear multimetal protein that forms homotetramers and contains 1 mol of Zn2+ ions and 6 mot of Mg2ions per mol of 37.4 kDa protomer. Treatment with chelating agents such as EDTA results in the removal of the Zn2+ ions with a concomitant loss of enz yme activity. The Mg2+ ions are not essential for activity and are removed by chelation or extensive dialysis without affecting the stability of the e nzyme. Results of initial velocity studies at steady state for D-sorbitol o xidation and D-fructose reduction together with the characteristic patterns of product inhibition point to a compulsorily ordered Theorell-Chance mech anism of xylitol dehydrogenase in which coenzyme binds first and leaves las t. At pH 7.5, the binding of NADH (K-1 approximate to 10 mu M) is approx. 8 0-fold tighter than that of NAD(+). Polyhydroxyalcohols require at least fi ve carbon atoms to be good substrates of xylitol dehydrogenase, and the C-2 (S), C-3 (R) and C-4 (A) configuration is preferred. Therefore xylitol deh ydrogenase shares structural and functional properties with medium-chain so rbitol dehydrogenases.