K. Kogure et al., ALTERATION OF ENZYME FUNCTION OF THE TYPE-II HEXOKINASE C-TERMINAL HALF ON REPLACEMENTS OF RESTRICTED REGIONS BY CORRESPONDING REGIONS OF GLUCOKINASE, The Journal of biological chemistry, 271(25), 1996, pp. 15230-15236
To know the structural properties responsible for the enzymic activity
of the 50-kDa C-terminal half of type II hexokinase (HKII-C) derived
from rat hepatoma cell line AH130, we constructed cDNAs of HKII-C and
its recombinants in which restricted regions containing highly conserv
ed sequences, referred to as regions 2 and 3, were replaced by the cor
responding regions of glucokinase. nase. The binding domains of ATP an
d glucose were proposed to exist in these regions, respectively, Then,
the HKII-C and chimera HKII-Cs were overexpressed in Escherichia coli
BL21(DE3)pLysS. They all exhibited hexokinase activity, and their act
ivities were inhibited by glucose-8-phosphate (Glc-6-P) competitively
for ATP and uncompetitively for glucose. The replacement of region 2 o
f HKII-C by the corresponding region of glucokinase increased the affi
nity for glucose and decreased the affinity for Glc-6-P, but it did no
t significantly affect the affinity for ATP. In contrast, the replacem
ent of region 3 did not cause an appreciable change in hexokinase acti
vity. These findings suggest that region 2 is associated with the bind
ing of ATP and Glc-6-P, and that the latter binding site is located cl
ose to the ATP binding site. In addition, region 2 was suggested to be
directly related with the binding of glucose and other hexoses.