L. Varin et al., CHIMERIC FLAVONOL SULFOTRANSFERASES DEFINE A DOMAIN RESPONSIBLE FOR SUBSTRATE AND POSITION SPECIFICITIES, The Journal of biological chemistry, 270(21), 1995, pp. 12498-12502
The pFST3 and pFST4' cDNAs encode flavonol sulfotransferases (ST) that
are 69% identical in amino acid sequence yet exhibit strict substrate
and position specificities. To determine the domain responsible for t
he properties of the flavonol STs, several chimeric flavonol STs were
constructed by the reciprocal exchange of DNA fragments derived from t
he plasmids pFST3 and pFST4' and by the expression of the correspondin
g chimeric proteins in Escherichia coli. The chimeric enzymes were enz
ymatically active even though their activities were reduced compared t
o the parent enzymes. The specificity of the resulting hybrid proteins
indicates that an interval of the flavonol STs spanning amino acids 9
2-194 of the flavonol 3-ST sequence contains the determinant of the su
bstrate and position preferences. From the comparison of the amino aci
d sequences between plant and animal STs, this interval can be subdivi
ded into a highly conserved region corresponding to positions 134-152
of the flavonol 3-ST, flanked by two regions of high divergence from 9
8 to 110 and 153 to 170. In view of the similarities in length and hyd
ropathic profiles as well as the presence of four conserved regions be
tween plant and animal STs, the results of these experiments suggest t
hat this interval is involved in the recognition of substrates and/or
catalysis in all STs.