TY - JOUR
T1 - 3-Hydroxy-3-methylglutaryl-CoA lyase
T2 - Expression and isolation of the recombinant human enzyme and investigation of a mechanism for regulation of enzyme activity
AU - Roberts, Jacqueline R.
AU - Narasimhan, Chakravarthy
AU - Hruz, Paul W.
AU - Mitchell, Grant A.
AU - Miziorko, Henry M.
PY - 1994/7/8
Y1 - 1994/7/8
N2 - cDNA encoding the mature form of human hydroxy-methylglutaryl-CoA (HMG- CoA) lyase, a mitochondrial matrix protein, has been used to prepare expression plasmids appropriate for production of this protein in Escherichia coli. Using a T7 RNA polymerase-based pET system, HMG-CoA lyase was overexpressed but largely recovered in an insoluble, catalytically inactive form. In contrast, an expression plasmid (pTrcHL-1), derived from pTrc99a, supported production of soluble, active enzyme. A synthetic oligonucleotide cassette was employed to produce an enzyme variant in which cysteine was replaced by serine at position 323. Both wild-type and C323S HMG-CoA lyases were isolated in homogeneous form and characterized. The function of Cys-323 in influencing catalytic activity in vitro has been investigated by comparing the response of wild-type and C323S lyases to oxidation and reduction. Additionally, the consequences of treatment of these enzymes with the sulfhydryl-directed bifunctional reagent, o-phenylenedimaleimide have been determined. The results support the hypothesis that a thiol/disulfide exchange mechanism affects enzyme activity in vitro and indicate that Cys- 323 residues on adjacent subunits of the homodimeric native enzyme are suitably positioned to form an intersubunit cross-link upon oxidative inactivation and disulfide formation.
AB - cDNA encoding the mature form of human hydroxy-methylglutaryl-CoA (HMG- CoA) lyase, a mitochondrial matrix protein, has been used to prepare expression plasmids appropriate for production of this protein in Escherichia coli. Using a T7 RNA polymerase-based pET system, HMG-CoA lyase was overexpressed but largely recovered in an insoluble, catalytically inactive form. In contrast, an expression plasmid (pTrcHL-1), derived from pTrc99a, supported production of soluble, active enzyme. A synthetic oligonucleotide cassette was employed to produce an enzyme variant in which cysteine was replaced by serine at position 323. Both wild-type and C323S HMG-CoA lyases were isolated in homogeneous form and characterized. The function of Cys-323 in influencing catalytic activity in vitro has been investigated by comparing the response of wild-type and C323S lyases to oxidation and reduction. Additionally, the consequences of treatment of these enzymes with the sulfhydryl-directed bifunctional reagent, o-phenylenedimaleimide have been determined. The results support the hypothesis that a thiol/disulfide exchange mechanism affects enzyme activity in vitro and indicate that Cys- 323 residues on adjacent subunits of the homodimeric native enzyme are suitably positioned to form an intersubunit cross-link upon oxidative inactivation and disulfide formation.
UR - http://www.scopus.com/inward/record.url?scp=0028241379&partnerID=8YFLogxK
M3 - Article
C2 - 8027038
AN - SCOPUS:0028241379
SN - 0021-9258
VL - 269
SP - 17841
EP - 17846
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 27
ER -