PURIFICATION AND CHARACTERIZATION OF ACETYL-COENZYME A CARBOXYLASE FROM DICLOFOP-RESISTANT AND DICLOFOP-SUSCEPTIBLE LOLIUM-MULTIFLORUM

被引:22
作者
EVENSON, KJ
GRONWALD, JW
WYSE, DL
机构
[1] UNIV MINNESOTA,DEPT AGRON & PLANT GENET,ST PAUL,MN 55108
[2] USDA ARS,PLANT SCI RES UNIT,ST PAUL,MN 55108
关键词
D O I
10.1104/pp.105.2.671
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Acetyl-coenzyme A carboxylase (ACCase) was purified >100-fold (specific activity 3.5 units mg(-1)) from leaf tissue of diclofop-resistant and -susceptible biotypes of Lolium multiflorom. As determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, the purified fractions from both biotypes contained a single 206-kD biotinylated polypeptide. The molecular mass of the native enzyme from both biotypes was approximately 520 kD. In some cases the native dimer from both biotypes dissociated during gel filtration to form a subunit or approximately 224 kD. The inclusion of 5% (w/v) polyethylene glycol 3350 (PEG) in the elution buffer prevented this dissociation. Steady-state substrate kinetics were analyzed in both the presence and absence of 5% PEG. For ACCase from both biotypes, addition of PEG increased the velocity 22% and decreased the apparent K-m values for acetyl-coenzyme A (acetyl-CoA), but increased the K-m values for bicarbonate and ATP. In the presence of PEG, the K-m values for bicarbonate and ATP were approximately 35% higher for the enzyme from the susceptible biotype compared with the resistant enzyme. In the absence of PEG, no differences in apparent K-m values were observed for the enzymes from the two biotypes. Inhibition constants (K-i app) were determined for CoA, malonyl-CoA, and diclofop. CoA was an S-hyperbolic (slope replots)-1-hyperbolic (intercept replots) noncompetitive inhibitor with respect to acetyl-CoA, with K-i app values of 711 and 795 mu M for enzymes from the resistant and susceptible biotypes, respectively. Malonyl-CoA competitively inhibited both enzymes (versus acetyl-CoA) with K-i app values of 140 and 104 mu M for ACCase from resistant and susceptible biotypes, respectively. Diclofop was a linear noncompetitive inhibitor of ACCase from the susceptible biotype and a nonlinear, or S-hyperbolic-1-hyperbolic, noncompetitive inhibitor of ACCase from the resistant biotype. For ACCase from the susceptible biotype the slope (K-is) and intercept (K-ii) inhibition constants for diclofop versus acetyl-CoA were 0.08 and 0.44 mu M, respectively. ACCase from the resistant biotype had a K-i app value of 6.5 mu M. At a subsaturating acetyl-CoA concentration of 50 mu M, the Hill coefficients for diclofop binding were 0.61 and 1.2 for ACCase from the resistant and susceptible biotypes, respectively. The Hill coefficients for diclofop binding and the inhibitor replots suggest that the resistant form of ACCase exhibits negative cooperativity in binding diclofop. However, the possibility that the nonlinear inhibition of ACCase activity by diclofop in the enzyme fraction isolated from the resistant biotype is due to the presence of both resistant and susceptible forms of ACCase cannot be excluded.
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页码:671 / 680
页数:10
相关论文
共 41 条
[1]   MECHANISM OF INHERITANCE OF DICLOFOP RESISTANCE IN ITALIAN RYEGRASS (LOLIUM-MULTIFLORUM) [J].
BETTS, KJ ;
EHLKE, NJ ;
WYSE, DL ;
GRONWALD, JW ;
SOMERS, DA .
WEED SCIENCE, 1992, 40 (02) :184-189
[2]   A RAPID, SENSITIVE METHOD FOR DETECTION OF ALKALINE-PHOSPHATASE CONJUGATED ANTI-ANTIBODY ON WESTERN BLOTS [J].
BLAKE, MS ;
JOHNSTON, KH ;
RUSSELLJONES, GJ ;
GOTSCHLICH, EC .
ANALYTICAL BIOCHEMISTRY, 1984, 136 (01) :175-179
[3]  
BOSCA L, 1985, J BIOL CHEM, V260, P2100
[4]   MODIFIED DIFFUSION BLOTTING FOR RAPID AND EFFICIENT PROTEIN TRANSFER WITH PHASTSYSTEM [J].
BRAUN, W ;
ABRAHAM, R .
ELECTROPHORESIS, 1989, 10 (04) :249-253
[5]   INHIBITION OF PLANT ACETYL-COENZYME A CARBOXYLASE BY THE HERBICIDES SETHOXYDIM AND HALOXYFOP [J].
BURTON, JD ;
GRONWALD, JW ;
SOMERS, DA ;
CONNELLY, JA ;
GENGENBACH, BG ;
WYSE, DL .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1987, 148 (03) :1039-1044
[6]   INHIBITION OF CORN ACETYL-COA CARBOXYLASE BY CYCLOHEXANEDIONE AND ARYLOXYPHENOXYPROPIONATE HERBICIDES [J].
BURTON, JD ;
GRONWALD, JW ;
SOMERS, DA ;
GENGENBACH, BG ;
WYSE, DL .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 1989, 34 (01) :76-85
[7]   KINETICS OF INHIBITION OF ACETYL-COENZYME-A CARBOXYLASE BY SETHOXYDIM AND HALOXYFOP [J].
BURTON, JD ;
GRONWALD, JW ;
KEITH, RA ;
SOMERS, DA ;
GENGENBACH, BG ;
WYSE, DL .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 1991, 39 (02) :100-109
[8]  
CHARLES D J, 1986, Phytochemistry (Oxford), V25, P55
[9]  
CLELAND WW, 1970, ENZYMES, V3, P1
[10]   NEGATIVE COOPERATIVITY IN ENZYME ACTION . BINDING OF DIPHOSPHOPYRIDINE NUCLEOTIDE TO GLYCERALDEHYDE 3-PHOSPHATE DEHYDROGENASE [J].
CONWAY, A ;
KOSHLAND, DE .
BIOCHEMISTRY, 1968, 7 (11) :4011-&