BINDING-AFFINITY OF BICARBONATE AND FORMATE IN HERBICIDE-RESISTANT D1 MUTANTS OF SYNECHOCOCCUS SP PCC-7942

被引:14
作者
CAO, J
OHAD, N
HIRSCHBERG, J
XIONG, J
GOVINDJEE
机构
[1] UNIV ILLINOIS,DEPT PLANT BIOL,505 S GOODWIN AVE,265 MORRILL HALL,URBANA,IL 61801
[2] UNIV ILLINOIS,DIV BIOPHYS,URBANA,IL 61801
[3] HEBREW UNIV JERUSALEM,DEPT GENET,IL-91904 JERUSALEM,ISRAEL
关键词
BICARBONATE EFFECT; CYANOBACTERIUM; D1; PROTEIN; HERBICIDE-RESISTANCE; PHOTOSYSTEM-II; (SYNECHOCOCCUS SP PCC-7942);
D O I
10.1007/BF00029814
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
We examined the effects of mutations at amino acid residues S264 and F255 in the D1 protein on the binding affinity of the stimulatory anion bicarbonate and inhibitory anion formate in Photosystem II (PS II) in Synechococcus sp. PCC 7942. Measurements on the rates of oxygen evolution in the wild type and mutant cells in the presence of different concentrations of formate with a fixed bicarbonate concentration and vice versa, analyzed in terms of an equilibrium activator-inhibitor model, led to the conclusion that the equilibrium dissociation constant for bicarbonate is increased in the mutants, while that of the formate remains unchanged (11 +/- 0.5 mM). The hierarchy of the equilibrium dissociation constant for bicarbonate (highest to lowest, +/-2 muM) was: D1-F255L/S264A (46 muM) > D1-F255Y/S264A (31 muM) is similar to D1-S264A (34 muM) is similar to D1-F255Y (33 muM) > wild type (25 muM). The data suggest the importance of D1-S264 and D1-F255 in the bicarbonate binding niche. A possible involvement of bicarbonate and these two residues in the protonation of Q(B)-, the reduced secondary plastoquinone of PS II, in the D1 protein is discussed.
引用
收藏
页码:397 / 408
页数:12
相关论文
共 68 条
[31]  
HIRSCHBERG J, 1987, Z NATURFORSCH C, V42, P758
[32]   DIFFERENTIAL EFFICIENCY OF PHOTOSYNTHETIC OXYGEN EVOLUTION IN FLASHING LIGHT IN TRIAZINE-RESISTANT AND TRIAZINE-SUSCEPTIBLE BIOTYPES OF SENECIO-VULGARIS L [J].
HOLT, JS ;
RADOSEVICH, SR ;
STEMLER, AJ .
BIOCHIMICA ET BIOPHYSICA ACTA, 1983, 722 (02) :245-255
[33]   PREDICTED EFFECTS ON HERBICIDE BINDING OF AMINO-ACID SUBSTITUTIONS IN THE D1 PROTEIN OF PHOTOSYSTEM-II [J].
HOROVITZ, A ;
OHAD, N ;
HIRSCHBERG, J .
FEBS LETTERS, 1989, 243 (02) :161-164
[34]  
JOLIOT A, 1964, CR HEBD ACAD SCI, V258, P4622
[35]   CORRELATION BETWEEN THE BINDING OF FORMATE AND DECREASED RATES OF CHARGE-TRANSFER THROUGH THE PHOTOSYSTEM-II QUINONES [J].
JURSINIC, P ;
STEMLER, A .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1986, 43 (02) :205-212
[36]   HIGH-RATES OF PHOTOSYSTEM-II ELECTRON FLOW OCCUR IN MAIZE THYLAKOIDS WHEN THE HIGH-AFFINITY BINDING-SITE FOR BICARBONATE IS EMPTY OF ALL MONOVALENT ANIONS OR HAS BICARBONATE BOUND [J].
JURSINIC, PA ;
STEMLER, A .
BIOCHIMICA ET BIOPHYSICA ACTA, 1992, 1098 (03) :359-367
[37]  
KHANNA R, 1981, BIOCHIM BIOPHYS ACTA, V634, P195
[38]  
Mathis P., 1981, The biochemistry of plants. A comprehensive treatise. Volume 8. Photosynthesis., P97
[39]   A SIMILAR STRUCTURE OF THE HERBICIDE BINDING-SITE IN PHOTOSYSTEM-II OF PLANTS AND CYANOBACTERIA IS DEMONSTRATED BY SITE SPECIFIC MUTAGENESIS OF THE PSBA GENE [J].
OHAD, N ;
HIRSCHBERG, J .
PHOTOSYNTHESIS RESEARCH, 1990, 23 (01) :73-79
[40]  
OHAD N, 1990, Z NATURFORSCH C, V45, P402