THE EFFECTS OF SULFITE OR NITRATE ON TURNOVER-DEPENDENT INHIBITION IN THE ATPASE FROM HALOBACTERIUM-SACCHAROVORUM ARE RELATED TO THE BINDING OF THE 2ND METAL-ION

被引:11
作者
SCHOBERT, B
机构
[1] Department of Physiology and Biophysics, University of California, Irvine
关键词
D O I
10.1021/bi00211a032
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The turnover-dependent inhibition of the Halobacterium saccharovorum ATPase is dependent on two parameters: pH and the concentration of the divalent cation present. At pH 6 and 1 mM Mn2+ the inhibition is small, but increases steeply with 6 mM Mn2+. In contrast, at pH 8.5 the inhibition is more than 90% at 1 mM Mn2+, and higher concentrations have little additional effect. A relationship between the occupation of a second metal ion binding site and turnover-dependent inhibition was postulated previously [Schobert, B. (1992) J. Biol. Chem. 267, 10252-10257]. The results lead to a model where this site (X-) can alternatively bind protons (XH), depending on the pH and the free metal ion concentration. The pK(a) of XH is estimated to be 9. The turnover-dependent inhibition is diminished by bisulfite, whereas sulfite is ineffective. The kinetics show that bisulfite and metal ion compete for the same site. In the proposed model, bisulfite binds via its negative charge to the site from which P(i) was released and is arranged such as to interact with X- via its protonated group (X-HSO3-). In this way, formation of the inhibited enzyme species XMe is prevented. Inhibitory anions like nitrate, which carry a permanent dipole as a common feature, show uncompetitive inhibition vs metal ions. The data are compatible with a model in which these inhibitors bind to the vacant P(i) site and position their positive charges near XH. As a consequence, the pK(a) of XH is decreased and X- is stabilized, which in turn favors the formation of XMe. The downshift in pK(a) was calculated to be 0.7 pH unit.
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页码:13204 / 13211
页数:8
相关论文
共 35 条
[11]   TIGHTLY BOUND ADENOSINE-DIPHOSPHATE, WHICH INHIBITS THE ACTIVITY OF MITOCHONDRIAL F1-ATPASE, IS LOCATED AT THE CATALYTIC SITE OF THE ENZYME [J].
DROBINSKAYA, IY ;
KOZLOV, IA ;
MURATALIEV, MB ;
VULFSON, EN .
FEBS LETTERS, 1985, 182 (02) :419-424
[12]   ON THE MECHANISM OF SULFITE ACTIVATION OF CHLOROPLAST THYLAKOID ATPASE AND THE RELATION OF ADP TIGHTLY BOUND AT A CATALYTIC SITE TO THE BINDING CHANGE MECHANISM [J].
DU, ZY ;
BOYER, PD .
BIOCHEMISTRY, 1990, 29 (02) :402-407
[13]   CONTROL OF ATP HYDROLYSIS BY ADP BOUND AT THE CATALYTIC SITE OF CHLOROPLAST ATP SYNTHASE AS RELATED TO PROTONMOTIVE FORCE AND MG-2+ [J].
DU, ZY ;
BOYER, PD .
BIOCHEMISTRY, 1989, 28 (02) :873-879
[14]  
FELDMAN RI, 1985, J BIOL CHEM, V260, P3088
[15]  
GUERRERO KJ, 1990, J BIOL CHEM, V265, P16280
[16]   RELATIONS BETWEEN DIVALENT-CATION BINDING AND ATPASE ACTIVITY IN COUPLING FACTOR FROM CHLOROPLAST [J].
HOCHMAN, Y ;
LANIR, A ;
CARMELI, C .
FEBS LETTERS, 1976, 61 (02) :255-259
[17]  
HOCHMAN Y, 1981, Biochemistry, V20, P6287, DOI 10.1021/bi00525a001
[18]   THE EFFECT OF INORGANIC PYROPHOSPHATE ON THE ACTIVITY AND PI-BINDING PROPERTIES OF MITOCHONDRIAL F1-ATPASE [J].
KALASHNIKOVA, TY ;
MILGROM, YM ;
MURATALIEV, MB .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1988, 177 (01) :213-218
[19]   PURIFICATION AND PROPERTIES OF THE ATPASE SOLUBILIZED FROM MEMBRANES OF AN ACIDOTHERMOPHILIC ARCHAEBACTERIUM, SULFOLOBUS-ACIDOCALDARIUS [J].
KONISHI, J ;
WAKAGI, T ;
OSHIMA, T ;
YOSHIDA, M .
JOURNAL OF BIOCHEMISTRY, 1987, 102 (06) :1379-1387
[20]   IMPROVED ASSAY FOR NANOMOLE AMOUNTS OF INORGANIC-PHOSPHATE [J].
LANZETTA, PA ;
ALVAREZ, LJ ;
REINACH, PS ;
CANDIA, OA .
ANALYTICAL BIOCHEMISTRY, 1979, 100 (01) :95-97