Department of Botany, Duke University, Durham, North Carolina 27706.
Plant Physiol. 1983 Jun;72(2):339-44. doi: 10.1104/pp.72.2.339.
The binding of radioactively labeled butyl gallate to sucrose gradient-purified mung bean (Vigna radiata L.) mitochondria was studied. Titrations showed the binding of [(14)C]butyl gallate to the mitochondria consisted of both reversible and irreversible components. The reversible component bound with a dissociation constant of approximately 1 micromolar which was comparable to the observed inhibition constant for the inhibition of the alternative pathway by butyl gallate. The reversible binding of labeled butyl gallate was also prevented by addition of excess, unlabeled salicylhydroxamic acid. The concentration of binding sites associated with reversible butyl gallate binding was around 0.5 nanomole per milligram of mitochondrial protein. These results were consistent with the reversible binding site being associated with the butyl gallate site of inhibition of the cyanide-resistant, alternative electron transfer pathway in mung bean mitochondria. In addition to the reversible butyl gallate binding site, a nonspecific, irreversible association of butyl gallate with the mitochondrial membrane was observed. The latter binding did not readily saturate at high butyl gallate concentrations and was not correlated with butyl gallate inhibition of the alternative pathway.
我们研究了放射性标记丁基没食子酸酯与蔗糖梯度纯化的绿豆(Vigna radiata L.)线粒体的结合情况。滴定结果表明,[(14)C]丁基没食子酸酯与线粒体的结合由可逆和不可逆两部分组成。可逆部分的解离常数约为 1 微摩尔,与丁基没食子酸酯抑制替代途径的观察抑制常数相当。添加过量未标记的水杨羟肟酸也可防止标记的丁基没食子酸酯的可逆结合。与可逆丁基没食子酸酯结合相关的结合位点浓度约为每毫克线粒体蛋白 0.5 纳摩尔。这些结果与可逆结合位点与丁基没食子酸酯抑制绿豆线粒体氰化物抗性替代电子传递途径的抑制部位相关。除了可逆的丁基没食子酸酯结合位点外,还观察到丁基没食子酸酯与线粒体膜的非特异性、不可逆结合。后者的结合在高丁基没食子酸酯浓度下不易饱和,并且与丁基没食子酸酯抑制替代途径无关。