Carver M A, Humphrey K M, Patchett R A, Jones C W
Eur J Biochem. 1984 Feb 1;138(3):611-5. doi: 10.1111/j.1432-1033.1984.tb07958.x.
The effects of EDTA and related metal-chelating agents on the respiratory system of the methylotrophic bacterium Methylophilus methylotrophus have been investigated. EDTA completely inhibited whole cell methanol oxidase activity and concomitantly decreased the aerobic steady-state reduction level of cytochrome c, but only partially inhibited methanol dehydrogenase activity. Analysis of the inhibition kinetics of EDTA and other chelating agents on methanol oxidase activity indicated that they were effective in the order CDTA greater than EDTA greater than HEDTA greater than EGTA greater than EDDA, and that they inhibited in an uncompetitive manner. Inhibition by EDTA varied as a function of the ambient cell mass in the assay, and could be partly reversed by the addition of divalent cations. EDTA had no effect on the activity of solubilised methanol dehydrogenase. These and other results indicate that EDTA binds a divalent metal ion, probably Mg2+, which is involved in the functional association of methanol dehydrogenase with the respiratory membrane. This concept is discussed in terms of the electron transfer properties and spatial organisation of the terminal respiratory chain of M. methylotrophus.
已对乙二胺四乙酸(EDTA)及相关金属螯合剂对甲基营养型细菌嗜甲基甲基ophilus呼吸系统的影响进行了研究。EDTA完全抑制全细胞甲醇氧化酶活性,并同时降低细胞色素c的需氧稳态还原水平,但仅部分抑制甲醇脱氢酶活性。对EDTA和其他螯合剂对甲醇氧化酶活性的抑制动力学分析表明,它们的有效性顺序为环已二胺四乙酸(CDTA)>EDTA>羟乙基乙二胺三乙酸(HEDTA)>乙二醇双四乙酸(EGTA)>乙二胺二乙酸(EDDA),且它们以非竞争性方式抑制。EDTA的抑制作用随测定中环境细胞量的变化而变化,并且通过添加二价阳离子可部分逆转。EDTA对溶解的甲醇脱氢酶活性没有影响。这些及其他结果表明,EDTA结合了一种二价金属离子,可能是Mg2+,它参与甲醇脱氢酶与呼吸膜的功能关联。根据嗜甲基甲基ophilus末端呼吸链的电子传递特性和空间组织对这一概念进行了讨论。