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纯化的固氮酶蛋白对ATP和ADP末端磷酸基团交换的催化作用。

Catalysis of exchange of terminal phosphate groups of ATP and ADP by purified nitrogenase proteins.

作者信息

Miller R W, Robson R L, Yates M G, Eady R R

出版信息

Can J Biochem. 1980 Jul;58(7):542-8. doi: 10.1139/o80-074.

Abstract

A crude Azotobacter nitrogenase complex contained a highly active adenylate kinase which caused rapid equilibration of AMP, ADP, and ATP. Purified molybdenum-iron protein preparations also contained measurable adenylate kinase activity which could be removed by adsorption and elution from hydroxylapatite. Independent of adenylate kinase, the highly purified molybdenum-iron protein from both Klebsiella pneumoniae and Azotobacter chroococcum catalyzed the exchange of [32P]orthophosphate with the terminal phosphate of ATP or ADP. The exchange labeling of ATP was stimulated by ferricyanide ion due to the inhibition of ATP hydrolysis linked to substrate reductions which cannot occur in the absence of reductant. This exchange reaction is responsible for reported ATP synthesis by crude nitrogenase preparations. Binding of ATP labeled with 32P in the terminal phosphate group was measured directly with concentrated solutions of the molybdenum-iron nitrogenase protein from K. pneumoniae by the column gel filtration method. The protein was saturated with ATP at a calculated ratio of 4.0 +/- 0.3 mol ATP/mol protein; half-saturation of 220 microM protein occurred at 600 +/- 100 microM. The interactions between adenine nucleotides and the molybdenum-iron protein suggest the involvement of the nucleotides in a role distinct from the established reactions with the iron protein of the nitrogenase complex. A dual role for ATP in the reduction of dinitrogen by isolated nitrogenase proteins would be consistent with the existence of binding sites for ATP on both the iron and molybdenum-iron proteins.

摘要

一种粗制的固氮菌固氮酶复合物含有一种高活性的腺苷酸激酶,它能使AMP、ADP和ATP迅速达到平衡。纯化的钼铁蛋白制剂也含有可测量的腺苷酸激酶活性,这种活性可以通过羟基磷灰石吸附和洗脱去除。独立于腺苷酸激酶之外,来自肺炎克雷伯菌和褐球固氮菌的高度纯化的钼铁蛋白催化了[32P]正磷酸盐与ATP或ADP末端磷酸的交换。由于与底物还原相关的ATP水解受到抑制(在没有还原剂的情况下不会发生底物还原),铁氰化物离子刺激了ATP的交换标记。这种交换反应导致了粗制固氮酶制剂所报道的ATP合成。通过柱凝胶过滤法直接测量了肺炎克雷伯菌钼铁固氮酶蛋白浓溶液中末端磷酸基团标记有32P的ATP的结合情况。该蛋白以4.0±0.3摩尔ATP/摩尔蛋白的计算比例被ATP饱和;220微摩尔蛋白的半饱和状态在600±100微摩尔时出现。腺嘌呤核苷酸与钼铁蛋白之间的相互作用表明,核苷酸参与了一种与固氮酶复合物铁蛋白已确定的反应不同的作用。ATP在分离的固氮酶蛋白还原二氮过程中的双重作用与铁蛋白和钼铁蛋白上都存在ATP结合位点是一致的。

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