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叶绿体H⁺-ATP酶催化位点与2-硝烯基-ADP的共价修饰。催化位点1(紧密型)以及催化位点1和2一起发生修饰,会损害ATP合成和ATP水解的单位点及多位点催化作用。

Covalent modification of the catalytic sites of the H+-ATPase from chloroplasts and 2-nitreno-ADP. Modification of the catalytic site 1 (tight) and catalytic sites 1 and 2 together impairs both uni-site and multi-site catalysis of ATP synthesis and ATP hydrolysis.

作者信息

Possmayer F E, Hartog A F, Berden J A, Gräber P

机构信息

Institut für Physikalische Chemie, Universität Freiburg, Germany.

出版信息

Biochim Biophys Acta. 2000 Jul 20;1459(1):202-17.

Abstract

After isolation and purification, the H+-ATPase from chloroplasts, CF0F1, contains one endogenous ADP at a catalytic site, and two endogenous ATP at non-catalytic sites. Incubation with 2-azido-[alpha-32P]ADP leads to tight binding of azidonucleotides. Free nucleotides were removed by three consecutive passages through centrifugation columns, and upon UV-irradiation most of the label was covalently bound. The labelled enzyme was digested by trypsin, the peptides were separated by ion exchange chromatography into nitreno-AMP, nitreno-ADP and nitreno-ATP labelled peptides, and these were then separated by reversed phase chromatography. Amino acid sequence analysis was used to identify the type of the nucleotide binding site. After incubation with 2-azido-[alpha-32P]ADP, the covalently bound label was found exclusively at beta-Tyr-362. Incubation conditions with 2-azido-[alpha-32P]ADP were varied, and conditions were found which allow selective binding of the label to different catalytic sites, designated as 1, 2 and 3 in order of decreasing affinity for ADP, and either catalytic site 1 or catalytic sites 1 and 2 together were labelled. For measurements of the degree of inhibition by covalent modification, CF0F1 was reconstituted into phosphatidylcholine liposomes, and the membranes were energised by an acid-base transition in the presence of a K+/valinomycin diffusion potential. The rate of ATP synthesis was 50-80 s(-1), and the rate of ATP hydrolysis was 15 s(-1) measured under multi-site conditions. Covalent modification of either catalytic site 1 or catalytic sites 1 and 2 together inhibited ATP synthesis and ATP hydrolysis equally, the degree of inhibition being proportional to the degree of modification. Extrapolation to complete inhibition indicates that derivatisation of catalytic site 1 leads to complete inhibition when 1 mol 2-nitreno-ADP is bound per mol CF0F1. Derivatisation of catalytic sites 1 and 2 together extrapolates to complete inhibition when 2 mol 2-nitreno-ADP are bound per CF0F1. The rate of ATP synthesis and the rate of ATP hydrolysis were measured as a function of the substrate concentration from multi-site to uni-site conditions with derivatised CF0F1 and with non-derivatised CF0F1. ATP synthesis and ATP hydrolysis under uni-site and under multi-site condition were inhibited by covalent modification of either catalytic site 1 or catalytic sites 1 and 2 together. The results indicate that derivatisation of site 1 inhibits activation of the enzyme and that cooperative interactions occur at least between the catalytic sites 2 and 3.

摘要

经过分离和纯化后,来自叶绿体的H⁺-ATP酶CF₀F₁在一个催化位点含有一个内源性ADP,在非催化位点含有两个内源性ATP。与2-叠氮基-[α-³²P]ADP一起温育会导致叠氮核苷酸紧密结合。通过连续三次通过离心柱去除游离核苷酸,经紫外线照射后,大部分标记物共价结合。用胰蛋白酶消化标记的酶,通过离子交换色谱将肽分离成含氮烯基-AMP、含氮烯基-ADP和含氮烯基-ATP的标记肽,然后通过反相色谱进一步分离。氨基酸序列分析用于鉴定核苷酸结合位点的类型。与2-叠氮基-[α-³²P]ADP温育后,共价结合的标记物仅在β-酪氨酸-362处被发现。改变与2-叠氮基-[α-³²P]ADP的温育条件,发现了一些条件,这些条件允许标记物选择性地结合到不同的催化位点,按照对ADP亲和力降低的顺序将其指定为1、2和3,并且催化位点1或催化位点1和2一起被标记。为了测量共价修饰的抑制程度,将CF₀F₁重组到磷脂酰胆碱脂质体中,并且在存在K⁺/缬氨霉素扩散电位的情况下通过酸碱转变使膜获得能量。在多位点条件下测得的ATP合成速率为50 - 80 s⁻¹,ATP水解速率为15 s⁻¹。催化位点1或催化位点1和2一起的共价修饰同样抑制ATP合成和ATP水解,抑制程度与修饰程度成正比。外推至完全抑制表明,当每摩尔CF₀F₁结合1摩尔2-含氮烯基-ADP时,催化位点1的衍生化导致完全抑制。当每摩尔CF₀F₁结合2摩尔2-含氮烯基-ADP时,催化位点1和2一起的衍生化外推至完全抑制。用衍生化的CF₀F₁和未衍生化的CF₀F₁测量从多位点到单位点条件下ATP合成速率和ATP水解速率作为底物浓度的函数。单位点和多位点条件下的ATP合成和ATP水解都受到催化位点1或催化位点1和2一起的共价修饰的抑制。结果表明,位点1的衍生化抑制酶的激活,并且至少在催化位点2和3之间发生协同相互作用。

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