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腺嘌呤核苷酸在线粒体F1-ATP酶的一个非催化位点结合,在ATP水解过程中加速了镁离子和ADP依赖性失活。

Adenine nucleotide binding at a noncatalytic site of mitochondrial F1-ATPase accelerates a Mg(2+)- and ADP-dependent inactivation during ATP hydrolysis.

作者信息

Murataliev M B

机构信息

Molecular Biology Institute, University of California, Los Angeles 90024-1570.

出版信息

Biochemistry. 1992 Dec 29;31(51):12885-92. doi: 10.1021/bi00166a025.

Abstract

The evidence is presented that the ADP- and Mg(2+)-dependent inactivation of MF1-ATPase during MgATP hydrolysis requires binding of ATP at two binding sites: one is catalytic and the second is noncatalytic. Binding of the noncatalytic ATP increases the rate of the inactive complex formation in the course of ATP hydrolysis. The rate of the enzyme inactivation during ATP hydrolysis depends on the medium Mg2+ concentration. High Mg2+ inhibits the steady-state activity of MF1-ATPase by increasing the rate of formation of inactive enzyme-ADP-Mg2+ complex, thereby shifting the equilibrium between active and inactive enzyme forms. The Mg2+ needed for MF1-ATPase inactivation binds from the medium independent from the MgATP binding at either catalytic or noncatalytic sites. The inhibitory ADP molecule arises at the MF1-ATPase catalytic site as a result of MgATP hydrolysis. Exposure of the native MF1-ATPase with bound ADP at a catalytic site to 1 mM Mg2+ prior to assay inactivates the enzymes with kinact 24 min-1. The maximal inactivation rate during ATP hydrolysis at saturating MgATP and Mg2+ does not exceed 10 min-1. The results show that the rate-limiting step of the MF1-ATPase inactivation during ATP hydrolysis with excess Mg2+ precedes binding of Mg2+ and likely is the rate of formation of enzyme with ADP bound at the catalytic site without bound P(i). This complex binds Mg2+ resulting in inactive MF1-ATPase.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

有证据表明,在MgATP水解过程中,MF1 - ATP酶依赖ADP和Mg(2+)的失活需要ATP在两个结合位点结合:一个是催化位点,另一个是非催化位点。非催化性ATP的结合会增加ATP水解过程中无活性复合物的形成速率。ATP水解过程中酶的失活速率取决于介质中Mg2+的浓度。高浓度Mg2+通过增加无活性酶 - ADP - Mg2+复合物的形成速率来抑制MF1 - ATP酶的稳态活性,从而改变活性和无活性酶形式之间的平衡。MF1 - ATP酶失活所需的Mg2+从介质中结合,与催化或非催化位点的MgATP结合无关。抑制性ADP分子是MgATP水解在MF1 - ATP酶催化位点产生的结果。在测定前,将在催化位点结合有ADP的天然MF1 - ATP酶暴露于1 mM Mg2+会使酶失活,失活常数kinact为24 min-1。在饱和MgATP和Mg2+条件下ATP水解过程中的最大失活速率不超过10 min-1。结果表明,在过量Mg2+存在下ATP水解过程中MF1 - ATP酶失活的限速步骤先于Mg2+的结合,可能是催化位点结合有ADP且无Pi结合的酶的形成速率。这种复合物结合Mg2+导致MF1 - ATP酶无活性。(摘要截短至250字)

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