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肌浆网Ca2+-ATP酶的ATP调节。无金属ATP和8-溴ATP以高亲和力结合到磷酸化ATP酶的催化位点,并加速去磷酸化。

ATP regulation of sarcoplasmic reticulum Ca2+-ATPase. Metal-free ATP and 8-bromo-ATP bind with high affinity to the catalytic site of phosphorylated ATPase and accelerate dephosphorylation.

作者信息

Champeil P, Riollet S, Orlowski S, Guillain F, Seebregts C J, McIntosh D B

机构信息

Département de Biologie, CEN Saclay, Gif-sur-Yvette, France.

出版信息

J Biol Chem. 1988 Sep 5;263(25):12288-94.

PMID:2970458
Abstract

To localize and characterize the regulatory nucleotide site of skeletal muscle sarcoplasmic reticulum Ca2+-ATPase, we have investigated the effects of ADP, ATP, and analogues of these nucleotides on the rate of dephosphorylation of both native ATPase and ATPase modified with fluorescein 5'-isothiocyanate (FITC), a reagent which hinders access of nucleotides to the ATPase catalytic site without affecting phosphorylation from Pi. Dephosphorylation of the phosphoenzyme formed from Pi was monitored by rapid filtration or stopped-flow fluorescence, mostly at 20 degrees C, pH 6.0, and in the absence of potassium. Fluorescence measurements were made possible through the use of 8-bromo-ATP, which selectively quenched certain tryptophan residues of the ATPase, thereby allowing the intrinsic fluorescence changes associated with dephosphorylation to be measured in the presence of bound nucleotide. ATP, 8-bromo-ATP, and trinitrophenyladenosine diand triphosphate, but not ADP, enhanced the rate of dephosphorylation of native ATPase 2-3-fold when added in the absence of divalent cations. Millimolar concentrations of Mg2+ eliminated the accelerating effects. Acceleration in the absence of Mg2+ was observed at relatively low concentrations of ATP and 8-bromo-ATP (0.01-0.1 mM) and binding of metal-free ATP and ADP, but not Mg.ATP, to the phosphoenzyme in this concentration range was demonstrated directly. Modification of the ATPase with FITC blocked nucleotide binding in the submillimolar concentration range and eliminated the nucleotide-induced acceleration of dephosphorylation. These results show that dephosphorylation, under these conditions, is regulated by ATP but not by Mg.ATP or ADP, and that the catalytic site is the locus of this "regulatory" ATP binding site.

摘要

为了定位和表征骨骼肌肌浆网Ca2+-ATP酶的调节核苷酸位点,我们研究了ADP、ATP以及这些核苷酸类似物对天然ATP酶和用异硫氰酸荧光素5'-(FITC)修饰的ATP酶去磷酸化速率的影响,FITC是一种试剂,它阻碍核苷酸进入ATP酶催化位点,而不影响从Pi的磷酸化。由Pi形成的磷酸酶的去磷酸化通过快速过滤或停流荧光进行监测,大多在20℃、pH 6.0且无钾的条件下。通过使用8-溴-ATP使荧光测量成为可能,8-溴-ATP选择性地淬灭ATP酶的某些色氨酸残基,从而使得在结合核苷酸存在的情况下能够测量与去磷酸化相关的内在荧光变化。当在不存在二价阳离子的情况下添加时,ATP、8-溴-ATP和三硝基苯基腺苷二磷酸及三磷酸,但不是ADP,将天然ATP酶的去磷酸化速率提高了2-3倍。毫摩尔浓度的Mg2+消除了这种加速作用。在相对低浓度的ATP和8-溴-ATP(0.01-0.1 mM)下观察到在不存在Mg2+时的加速,并且直接证明了在该浓度范围内无金属的ATP和ADP而非Mg·ATP与磷酸酶的结合。用FITC修饰ATP酶在亚毫摩尔浓度范围内阻断了核苷酸结合,并消除了核苷酸诱导的去磷酸化加速。这些结果表明,在这些条件下,去磷酸化受ATP调节而非Mg·ATP或ADP调节,并且催化位点是这个“调节性”ATP结合位点的所在位置。

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