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在整个催化循环中,与肌浆网Ca2+-ATP酶特定巯基相连的N-碘乙酰基-N'-(5-磺基-1-萘基)乙二胺附近的构象变化。

Conformational changes in the vicinity of the N-iodoacetyl-N'-(5-sulfo-1-naphthyl)ethylenediamine attached to the specific thiol of sarcoplasmic reticulum Ca2+-ATPase throughout the catalytic cycle.

作者信息

Obara M, Suzuki H, Kanazawa T

机构信息

Department of Biochemistry, Asahikawa Medical College, Japan.

出版信息

J Biol Chem. 1988 Mar 15;263(8):3690-7.

PMID:2964442
Abstract

In the previous experiment (Suzuki, H., Obara, M., Kuwayama, H., and Kanazawa, T. (1987) J. Biol. Chem. 262, 15448-15456), the Ca2+-ATPase of sarcoplasmic reticulum vesicles was labeled with N-iodoacetyl-N'-(5-sulfo-1-naphthyl)ethylenediamine without a loss of the catalytic activity. The main labeled site was Cys674. A large monophasic fluorescence drop occurred upon ATP binding to the catalytic site of the Ca2+-activated enzyme in the presence of K+. The present results show that this fluorescence drop is biphasic in the absence of K+. The first and rapid phase of this drop accounts for most of the fluorescence drop. This phase reflects a conformational change in the enzyme.ATP complex. The second and slow phase, being much smaller than the first phase, coincides with phosphoenzyme (EP) isomerization from the ADP-sensitive form to the ADP-insensitive form. This phase disappears when accumulation of ADP-insensitive EP is inhibited by K+ or when EP isomerization is prevented by the N-ethylmaleimide treatment. These results show that this phase reflects a conformational change upon EP isomerization. When free Ca2+ is chelated after EP formation from ATP, the fluorescence intensity is restored to the initial level without Ca2+. This restoration coincides with EP decomposition. This suggests that the fluorescence restoration reflects a conformational change upon hydrolysis of ADP-insensitive EP. This probability is supported by the concurrent occurrence of the Pi-induced fluorescence drop and EP formation from Pi. The results demonstrate that the fluorescence drop upon ATP binding is predominant in the fluorescence change throughout the catalytic cycle.

摘要

在之前的实验中(铃木浩、小原真、桑山浩和金泽敏郎,(1987年)《生物化学杂志》262卷,第15448 - 15456页),肌质网囊泡的Ca2 + -ATP酶用N -碘乙酰 - N' -(5 - 磺基 - 1 -萘基)乙二胺进行标记,且催化活性未丧失。主要的标记位点是半胱氨酸674。在K +存在的情况下,ATP与Ca2 +激活酶的催化位点结合时会出现一个大的单相荧光下降。目前的结果表明,在没有K +的情况下,这种荧光下降是双相的。该下降的第一个快速阶段占荧光下降的大部分。这个阶段反映了酶 - ATP复合物的构象变化。第二个缓慢阶段比第一个阶段小得多,与磷酸酶(EP)从ADP敏感形式异构化为ADP不敏感形式相吻合。当K +抑制ADP不敏感EP的积累或用N -乙基马来酰亚胺处理阻止EP异构化时,这个阶段消失。这些结果表明,这个阶段反映了EP异构化时的构象变化。当从ATP形成EP后游离的Ca2 +被螯合时,荧光强度恢复到没有Ca2 +时的初始水平。这种恢复与EP分解相吻合。这表明荧光恢复反映了ADP不敏感EP水解时的构象变化。磷酸诱导的荧光下降和从磷酸形成EP同时发生,支持了这种可能性。结果表明,在整个催化循环中,ATP结合时的荧光下降在荧光变化中占主导地位。

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