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肌浆网膜中钙-ATP酶多肽链之间空间关系的磷酸化依赖性变化。

Phosphorylation-dependent changes in the spatial relationship between Ca-ATPase polypeptide chains in sarcoplasmic reticulum membranes.

作者信息

Bigelow D J, Squier T C, Inesi G

机构信息

Department of Biological Chemistry, University of Maryland School of Medicine, Baltimore 21201.

出版信息

J Biol Chem. 1992 Apr 5;267(10):6952-62.

PMID:1532393
Abstract

In order to investigate possible structural changes associated with the coupling mechanisms of the Ca-ATPase in sarcoplasmic reticulum membranes, we have utilized fluorescence resonance energy transfer between spectroscopic probes covalently bound to different domains of the ATPase. Using time-correlated single photon counting, we have directly measured the energy transfer efficiency between 5-[2-[(iodoacetyl)amino]ethyl]aminonaphthalene-1-sulfonic acid (IAEDANS), that is specifically bound to the B trypic fragment at cysteines 670 and 674 and acceptors covalently bound either near the nucleotide binding site, i.e. fluorescein 5-isothiocyanate at lysine 515, also on the B fragment, or maleimide-directed probes specifically located on the A1, tryptic fragment, i.e. 4-dimethylaminoazobenzene-4'-maleimide (DABmal) or fluorescein-5-maleimide (Fmal), probably at cysteines 344 and 364. All of these donor-acceptor pairs exhibit energy transfer both within and between Ca-ATPase molecules allowing us to investigate spatial relationships between the A1 and B domains and between different ATPase polypeptide chains. Differentiation between the intra- and intermolecular components of energy transfer was accomplished in two ways: 1) by comparing the transfer efficiencies in native membranes before and after detergent solubilization and 2) by reconstituting ATPase chains that have already been labeled with either the donor or acceptor chromophores. Using this approach, we find no significant change in the intramolecular transfer efficiency between any of these donor-acceptor pairs either upon binding of calcium to the high affinity sites or upon stabilization of the phosphoenzyme intermediate, indicating that there are no large structural changes within the B tryptic fragment or, alternatively, between the A1 and B fragments. With respect to intermolecular energy transfer, we observe no effect of calcium binding on the unliganded enzyme with either donor-acceptor pair. However, formation of the phosphoenzyme intermediate results in a measurable increase in the transfer efficiency between IAEDANS and DABmal (or Fmal); this increase is reversible upon phosphoenzyme destabilization by subsequent addition of calcium. There is no corresponding change in the intermolecular component of fluorescence resonance energy transfer between IAEDANS and fluorescein 5-isothiocyanate, indicating that the change in fluorescence resonance energy transfer probably occurs as a result of reorientation of associated ATPase polypeptide chains with respect to one another.

摘要

为了研究与肌浆网膜中钙 - ATP酶偶联机制相关的可能结构变化,我们利用了共价结合到ATP酶不同结构域的光谱探针之间的荧光共振能量转移。使用时间相关单光子计数,我们直接测量了5 - [2 - [(碘乙酰基)氨基]乙基]氨基萘 - 1 - 磺酸(IAEDANS)与受体之间的能量转移效率,IAEDANS特异性结合到B胰蛋白酶片段的半胱氨酸670和674上,受体共价结合在核苷酸结合位点附近,即在B片段上的赖氨酸515处的异硫氰酸荧光素,或者特异性位于A1胰蛋白酶片段上的马来酰亚胺导向探针,即4 - 二甲基氨基偶氮苯 - 4'- 马来酰亚胺(DABmal)或荧光素 - 5 - 马来酰亚胺(Fmal),可能在半胱氨酸344和364处。所有这些供体 - 受体对在钙 - ATP酶分子内和分子间均表现出能量转移,这使我们能够研究A1和B结构域之间以及不同ATP酶多肽链之间的空间关系。能量转移的分子内和分子间成分的区分通过两种方式完成:1)通过比较去污剂溶解前后天然膜中的转移效率,以及2)通过重构已经用供体或受体发色团标记的ATP酶链。使用这种方法,我们发现在钙与高亲和力位点结合或磷酸酶中间体稳定后,这些供体 - 受体对中任何一对的分子内转移效率均无显著变化,这表明在B胰蛋白酶片段内或A1与B片段之间没有大的结构变化。关于分子间能量转移,我们观察到对于任何一对供体 - 受体对,钙结合对未结合配体的酶均无影响。然而,磷酸酶中间体的形成导致IAEDANS与DABmal(或Fmal)之间的转移效率有可测量的增加;通过随后添加钙使磷酸酶不稳定后,这种增加是可逆的。IAEDANS与异硫氰酸荧光素之间的荧光共振能量转移的分子间成分没有相应变化,表明荧光共振能量转移的变化可能是由于相关ATP酶多肽链彼此重新定向的结果。

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