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利用福斯特共振能量转移对调节性细肌丝中心肌肌钙蛋白I与肌动蛋白之间相互作用的结构研究。

Structural studies of interactions between cardiac troponin I and actin in regulated thin filament using Förster resonance energy transfer.

作者信息

Xing Jun, Chinnaraj Mathivanan, Zhang Zhihong, Cheung Herbert C, Dong Wen-Ji

机构信息

Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham, Birmingham, Alabama 354294, USA.

出版信息

Biochemistry. 2008 Dec 16;47(50):13383-93. doi: 10.1021/bi801492x.

Abstract

The Ca(2+)-induced interaction between cardiac troponin I (cTnI) and actin plays a key role in the regulation of cardiac muscle contraction and relaxation. In this report we have investigated changes of this interaction in response to strong cross-bridge formation between myosin S1 and actin and PKA phosphorylation of cTnI within reconstituted thin filament. The interaction was monitored by measuring Förster resonance energy transfer (FRET) between the fluorescent donor 5-(iodoacetamidoethyl)aminonaphthalene-1-sulfonic acid (AEDANS) attached to the residues 131, 151, 160 167, 188, and 210 of cTnI and the nonfluorescent acceptor 4-(dimethylamino)phenylazophenyl-4'-maleimide (DABM) attached to cysteine 374 of actin. The FRET distance measurements showed that bound Ca(2+) induced large increases in the distances from actin to the cTnI sites, indicating a Ca(2+)-triggered separation of cTnI from actin. Strongly bound myosin S1 induced additional increases in these distances in the presence of bound Ca(2+). The two ligand-induced increases were independent of each other. These two-step changes in distances provide a direct link of structural changes at the interface between cTnI and actin to the three-state model of thin filament regulation of muscle contraction and relaxation. When cTnC was inactivated through mutations of key residues within the 12-residue Ca(2+)-binding loop, strongly bound S1 alone induced increases in the distances in spite of the fact that the filaments no longer bound regulatory Ca(2+). These results suggest bound Ca(2+) or strongly bound S1 alone can partially activate thin filament, but full activation requires both bound Ca(2+) and strongly bound S1. The distributions of the FRET distances revealed different structural dynamics associated with different regions of cTnI in different biochemical states. The second actin-binding region appears more rigid than the inhibitory/regulatory region. In the Mg(2+) state, the regulatory region appears more flexible than the inhibitory region, and in the Ca(2+) state the inhibitory region becomes more flexible. PKA phosphorylation of cTnI at Ser23 and Ser24 distance from actin to cTnI residue 131 by 2.2-5.2 A in different biochemical states and narrowed the distributions of the distances from actin to the inhibitory and regulatory regions of cTnI. The observed phosphorylation effects are likely due to an intramolecular interaction of the phosphorylated N-terminal segment and the inhibitory region of cTnI.

摘要

钙离子诱导的心肌肌钙蛋白I(cTnI)与肌动蛋白之间的相互作用在心肌收缩和舒张的调节中起关键作用。在本报告中,我们研究了在重构的细肌丝中,肌球蛋白S1与肌动蛋白之间形成强横桥以及cTnI发生蛋白激酶A(PKA)磷酸化时,这种相互作用的变化。通过测量连接到cTnI残基131、151、160、167、188和210上的荧光供体5-(碘乙酰胺基乙基)氨基萘-1-磺酸(AEDANS)与连接到肌动蛋白半胱氨酸374上的非荧光受体4-(二甲基氨基)苯基偶氮苯基-4'-马来酰亚胺(DABM)之间的Förster共振能量转移(FRET)来监测这种相互作用。FRET距离测量表明,结合的钙离子使肌动蛋白到cTnI位点的距离大幅增加,表明钙离子触发了cTnI与肌动蛋白的分离。在结合钙离子的情况下,强结合的肌球蛋白S1使这些距离进一步增加。这两种配体诱导的增加是相互独立的。距离的这两步变化提供了cTnI与肌动蛋白界面处结构变化与细肌丝调节肌肉收缩和舒张的三态模型之间的直接联系。当通过12个残基的钙离子结合环内关键残基的突变使cTnC失活时,尽管细肌丝不再结合调节性钙离子,但单独强结合的S1仍能使距离增加。这些结果表明,结合的钙离子或单独强结合的S1都能部分激活细肌丝,但完全激活需要结合的钙离子和强结合的S1。FRET距离的分布揭示了在不同生化状态下,与cTnI不同区域相关的不同结构动力学。第二个肌动蛋白结合区域似乎比抑制/调节区域更刚性。在镁离子状态下,调节区域似乎比抑制区域更灵活,而在钙离子状态下,抑制区域变得更灵活。cTnI在丝氨酸23和丝氨酸24处发生PKA磷酸化,在不同生化状态下使肌动蛋白到cTnI残基131的距离增加2.2 - 5.2埃,并使肌动蛋白到cTnI抑制和调节区域的距离分布变窄。观察到的磷酸化效应可能是由于磷酸化的N端片段与cTnI抑制区域的分子内相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30c4/2599808/4f9ea708360a/nihms-65034-f0001.jpg

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