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肌钙蛋白复合物和重组细肌丝中肌钙蛋白I的Cys48与Cys133之间距离的肌钙蛋白T和Ca2+依赖性

Troponin T and Ca2+ dependence of the distance between Cys48 and Cys133 of troponin I in the ternary troponin complex and reconstituted thin filaments.

作者信息

Luo Y, Wu J L, Gergely J, Tao T

机构信息

Muscle Research Group, Boston Biomedical Research Institute, 20 Staniford Street, Boston, Massachusetts 02114, USA.

出版信息

Biochemistry. 1997 Sep 9;36(36):11027-35. doi: 10.1021/bi962461w.

Abstract

Contraction of vertebrate striated muscle is regulated by the interaction of Ca2+ with the heterotrimeric protein troponin (Tn), composed of troponin-C (TnC), troponin-I (TnI), and troponin-T (TnT). Although much is known about the Ca2+-induced conformational changes in TnC, the Ca2+-binding subunit of Tn, little is known about how TnI, the inhibitory subunit, responds to the binding of Ca2+ to TnC. In this work, we used resonance energy transfer to measure the distance between probes attached at Cys48 and Cys133 in the N- and C-terminal domains, respectively, of TnI. A mutant rabbit skeletal TnI, TnI48/133 (C64S), was constructed by converting Cys64 into Ser. The remaining two thiols at Cys48 and Cys133 were labeled with the fluorescent donor 1,5-IAEDANS, and the nonfluorescent acceptor, DAB-Mal. We found an interprobe distance of approximately 41 A for both uncomplexed TnI and TnI in the binary complex with TnC. This distance increased to 51 A in the ternary Tn complex with TnT. These distances did not change significantly on binding of Ca2+ to TnC. In the reconstituted thin filament, this distance remained to be 50 A in the presence of saturating Ca2+, but increased to approximately 66 A on removing Ca2+ with EGTA in the presence of Mg2+. Our results indicate firstly that while TnC has only small effects on the global conformation of TnI, the presence of TnT in the ternary Tn complex gives rise to an apparent elongation of TnI. Secondly, whereas there is no detectable Ca2+-dependent change in the global conformation of TnI in the Tn complex free in solution, the removal of Ca2+ caused a substantial separation of the N- and C-terminal TnI regions in the reconstituted thin filament, owing to the interaction between the C-terminal region of TnI and actin in the relaxed state.

摘要

脊椎动物横纹肌的收缩受Ca2+与异源三聚体蛋白肌钙蛋白(Tn)相互作用的调节,肌钙蛋白由肌钙蛋白-C(TnC)、肌钙蛋白-I(TnI)和肌钙蛋白-T(TnT)组成。尽管人们对Ca2+诱导的TnC(Tn的Ca2+结合亚基)构象变化了解很多,但对于抑制性亚基TnI如何响应Ca2+与TnC的结合却知之甚少。在这项研究中,我们利用共振能量转移来测量分别连接在TnI N端和C端结构域的Cys48和Cys133上的探针之间的距离。通过将Cys64转换为Ser构建了突变型兔骨骼肌TnI,即TnI48/133(C64S)。Cys48和Cys133处剩余的两个巯基用荧光供体1,5-IAEDANS和非荧光受体DAB-Mal进行标记。我们发现,未复合的TnI以及与TnC形成二元复合物的TnI的探针间距离约为41埃。在与TnT形成的三元Tn复合物中,该距离增加到51埃。Ca2+与TnC结合时,这些距离没有显著变化。在重组细肌丝中,在Ca2+饱和的情况下该距离保持为50埃,但在Mg2+存在下用EGTA去除Ca2+时,该距离增加到约66埃。我们的结果首先表明,虽然TnC对TnI的整体构象影响较小,但三元Tn复合物中TnT的存在导致TnI明显伸长。其次,虽然在溶液中游离的Tn复合物中,TnI的整体构象没有可检测到的Ca2+依赖性变化,但由于TnI C端区域与松弛状态下的肌动蛋白之间的相互作用,去除Ca2+会导致重组细肌丝中TnI的N端和C端区域发生实质性分离。

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