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通过共振能量转移确定兔骨骼肌肌钙蛋白I的半胱氨酸133相对于肌钙蛋白C的定位。

Localization of Cys133 of rabbit skeletal troponin-I with respect to troponin-C by resonance energy transfer.

作者信息

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

机构信息

Muscle Research Group, Boston Biomedical Research Institute, Massachusetts 02114, USA.

出版信息

Biophys J. 1998 Jun;74(6):3111-9. doi: 10.1016/S0006-3495(98)78017-8.

Abstract

We have used the technique of resonance energy transfer in conjunction with distance geometry analysis to localize Cys133 of troponin-I (TnI) with respect to troponin-C (TnC) in the ternary troponin complex and the binary TnC.TnI complex in the presence and absence of Ca2+. Cys133 of TnI was chosen because our previous work has shown that the region of TnI containing this residue undergoes Ca2+-dependent movements between actin and TnC, and may play an important role in the regulatory function of troponin. For this purpose, a TnI mutant with a single Cys at position 133, and TnC mutants, each with a single Cys at positions 5, 12, 21, 41, 49, 89, 98, 133, and 158, were constructed by site-directed mutagenesis. The distances between TnI Cys133 and each of the nine residues in TnC were then measured. Using a least-squares minimization procedure, we determined the position of TnI Cys133 in the coordinate system of the crystal structure of TnC. Our results show that in the presence of Ca2+, TnI Cys133 is located near residue 12 beneath the N-terminal lobe of TnC, and moves away by 12.6 A upon the removal of Ca2+. TnI Cys133 and the region of TnC that undergoes major change in conformation in response to Ca2+ are located roughly on opposite sides of TnC's central helix. This suggests that the region in TnI that undergoes Ca2+-dependent interaction with TnC is distinct from that interacting with actin.

摘要

我们运用共振能量转移技术并结合距离几何分析,在存在和不存在Ca2+的情况下,确定肌钙蛋白三元复合物中肌钙蛋白I(TnI)的Cys133相对于肌钙蛋白C(TnC)的位置,以及二元TnC.TnI复合物中该位置。选择TnI的Cys133是因为我们之前的研究表明,TnI中包含该残基的区域在肌动蛋白和TnC之间会发生Ca2+依赖性移动,并且可能在肌钙蛋白的调节功能中发挥重要作用。为此,通过定点诱变构建了在133位有单个Cys的TnI突变体以及在5、12、21、41、49、89、98、133和158位有单个Cys的TnC突变体。然后测量了TnI Cys133与TnC中九个残基各自之间的距离。使用最小二乘最小化程序,我们确定了TnI Cys133在TnC晶体结构坐标系中的位置。我们的结果表明,在存在Ca2+的情况下,TnI Cys133位于TnC N端叶下方的12位残基附近,去除Ca2+后会移动12.6埃。TnI Cys133以及响应Ca2+而发生构象重大变化的TnC区域大致位于TnC中央螺旋的相对两侧。这表明TnI中与TnC发生Ca2+依赖性相互作用的区域与与肌动蛋白相互作用的区域不同。

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