Fajer P G
Institute of Molecular Biophysics, Florida State University, Tallahassee 32300.
Biophys J. 1994 Jun;66(6):2039-50. doi: 10.1016/S0006-3495(94)80998-1.
The determination of the iodoacetamide spin label orientation in myosin heads (Fajer, 1994) allows us for the first time to determine directly protein orientation from EPR spectra. Computational simulations have been used to determine the sensitivity of EPR to both torsional and tilting motions of myosin heads. For rigor heads (no nucleotide), we can detect 0.2 degree changes in the tilt angle and 4 degrees in the torsion of the head. Sensitivity decreases with increasing head disorder, but even in the presence of +/- 30 degrees disorder as expected for detached heads, 10 degree changes in the center of the orientational distribution can be detected. We have combined these numerical simulations with a Simplex optimization to compare the orientation of intrinsic heads, with the orientation of labeled extrinsic heads that have been infused into unlabeled muscle fibers. The near identity (within 2 degrees) of the orientational distribution in the two instances can be attributed to myosin elasticity taking up the mechanical strain induced by the mismatch of myosin and actin filament periodicity. A similar analysis of the spectra of fibers with ADP bound to myosin revealed a small (approximately 5 degrees-10 degrees) torsional reorientation, without a substantial change of the tilt angle (< 2 degrees).
肌球蛋白头部碘乙酰胺自旋标记方向的测定(法杰尔,1994年)首次使我们能够直接从电子顺磁共振光谱确定蛋白质方向。计算模拟已被用于确定电子顺磁共振对肌球蛋白头部扭转和倾斜运动的敏感性。对于僵直头部(无核苷酸),我们可以检测到倾斜角0.2度的变化和头部扭转4度的变化。敏感性随着头部无序程度的增加而降低,但即使存在如预期的脱离头部那样的±30度无序,也能检测到取向分布中心10度的变化。我们将这些数值模拟与单纯形优化相结合,以比较固有头部的方向与注入未标记肌纤维中的标记外部头部的方向。这两种情况下取向分布的近乎一致(在2度以内)可归因于肌球蛋白弹性吸收了由肌球蛋白和肌动蛋白丝周期性不匹配引起的机械应变。对结合了ADP的肌球蛋白的纤维光谱进行的类似分析显示出小的(约5度 - 10度)扭转重取向,而倾斜角没有实质性变化(<2度)。