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A spin label that binds to myosin heads in muscle fibers with its principal axis parallel to the fiber axis.

机译:旋转标记,其主轴平行于纤维轴,与肌纤维中的肌球蛋白头部结合。

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摘要

We have used an indane-dione spin label (2-[-oxyl-2,2,5,5-tetramethyl-3-pyrrolin-3-yl)methenyl]in dane-1,3-dione), designated InVSL, to study the orientation of myosin heads in bundles of chemically skinned rabbit psoas muscle fibers, with electron paramagnetic resonance (EPR) spectroscopy. After reversible preblocking with 5,5'-dithiobis(2-nitro-benzoic acid) (DTNB), we were able to attach most of the spin label covalently and rigidly to either Cys 707 (SH1) or Cys 697 (SH2) on myosin heads. EPR spectra of labeled fibers contained substantial contributions from both oriented and disordered populations of spin labels. Similar spectra were obtained from fibers decorated with InVSL-labeled myosin heads (subfragment 1), indicating that virtually all the spin labels in labeled fibers are on the myosin head. We specifically labeled SH2 with InVSL after reversible preblocking of the SH1 sites with 1-fluoro-2,4-dinitrobenzene (FDNB), resulting in a spectrum that indicated only disordered spin labels. Therefore, the oriented and disordered populations correspond to labels on SH1 and SH2, respectively. The spectrum of SH2-bound labels was subtracted to produce a spectrum corresponding to SH1-bound labels, which was used for further analysis. For this corrected spectrum, the angle between the fiber axis and the principal axis of the spin label was fitted well by a Gaussian distribution centered at theta o = 11 +/- 1 degree, with a full width at half-maximum of delta theta = 15 +/- 2 degrees. The unique orientation of InVSL, with its principal axis almost parallel to the fiber axis, makes it complementary to spin labels previously studied in this system. This label can provide unambiguous information about axial rotations of myosin heads, since any axial rotation of the head must be reflected in the same axial rotation of the principal axis of the probe, thus changing the hyperfine splitting. Therefore, InVSL-labeled fibers have ideal properties needed for further exploration myosin head orientation and rotational motion in muscle.
机译:我们使用了茚满-1,3-二酮的茚满二酮自旋标记(2-[-氧基-1,2,5,5-四甲基-3-吡咯啉-3-基)甲烯基],称为InVSL,用电子顺磁共振(EPR)光谱研究化学剥皮的兔腰肌纤维束中肌球蛋白头的方向。用5,5'-二硫代双(2-硝基-苯甲酸)(DTNB)可逆预封闭后,我们能够将大多数自旋标记物共价且牢固地附着于肌球蛋白上的Cys 707(SH1)或Cys 697(SH2)头标记纤维的EPR光谱包含自旋标记的定向和无序种群的大量贡献。从用InVSL标记的肌球蛋白头(亚片段1)修饰的纤维中获得了相似的光谱,这表明标记纤维中的几乎所有自旋标记都位于肌球蛋白头上。我们用1-氟-2,4-二硝基苯(FDNB)对SH1位点进行可逆的预封闭后,用InVSL专门标记了SH2,产生的光谱仅表明无序的旋转标记。因此,定向种群和无序种群分别对应于SH1和SH2上的标记。减去与SH2结合的标记的光谱,以生成与SH1结合的标记对应的光谱,该光谱用于进一步分析。对于此校正后的光谱,纤维轴与纺丝标签主轴之间的角度通过以θo = 11 +/- 1度为中心的高斯分布很好地拟合,整个宽度为δtheta =的最大值的一半15 +/- 2度。 InVSL的独特方向(其主轴几乎与光纤轴平行)使其与以前在此系统中研究过的旋转标签互补。该标签可以提供有关肌球蛋白头部的轴向旋转的明确信息,因为头部的任何轴向旋转都必须反映在探针主轴线的相同轴向旋转中,从而改变超细分裂。因此,InVSL标记的纤维具有进一步探索肌球蛋白头部取向和肌肉旋转运动所需的理想特性。

著录项

  • 作者

    Roopnarine, O; Thomas, D D;

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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