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FRET characterisation for cross-bridge dynamics in single-skinned rigor muscle fibres

机译:FRET表征单皮刚性肌肉纤维中的跨桥动力学

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摘要

In this work we demonstrate for the first time the use of Förster resonance energy transfer (FRET) as an assay to monitor the dynamics of cross-bridge conformational changes directly in single muscle fibres. The advantage of FRET imaging is its ability to measure distances in the nanometre range, relevant for structural changes in actomyosin cross-bridges. To reach this goal we have used several FRET couples to investigate different locations in the actomyosin complex. We exchanged the native essential light chain of myosin with a recombinant essential light chain labelled with various thiol-reactive chromophores. The second fluorophore of the FRET couple was introduced by three approaches: labelling actin, labelling SH1 cysteine and binding an adenosine triphosphate (ATP) analogue. We characterise FRET in rigor cross-bridges: in this condition muscle fibres are well described by a single FRET population model which allows us to evaluate the true FRET efficiency for a single couple and the consequent donor–acceptor distance. The results obtained are in good agreement with the distances expected from crystallographic data. The FRET characterisation presented herein is essential before moving onto dynamic measurements, as the FRET efficiency differences to be detected in an active muscle fibre are on the order of 10–15% of the FRET efficiencies evaluated here. This means that, to obtain reliable results to monitor the dynamics of cross-bridge conformational changes, we had to fully characterise the system in a steady-state condition, demonstrating firstly the possibility to detect FRET and secondly the viability of the present approach to distinguish small FRET variations.
机译:在这项工作中,我们首次展示了使用Förster共振能量转移(FRET)作为直接监测单条肌纤维中跨桥构象变化动态的测定方法。 FRET成像的优势在于它能够测量纳米范围内的距离,这与放线菌素跨桥的结构变化有关。为了达到这个目标,我们使用了几个FRET对来研究放线菌素复合物中的不同位置。我们用标记有各种硫醇反应性发色团的重组必需轻链交换了肌球蛋白的天然必需轻链。 FRET对的第二个荧光团通过三种方法引入:标记肌动蛋白,标记SH1半胱氨酸和结合三磷酸腺苷(ATP)类似物。我们在严格的跨桥中表征FRET:在这种情况下,单个FRET种群模型很好地描述了肌肉纤维,这使我们能够评估单对夫妇的真实FRET效率以及随后的供体-受体距离。获得的结果与从晶体学数据预期的距离高度吻合。本文介绍的FRET表征在进行动态测量之前至关重要,因为要在活性肌纤维中检测到的FRET效率差异约为此处评估的FRET效率的10%至15%。这意味着,为了获得可靠的结果来监测跨桥构象变化的动力学,我们必须在稳态条件下对系统进行全面表征,首先证明了检测FRET的可能性,其次证明了本方法区分的可行性。小的FRET变化。

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