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1.8 Å bright-state structure of the reversibly switchable fluorescent protein Dronpa guides the generation of fast switching variants

机译:可逆切换的荧光蛋白Dronpa的1.8Å亮态结构指导快速切换变体的产生

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摘要

RSFPs (reversibly switchable fluorescent proteins) may be repeatedly converted between a fluorescent and a non-fluorescent state by irradiation and have attracted widespread interest for many new applications. The RSFP Dronpa may be switched with blue light from a fluorescent state into a non-fluorescent state, and back again with UV light. To obtain insight into the underlying molecular mechanism of this switching, we have determined the crystal structure of the fluorescent equilibrium state of Dronpa. Its bicyclic chromophore is formed spontaneously from the Cys62–Tyr63–Gly64 tripeptide. In the fluorescent state, it adopts a slightly non-coplanar cis conformation within the interior of a typical GFP (green fluorescent protein) β-can fold. Dronpa shares some structural features with asFP595, another RSFP whose chromophore has previously been demonstrated to undergo a cis–trans isomerization upon photoswitching. Based on the structural comparison with asFP595, we have generated new Dronpa variants with an up to more than 1000-fold accelerated switching behaviour. The mutations which were introduced at position Val157 or Met159 apparently reduce the steric hindrance for a cis–trans isomerization of the chromophore, thus lowering the energy barrier for the blue light-driven on-to-off transition. The findings reported in the present study support the view that a cis–trans isomerization is one of the key events common to the switching mechanism in RSFPs.
机译:RSFP(可逆转换的荧光蛋白)可以通过辐照在荧光状态和非荧光状态之间重复转换,并已引起许多新应用的广泛兴趣。可以用蓝光将RSFP Dronpa从荧光状态切换为非荧光状态,然后再用UV光切换回RSFP Dronpa。为了深入了解这种转换的潜在分子机制,我们确定了Dronpa荧光平衡态的晶体结构。它的双环发色团是由Cys 62 –Tyr 63 –Gly 64 三肽自发形成的。在荧光状态下,它在典型的GFP(绿色荧光蛋白)β-can折叠内部采用略微不共面的顺式构象。 Dronpa与另一个RSFP asFP595具有一些结构特征,后者以前已经证明其发色团在光转换后会发生顺反异构化。基于与asFP595的结构比较,我们生成了新的Dronpa变体,其加速开关性能高达1000倍以上。在Val 157 或Met 159 位置引入的突变明显减少了发色团顺反异构化的空间位阻,从而降低了蓝光的能垒驱动的开关过渡。本研究报告的发现支持以下观点:顺式-反式异构化是RSFP中转换机制共有的关键事件之一。

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