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HcRed 红色生色团的光物理:顺反异构和质子化态变化的证据。

Photophysics of the red chromophore of HcRed: evidence for cis-trans isomerization and protonation-state changes.

机构信息

Center for Functional Nanomaterials, Brookhaven National Laboratory, Mail Stop 735, Upton New York 11973, USA.

出版信息

J Phys Chem B. 2010 Apr 8;114(13):4678-85. doi: 10.1021/jp9102146.

Abstract

HcRed is a dimeric intrinsically fluorescent protein with origins in the sea anemone Heteractis crispa. This protein exhibits deep red absorption and emission properties. Using a combination of ensemble and single molecule methods and by varying environmental parameters such as temperature and pH, we found spectroscopic evidence for the presence of two ground state conformers, trans and cis chromophores that are in thermal equilibrium and that follow different excited-state pathways upon exposure to light. The photocycle of HcRed appears to be a combination of both kindling proteins and bright emitting GFP/GFP-like proteins: the trans chromophore undergoes light driven isomerization followed by radiative relaxation with a fluorescence lifetime of 0.5 ns. The cis chromophore exhibits a photocycle similar to bright GFPs and GFP-like proteins such as enhanced GFP, enhanced YFP or DsRed, with radiative relaxation with a fluorescence lifetime of 1.5 ns, singlet-triplet deactivation on a microsecond time scale and solvent controlled protonation/deprotonation in tens of microseconds. Using single molecule spectroscopy, we identify trans and cis conformers at the level of individual moieties and show that it is possible that the two conformers can coexist in a single protein due to the dimeric nature of HcRed.

摘要

HcRed 是一种二聚体内在荧光蛋白,起源于海葵 Heteractis crispa。这种蛋白质表现出深红光吸收和发射特性。通过使用组合的集体和单分子方法,并通过改变环境参数,如温度和 pH 值,我们发现了存在两种基态构象体的光谱证据,即顺式和反式发色团处于热平衡状态,并且在暴露于光时遵循不同的激发态途径。HcRed 的光循环似乎是火种蛋白和明亮发射 GFP/GFP 样蛋白的组合:反式发色团经历光驱动的异构化,随后进行辐射松弛,荧光寿命为 0.5 ns。顺式发色团表现出与明亮 GFP 和 GFP 样蛋白(如增强 GFP、增强 YFP 或 DsRed)相似的光循环,辐射松弛的荧光寿命为 1.5 ns,微秒时间尺度上的单重态-三重态失活以及数十微秒内溶剂控制的质子化/去质子化。使用单分子光谱学,我们在单个分子的水平上识别出顺式和反式构象体,并表明由于 HcRed 的二聚体性质,两种构象体可能在单个蛋白质中共存。

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