首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Regulation of Photocycle Kinetics of Photoactive Yellow Protein by Modulating Flexibility of the beta-Turn
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Regulation of Photocycle Kinetics of Photoactive Yellow Protein by Modulating Flexibility of the beta-Turn

机译:通过调节β转弯的柔性来调节光活性黄蛋白的光循环动力学

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摘要

The role of the significant flexibility of the beta-turn in photoactive yellow protein (PYP) due to G1y115 was studied. G115A and G115P mutations were observed to accelerate the photocycle and shift the equilibrium between the late photocycle intermediate (pB) and its precursor (pR) toward pR. Thermodynamic analysis of dark-state recovery from pB demonstrated that the transition state (pB double dagger) has a negative change in transition heat capacity, suggesting that an exposed hydrophobic surface of pB is buried in p13 double dagger. Fourier transform infrared spectroscopy showed that the structural ensemble of pB is populated by the compact structure in G115P. Taken together, the rigid structure induced by mutation of Gly115 facilitates its transition to pB double dagger, which adopts a substantially more compact structure as opposed to the ensemble-averaged structure of pB. The photocycle kinetics of PYP may be fine-tuned by modulating the flexibility of the 115 loop to activate an appropriate number of transducer proteins.
机译:研究了由于G1Y115引起的β-转弯β-转弯的显着灵活性的作用。观察G115A和G115P突变以加速光循环并将晚期光循环中间体(PB)与其前体(PR)之间的平衡移向Pr。从PB的暗状态恢复的热力学分析证明过渡状态(PB双匕首)过渡热量的负变化,表明PB的暴露疏水表面埋在P13双匕首中。傅里叶变换红外光谱显示PB的结构集合被G115P中的紧凑结构填充。通过GLY115突变引起的刚性结构促使其过渡到PB双匕首,其采用基本上更紧凑的结构,而不是PB的集合平均结构。通过调节115环的柔韧性来激活适当数量的换能器蛋白质,可以微观调整PYP的光循栗动力学。

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