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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Photochemical and Thermal Stability of Green and Blue Proteorhodopsins: Implications for Protein-Based Bioelectronic Devices
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Photochemical and Thermal Stability of Green and Blue Proteorhodopsins: Implications for Protein-Based Bioelectronic Devices

机译:绿色和蓝色蛋白视紫红质的光化学和热稳定性:对基于蛋白质的生物电子设备的影响。

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摘要

The photochemical and thermal stability of the detergent-solubilized blue- and green-absorbing proteorhodpsins, BPR and GPR. respectively, are investigated to determine the viability of these proteins for photonic device applications. Photochemical stability is studied by using pulsed laser excitation and differential UV-vis spectroscopy to assign the photocyclicity. GPR. with a cyclicity of 7 x 10~4 photocycles protein~(-1), is 4-5 times more stable than BPR (9 x 10~3 photocycles protein~(-1)), but is less stable than native bacteriorhodopsin (9 x 10~5 photocycles protein~(-1)) or the 4-keto-bacteriorhodopsin analogue (1 x 10~5 photocycles protein~(-1)). The thermal stabilities are assigned by using differential scanning calorimetry and thermal bleaching experiments. Both proteorhodopsins display excellent thermal stability, with melting temperatures above 85 °C. and remain photochemically stable up to 75 °C. The biological relevance of our results is also discussed. The lower cyclicity of BPR is found to be adequate for the long-term biological function of the host organism at ocean depths of 50 m or more.
机译:洗涤剂溶解的吸收蓝和绿的蛋白球蛋白BPR和GPR的光化学和热稳定性。分别研究以确定这些蛋白质在光子器件应用中的生存力。通过使用脉冲激光激发和差分紫外可见光谱研究光化学稳定性,研究了光化学稳定性。 GPR。具有7 x 10〜4个光周期蛋白〜(-1)的周期性,比BPR(9 x 10〜3个光周期蛋白〜(-1))稳定4-5倍,但不如天然细菌视紫红质(9 x 10〜5个光周期蛋白〜(-1))或4-酮细菌视紫红质类似物(1个10〜5个光周期蛋白〜(-1))。通过使用差示扫描量热法和热漂白实验来分配热稳定性。两种蛋白视紫红质均显示出优异的热稳定性,熔融温度高于85°C。并在高达75°C的温度下保持光化学稳定性。我们的结果的生物学意义也进行了讨论。发现BPR的较低周期性足以满足宿主生物在50 m或更大海洋深度的长期生物学功能。

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