purple membrane
- 紫膜
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We also have measured the effect of temperature on CD spectrum of purple membrane fragment and monomeric bacteriorhodopsin , and found that the temperature significantly affects the CD spectrum of the monomeric bacteriorhodopsin .
用园二色(CD)方法相应地观察了温度对紫膜碎片和单体菌紫质分子在可见波长范围内的CD谱的影响同样观察到温度对单体菌紫质分子的CD谱有明显影响。
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The modification effect of biotin on structure and function of purple membrane
生物素结合对紫膜结构和功能的影响
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The relation between surface potential and proton pumping efficiency of purple membrane
嗜菌紫膜表面电位和质子泵效率间的关系
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The direct information of the surface structure change of purple membrane under high pH was obtained .
报道了在高碱性pH下,紫膜中细菌视紫红质(BR)表面结构变化的直观信息。
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The effects of acetylation on structure of purple membrane
酰化对紫膜结构的影响
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The ultraviolet fluorescence and intramolecular energy transfer of purple membrane
紫膜的紫外荧光及分子内的能量转移
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Studies on surface enhanced Resonace Raman spectra of purple membrane
紫膜表面增强共振拉曼散射谱的研究
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The Direct Observation on The Surface Structure Change of Purple Membrane Induced by High pH Using Atom Force Microscope
高碱性pH诱导紫膜片层表面结构变化的原子力显微镜直接观测
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The photochemical properties of neutral red regenerated purple membrane
中性红再生紫膜的光化学性质
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Preparation of Phospholipid Vesicles Containing Purple Membrane and Detection of the Proton Pumping Function
紫膜脂质体的制备及其质子泵功能的检测
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The special conformational property for metal-binding sites on purple membrane was discussed .
文中讨论了紫膜上金属离子结合位点的空间结构特点。
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Optical phase conjugate in Langmuir-Blodgett films of purple membrane
紫膜LB膜中的光学相位共轭研究
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Studies on circular dichroism of bacteriorhodopsin in purple membrane under the action of electric field
电场作用下紫膜中细菌视紫红质的圆二色性研究
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The interaction of purple membrane with solvents
紫膜与溶剂的相互作用
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The Japan Pavilion is a semi-circular structure , covered by a purple membrane material .
日本馆呈半圆形,采用紫色薄膜材料包裹。
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The photovoltage in the dried oriented purple membrane film and its dependence on light intensity
有取向紫膜薄层光电位及其与光强度的关系
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PH-dependence of surface potential of purple membrane studied by a fluorochrome probe
pH对紫膜表面电位的影响
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The mechanism of interaction of MELITIN with purple membrane ── compared with three kinds of surfactants
蜂毒素与紫膜的相互作用机理研究&与三种表面活性剂的比较
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Hydration dependence of purple membrane thermal transitions
紫膜热转变与水合
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One is carried out by a single shot pulse Xenon lamp inducing the purple membrane suspension sample .
一套是单次脉冲氙灯闪光诱导样品;
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Effect of freezing and / or drying on circular dichroism of bacteriorhodopsin in purple membrane fragments
冷冻干燥对紫膜菌紫质圆二色性的影响
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Effect of physical character of some factors on purple membrane lipid of Halobacterium halobium & spin label study
自旋标记法研究不同因素对嗜盐菌紫膜类脂物性的影响
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Fourier self-deconvolution and its application to the study of secondary structure of bacteriorhodopsin in p_2o_5-dried purple membrane
付里叶自去卷积法及其应用于无水紫膜菌紫质的二级结构研究
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Bacteriorhodopsin ( bR ) is the light transacting protein in the purple membrane . It is a new kind of biological optical materials .
细菌视紫红质(bacteriorhodopsin,简称bR)是由嗜盐菌中提取出的一种光敏蛋白质,它是一种新型的生物光子学材料。
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Fourth derivative UV absorption spectra indicated that the characteristic peak of blue membrane BR protein shifted slightly to blue comparatively with purple membrane .
四阶微分紫外吸收光谱研究发现,蓝膜BR蛋白质的特征峰相对于紫膜的稍有蓝移。
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By measuring fluorescent lifetime of AXS binding with purple membrane , the pH - dependence of bacteriorhodopsin conformation was studied .
本文采用荧光探针的方法,通过测量与紫膜结合后的荧光探针ANS的荧光寿命随介质pH的变化,研究了介质pH对bR的构象的影响。
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The endogenous fluorescence spectra studies indicate that the maximum excitation wavelengths of bacteriorhodopsin fluorescence in blue and purple membrane at room temperature are both 280 nm .
内源荧光研究发现,在室温下,蓝膜和紫膜中BR蛋白质的最大激发波长都在280nm。
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It is interesting in understanding for molecule structure and photochemical mechanism of bacteriorhodopsin . Purple membrane and fluorescence of photoreactions are problems encountered with traditional Raman spectroscopy .
了解菌紫质的分子构造及光化学反应机制是很有意义的事,但由于菌紫质是紫色膜蛋白,加之光反应时的荧光问题,用普通拉曼技术获得菌紫质的特征峰有一定困难。
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The molar ratio H + / M412 , which represents the proton pumping efficiency by purple membrane , was measured and compared with surface potential at different ionic strength .
并得不同盐浓度的表面电位和质子泵效率作了比较。
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The results showed that the effects of solubilization by CHAPS on the micro-surroundings of polar surface area in purple membrane bilayer were different from that in hydrophobic inner area .
实验结果表明:CHAPS的增溶过程对紫膜的表层微环境和深层微环境的影响不同。