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对从光合细菌红螺菌的亚基捕光1复合体重新折叠形成的云母基底上的捕光1复合体进行近红外吸收光谱、荧光光谱及原子力显微镜观察。

Near-IR absorption and fluorescence spectra and AFM observation of the light-harvesting 1 complex on a mica substrate refolded from the subunit light-harvesting 1 complexes of photosynthetic bacteria Rhodospirillum rubrum.

作者信息

Iida Kouji, Inagaki Jun-Ichi, Shinohara Kiyoshi, Suemori Yoshiharu, Ogawa Makiko, Dewa Takehisa, Nango Mamoru

机构信息

Nagoya Municipal Industrial Research Institute, Atsuta-ku Rokuban, Nagoya 456-0058, Japan.

出版信息

Langmuir. 2005 Mar 29;21(7):3069-75. doi: 10.1021/la047460g.

Abstract

The subunit light-harvesting 1 (LH 1) complexes isolated from photosynthetic bacteria Rhodospirillum rubrum using n-octyl-beta-glucoside were reassociated and adsorbed on a mica substrate using spin-coat methods with the aim of using this LH complex in a nanodevice. The near-IR absorption and fluorescence spectra of the LH 1 complexes indicated that the LH 1 complex on the mica was stable, and efficient energy transfer from a carotenoid to a bacteriochlorophyll a was observed. Atomic force microscopy of the reassociated LH 1 complexes, under air, showed the expected ringlike structure. The outer and inner diameters of the ringlike structure of the LH 1 complex were approximately 30 and 8 nm, respectively, and the ringlike structure protruded by 0.2-0.6 nm.

摘要

使用正辛基-β-D-葡萄糖苷从光合细菌红螺菌中分离出亚基捕光1(LH 1)复合物,将其重新缔合并采用旋涂法吸附在云母基底上,目的是在纳米器件中使用这种LH复合物。LH 1复合物的近红外吸收光谱和荧光光谱表明,云母上的LH 1复合物是稳定的,并且观察到了从类胡萝卜素到细菌叶绿素a的高效能量转移。在空气中对重新缔合的LH 1复合物进行原子力显微镜观察,显示出预期的环状结构。LH 1复合物环状结构的外径和内径分别约为30 nm和8 nm,环状结构突出0.2 - 0.6 nm。

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