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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >A giant liposome for single-molecule observation of conformational changes in membrane proteins.
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A giant liposome for single-molecule observation of conformational changes in membrane proteins.

机译:用于单分子观察膜蛋白构象变化的巨型脂质体。

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We present an experimental system that allows visualization of conformational changes in membrane proteins at the single-molecule level. The target membrane protein is reconstituted in a giant liposome for independent control of the aqueous environments on the two sides of the membrane. For direct observation of conformational changes, an extra-liposomal site(s) of the target protein is bound to a glass surface, and a probe that is easily visible under a microscope, such as a micron-sized plastic bead, is attached to another site on the intra-liposomal side. A conformational change, or an angular motion in the tiny protein molecule, would manifest as a visible motion of the probe. The attachment of the protein on the glass surface also immobilizes the liposome, greatly facilitating its manipulation such as the probe injection. As a model system, we reconstituted ATP synthase (F(O)F(1)) in liposomes tens of mum in size, attached the protein specifically to a glass surface, and demonstrated its ATP-driven rotation in the membrane through the motion of a submicron bead.
机译:我们提出了一个实验系统,可以可视化单分子水平上膜蛋白的构象变化。目标膜蛋白在巨大的脂质体中重构,以独立控制膜两侧的水环境。为了直接观察构象变化,将目标蛋白的脂质体外位点结合到玻璃表面,并将在显微镜下容易看见的探针(例如微米大小的塑料珠)连接到另一个脂质体侧的位点。构象变化或微小蛋白质分子中的角运动将表现为探针的可见运动。蛋白质在玻璃表面上的附着也固定了脂质体,极大地促进了它的操作,例如探针注入。作为模型系统,我们在数十微米大小的脂质体中重构了ATP合酶(F(O)F(1)),将蛋白质特异性地附着在玻璃表面上,并通过其运动证明了ATP驱动的膜旋转。亚微米珠。

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