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使用原子力显微镜和共价交联剂从活细胞表面提取膜蛋白。

Extraction of membrane proteins from a living cell surface using the atomic force microscope and covalent crosslinkers.

作者信息

Afrin Rehana, Arakawa Hideo, Osada Toshiya, Ikai Atsushi

机构信息

Laboratory of Biodynamics, Graduate School of Bioscience and Biotechnology, 4259 Nagatsuta Midori-ku, Yokohama 226-8501, Japan.

出版信息

Cell Biochem Biophys. 2003;39(2):101-17. doi: 10.1385/CBB:39:2:101.

Abstract

The force curve mode of the atomic force microscope (AFM) was applied to extract intrinsic membrane proteins from the surface of live cells using AFM tips modified by amino reactive bifunctional covalent crosslinkers. The modified AFM tips were individually brought into brief contact with the living cell surface to form covalent bonds with cell surface molecules. The force curves recorded during the detachment process from the cell surface were often characterized by an extension of a few hundred nanometers followed mostly by a single step jump to the zero force level. Collection and analysis of the final rupture force revealed that the most frequent force values (of the force) were in the range of 0.4-0.6 nN. The observed rupture force most likely represented extraction events of intrinsic membrane proteins from the cell membrane because the rupture force of a covalent crosslinking system was expected to be significantly larger than 1.0 nN, and the separation force of noncovalent ligand-receptor pairs to be less than 0.2 nN, under similar experimental conditions. The transfer of cell surface proteins to the AFM tip was verified by recording characteristic force curves of protein stretching between the AFM tips used on the cell surface and a silicon surface modified with amino reactive bifunctional crosslinkers. This method will be a useful addition to bionanotechnological research for the application of AFM.

摘要

利用氨基反应性双功能共价交联剂修饰的原子力显微镜(AFM)探针,采用AFM的力曲线模式从活细胞表面提取内在膜蛋白。将修饰后的AFM探针分别与活细胞表面短暂接触,以与细胞表面分子形成共价键。在从细胞表面分离过程中记录的力曲线通常表现为几百纳米的伸长,随后大多是单步跃升至零力水平。对最终断裂力的收集和分析表明,最常见的力值范围为0.4 - 0.6 nN。观察到的断裂力很可能代表了内在膜蛋白从细胞膜的提取事件,因为在类似实验条件下,共价交联系统的断裂力预计会显著大于1.0 nN,而非共价配体 - 受体对的分离力小于0.2 nN。通过记录细胞表面使用的AFM探针与用氨基反应性双功能交联剂修饰的硅表面之间蛋白质拉伸的特征力曲线,验证了细胞表面蛋白向AFM探针的转移。该方法将为AFM在生物纳米技术研究中的应用增添一种有用的手段。

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