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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Contrast-Matched Isotropic Bicelles: A Versatile Tool to Specifically Probe the Solution Structure of Peripheral Membrane Proteins Using SANS
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Contrast-Matched Isotropic Bicelles: A Versatile Tool to Specifically Probe the Solution Structure of Peripheral Membrane Proteins Using SANS

机译:对比匹配的各向同性双裂缝:一种多功能工具,用于具体探测外周膜蛋白的溶液结构使用SANS

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Obtaining structural information on integral or peripheral membrane proteins is currently arduous due to the difficulty of their solubilization, purification, and crystallization (for X-ray crystallography (XRC) application). To overcome this challenge, bicelles are known to be a versatile tool for high-resolution structure determination, especially when using solution and/or solid state nuclear magnetic resonance (NMR) and, to a lesser extent, XRC. For proteins not compatible with these high-resolution methods, small-angle X-ray and neutron scattering (SAXS and SANS, respectively) are powerful alternatives to obtain structural information directly in solution. In particular, the SANS-based approach is a unique technique to obtain low-resolution structures of proteins in interactions with partners by contrast-matching the signal coming from the latter. In the present study, isotropic bicelles are used as a membrane mimic model for SANS-based structural studies of bound peripheral membrane proteins. We emphasize that the SANS signal coming from the deuterated isotropic bicelles can be contrast-matched in 100% D2O-based buffer, allowing us to separately and specifically focus on the signal coming from the protein in interaction with membrane lipids. We applied this method to the DYS-R11-15 protein, a fragment of the central domain of human dystrophin known to interact with lipids, and we were able to recover the signal from the protein alone. This approach gives rise to new perspectives to determine the solution structure of peripheral membrane proteins interacting with lipid membranes and might be extended to integral membrane proteins.
机译:由于它们的溶解,纯化和结晶(用于X射线晶体学(XRC)施用),获得有关整体或外周膜蛋白的结构信息目前仍然艰难。为了克服这一挑战,已知是用于高分辨率结构测定的通用工具,尤其是在使用溶液和/或固态核磁共振(NMR)和较小程度上的XRC时。对于与这些高分辨率方法不兼容的蛋白质,小角度X射线和中子散射(分别)是直接在解决方案中获得结构信息的强大替代方案。特别地,基于SAN的方法是通过对比与后者的信号进行对比匹配的信号来获得与合作伙伴的相互作用的低分辨率结构的独特技术。在本研究中,各向同性双凝胶用作结合外周膜蛋白的基于SAN的结构研究的膜模拟模型。我们强调来自氘代的各向同性双裂缝的SANS信号可以在100%D2O的缓冲液中形成对比匹配,允许我们分别并特别关注来自与膜脂质相互作用的蛋白质的信号。我们将该方法应用于Dys-R11-15蛋白,一种人营养蛋白的中心结构域的片段,已知与脂质相互作用,并且我们能够单独从蛋白质中恢复信号。这种方法引起了新的视角,以确定与脂质膜相互作用的外周膜蛋白的溶液结构,并且可以延伸到整体膜蛋白。

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