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Binding of the GTPase Sar1 to a Lipid Membrane Monolayer: Insertion and Orientation Studied by Infrared Reflection–Absorption Spectroscopy

机译:GTPase Sar1绑定到脂质膜单层:插入和定向的红外反射吸收光谱研究。

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摘要

Membrane-interacting proteins are polyphilic polymers that engage in dynamic protein–protein and protein–lipid interactions while undergoing changes in conformation, orientation and binding interfaces. Predicting the sites of interactions between such polypeptides and phospholipid membranes is still a challenge. One example is the small eukaryotic GTPase Sar1, which functions in phospholipid bilayer remodeling and vesicle formation as part of the multimeric coat protein complex (COPII). The membrane interaction of Sar1 is strongly dependent on its N-terminal 23 amino acids. By monolayer adsorption experiments and infrared reflection-absorption spectroscopy (IRRAS), we elucidate the role of lipids in inducing the amphipathicity of this N-terminal stretch, which inserts into the monolayer as an amphipathic helix (AH). The AH inserting angle is determined and is consistent with the philicities and spatial distribution of the amino acid monomers. Using an advanced method of IRRAS data evaluation, the orientation of Sar1 with respect to the lipid layer prior to the recruitment of further COPII proteins is determined. The result indicates that only a slight reorientation of the membrane-bound Sar1 is needed to allow coat assembly. The time-course of the IRRAS analysis corroborates a role of slow GTP hydrolysis in Sar1 desorption from the membrane.
机译:膜相互作用蛋白是多亲聚合物,它们参与动态的蛋白质-蛋白质和蛋白质-脂质相互作用,同时发生构象,方向和结合界面的变化。预测此类多肽与磷脂膜之间相互作用的位点仍然是一个挑战。一个例子是小的真核生物GTPase Sar1,它作为多聚外壳蛋白复合物(COPII)的一部分,在磷脂双层重塑和囊泡形成中起作用。 Sar1的膜相互作用强烈依赖于其N端23个氨基酸。通过单层吸附实验和红外反射吸收光谱(IRRAS),我们阐明了脂质在诱导此N末端延伸的两亲性中的作用,该N端延伸作为两亲性螺旋(AH)插入单层。确定了AH插入角并与氨基酸单体的亲和力和空间分布相一致。使用IRRAS数据评估的高级方法,在募集更多COPII蛋白之前,确定Sar1相对于脂质层的方向。结果表明,仅需对膜结合的Sar1进行轻微的重新定向即可进行涂层组装。 IRRAS分析的时间过程证实了缓慢的GTP水解在Sar1从膜上解吸的作用。

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