School of Chemistry, University of Southampton, Highfield, Southampton SO17 1BJ, UK.
Biochemistry. 2010 Dec 28;49(51):10796-802. doi: 10.1021/bi101743w. Epub 2010 Dec 6.
The N-terminal domain of fukutin-I has been implicated in the localization of the protein in the endoplasmic reticulum and Golgi Apparatus. It has been proposed to mediate this through its interaction with the thinner lipid bilayers found in these compartments. Here we have employed multiscale molecular dynamics simulations and circular dichroism spectroscopy to explore the structure, stability, and orientation of the short 36-residue N-terminus of fukutin-I (FK1TMD) in lipids with differing tail lengths. Our results show that FK1TMD adopts a stable helical conformation in phosphatidylcholine lipids when oriented with its principal axis perpendicular to the bilayer plane. The stability of the helix is largely insensitive to the lipid tail length, preventing hydrophobic mismatch by virtue of its mobility and ability to tilt within the lipid bilayers. This suggests that changes in FK1TMD tilt in response to bilayer properties may be implicated in the regulation of its trafficking. Coarse-grained simulations of the complex Golgi membrane suggest the N-terminal domain may induce the formation of microdomains in the surrounding membrane through its preferential interaction with 1,2-dipalmitoyl-sn-glycero-3-phosphatidylinositol 4,5-bisphosphate lipids.
fukutin-I 的 N 端结构域与蛋白在粗面内质网和高尔基体中的定位有关。它可能通过与这些细胞器中较薄的脂双层相互作用来介导这种定位。在这里,我们采用多尺度分子动力学模拟和圆二色光谱法来研究具有不同尾部长度的脂双层中 36 个残基的 fukutin-I(FK1TMD)的 N 端的结构、稳定性和取向。我们的结果表明,当 FK1TMD 的主轴线垂直于双层平面时,它在磷脂酰胆碱脂质中呈稳定的螺旋构象。螺旋的稳定性对脂质尾部长度的变化不敏感,通过其在脂质双层中的移动性和倾斜能力防止了疏水性失配。这表明 FK1TMD 对双层性质的倾斜变化可能与其运输的调节有关。复杂高尔基体膜的粗粒化模拟表明,N 端结构域可能通过与 1,2-二棕榈酰-sn-甘油-3-磷酸肌醇 4,5-二磷酸脂质的优先相互作用,在周围膜中诱导微域的形成。