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两亲性螺旋对膜曲率的感知受周围蛋白质骨架的调节。

Membrane Curvature Sensing by Amphipathic Helices Is Modulated by the Surrounding Protein Backbone.

作者信息

Doucet Christine M, Esmery Nina, de Saint-Jean Maud, Antonny Bruno

机构信息

IPMC, CNRS UMR 7275, 660 route de Valbonne, 06560 -Valbonne, France.

出版信息

PLoS One. 2015 Sep 14;10(9):e0137965. doi: 10.1371/journal.pone.0137965. eCollection 2015.

Abstract

Membrane curvature is involved in numerous biological pathways like vesicle trafficking, endocytosis or nuclear pore complex assembly. In addition to its topological role, membrane curvature is sensed by specific proteins, enabling the coordination of biological processes in space and time. Amongst membrane curvature sensors are the ALPS (Amphipathic Lipid Packing Sensors). ALPS motifs are short peptides with peculiar amphipathic properties. They are found in proteins targeted to distinct curved membranes, mostly in the early secretory pathway. For instance, the ALPS motif of the golgin GMAP210 binds trafficking vesicles, while the ALPS motif of Nup133 targets nuclear pores. It is not clear if, besides curvature sensitivity, ALPS motifs also provide target specificity, or if other domains in the surrounding protein backbone are involved. To elucidate this aspect, we studied the subcellular localization of ALPS motifs outside their natural protein context. The ALPS motifs of GMAP210 or Nup133 were grafted on artificial fluorescent probes. Importantly, ALPS motifs are held in different positions and these contrasting architectures were mimicked by the fluorescent probes. The resulting chimeras recapitulated the original proteins localization, indicating that ALPS motifs are sufficient to specifically localize proteins. Modulating the electrostatic or hydrophobic content of Nup133 ALPS motif modified its avidity for cellular membranes but did not change its organelle targeting properties. In contrast, the structure of the backbone surrounding the helix strongly influenced targeting. In particular, introducing an artificial coiled-coil between ALPS and the fluorescent protein increased membrane curvature sensitivity. This coiled-coil domain also provided membrane curvature sensitivity to the amphipathic helix of Sar1. The degree of curvature sensitivity within the coiled-coil context remains correlated to the natural curvature sensitivity of the helices. This suggests that the chemistry of ALPS motifs is a key parameter for membrane curvature sensitivity, which can be further modulated by the surrounding protein backbone.

摘要

膜曲率参与了众多生物途径,如囊泡运输、内吞作用或核孔复合体组装。除了其拓扑学作用外,膜曲率还能被特定蛋白质感知,从而实现生物过程在空间和时间上的协调。膜曲率传感器中有ALPS(两亲性脂质堆积传感器)。ALPS基序是具有特殊两亲性的短肽。它们存在于靶向不同弯曲膜的蛋白质中,主要在早期分泌途径中。例如,高尔基体蛋白GMAP210的ALPS基序结合运输囊泡,而Nup133的ALPS基序靶向核孔。目前尚不清楚除了曲率敏感性外,ALPS基序是否还提供靶标特异性,或者周围蛋白质主链中的其他结构域是否参与其中。为了阐明这一方面,我们研究了ALPS基序在其自然蛋白质背景之外的亚细胞定位。GMAP210或Nup133的ALPS基序被嫁接到人工荧光探针上。重要的是,ALPS基序处于不同位置,荧光探针模拟了这些不同的结构。所得嵌合体重现了原始蛋白质的定位,表明ALPS基序足以特异性定位蛋白质。调节Nup133 ALPS基序的静电或疏水含量会改变其对细胞膜的亲和力,但不会改变其细胞器靶向特性。相反,围绕螺旋的主链结构强烈影响靶向作用。特别是,在ALPS和荧光蛋白之间引入人工卷曲螺旋增加了膜曲率敏感性。这个卷曲螺旋结构域也赋予了Sar1的两亲性螺旋膜曲率敏感性。卷曲螺旋结构背景下的曲率敏感程度仍然与螺旋的天然曲率敏感性相关。这表明ALPS基序的化学性质是膜曲率敏感性的关键参数,其可被周围蛋白质主链进一步调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff56/4569407/25d46bd44862/pone.0137965.g001.jpg

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