首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Endophilin recruitment drives membrane curvature generation through coincidence detection of GPCR loop interactions and negative lipid charge
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Endophilin recruitment drives membrane curvature generation through coincidence detection of GPCR loop interactions and negative lipid charge

机译:内皮素招募通过GPCR环相互作用的重合检测驱动膜曲率产生和负脂质电荷

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摘要

Endophilin plays key roles during endocytosis of cellular receptors, including generating membrane curvature to drive internalization. Electrostatic interactions between endophilin’s BIN/Amphiphysin/Rvs domain and anionic membrane lipids have been considered the major driving force in curvature generation. However, the SH3 domain of endophilin also interacts with the proline-rich third intracellular loop (TIL) of various G-protein-coupled receptors (GPCRs), and it is unclear whether this interaction has a direct role in generating membrane curvature during endocytosis. To examine this, we designed model membranes with a membrane density of 1400 receptors per μm2 represented by a covalently conjugated TIL region from the β1-adrenergic receptor. We observed that TIL recruits endophilin to membranes composed of 95 mol% of zwitterionic lipids via the SH3 domain. More importantly, endophilin recruited via TIL tubulates vesicles and gets sorted onto highly curved membrane tubules. These observations indicate that the cellular membrane bending and curvature sensing activities of endophilin can be facilitated through detection of the TIL of activated GPCRs in addition to binding to anionic lipids. Furthermore, we show that TIL electrostatically interacts with membranes composed of anionic lipids. Therefore, anionic lipids can modulate TIL/SH3 domain binding. Overall, our findings imply that an interplay between TIL, charged membrane lipids, BAR domain, and SH3 domain could exist in the biological system and that these components may act in coordination to regulate the internalization of cellular receptors.
机译:内科蛋白在细胞受体的内吞作用中起关键作用,包括产生膜曲率以驱动内化。内皮蛋白的垃圾箱/ amphiphysin / RVS结构域和阴离子膜脂质之间的静电相互作用被认为是曲率产生的主要驱动力。然而,内皮蛋白的SH3结构域也与各种G蛋白偶联受体(GPCR)的富含脯氨酸的第三细胞内环(TIL)相互作用,并且目前还不清楚该相互作用在内吞作用中产生膜曲率的直接作用。为了检查这一点,我们设计了由来自β1-肾上腺素能受体的共价缀合的TIL区域表示的每μm2表示的具有1400个受体的模型膜。我们观察到,通过SH3结构域通过95摩尔%的两性离子脂质组成的膜来促进内托宾。更重要的是,通过TIL管醛囊泡募集的内腔并排序到高弯曲的膜小管上。这些观察结果表明,除了与阴离子脂质结合之外,还可以通过检测活化的GPCR的直到活化的GPCR来促进内托萘的细胞膜弯曲和曲率感测。此外,我们表明TIL与由阴离子脂质组成的膜静电相互作用。因此,阴离子脂质可以调节TIL / SH3结构域结合。总体而言,我们的研究结果意味着在生物系统中可以存在TIL,带电膜脂质,酒吧结构域和SH3结构域之间的相互作用,并且这些组分可以协调以调节细胞受体的内化。

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