Department of Physics, University of South Florida, Tampa, FL 33620, United States of America.
National High Magnetic Field Laboratory, Florida State University, Tallahassee, FL 32310, United States of America.
Biochim Biophys Acta Biomembr. 2020 Oct 1;1862(10):183397. doi: 10.1016/j.bbamem.2020.183397. Epub 2020 Jun 11.
The amphipathic helix 0 of endophilin (i.e., H0-Endo) is important to membrane binding, but its function of curvature generation remains controversial. We used electron paramagnetic resonance (EPR) spectroscopy to study effects of H0-Endo on membrane material properties. We found that H0-Endo reduced lipid chain mobility and increased bilayer polarity, i.e., making the bilayer interior more polar. Lipid-dependent examination revealed that anionic lipids augmented the effect of H0-Endo, while cholesterol had a minimal impact. Our EPR spectroscopy of magnetically aligned bicelles showed that as the peptide-to-lipid ratio increased, the lipid chain orientational order decreased gradually, followed by a sudden loss. We discuss an interfacial-bound model of the amphipathic H0-Endo to account for all EPR data. We used atomic force microscopy and fluorescence microscopy to explore membrane morphological changes. We found that H0-Endo caused the formation of micron-sized holes in mica-supported planar bilayers. Hole formation is likely caused by two competing forces - the adhesion force exerted by the substrate represses bilayer budging, whereas the line tension originating from peptide clustering has a tendency of destabilizing bilayer organization. In the absence of substrate influences, membrane curvature induction was manifested by generating small vesicles surrounding giant unilamellar vesicles. Our results of membrane perforation and vesiculation suggest that the functionality of H0-Endo is more than just coordinating membrane binding of endophilin.
亲环素的两性螺旋 0 区(即 H0-Endo)对于膜结合很重要,但它产生曲率的功能仍存在争议。我们使用电子顺磁共振(EPR)光谱研究了 H0-Endo 对膜材料性质的影响。我们发现 H0-Endo 降低了脂质链的流动性并增加了双层极性,即增加了双层内部的极性。依赖脂质的检测表明,阴离子脂质增强了 H0-Endo 的作用,而胆固醇的影响最小。我们对磁定向双联体的 EPR 光谱研究表明,随着肽与脂质的比例增加,脂质链的取向有序性逐渐降低,随后突然丧失。我们讨论了一个亲环素 H0-Endo 的界面结合模型来解释所有的 EPR 数据。我们使用原子力显微镜和荧光显微镜来探索膜形态变化。我们发现 H0-Endo 在云母支持的平面双层中引起了微米大小的孔的形成。孔的形成可能是由两种竞争的力引起的 - 基底施加的粘附力抑制了双层的凸起,而源自肽聚类的线张力有使双层组织不稳定的倾向。在没有基底影响的情况下,通过在大单层囊泡周围生成小囊泡来表现出膜曲率诱导。我们的膜穿孔和囊泡形成的结果表明,H0-Endo 的功能不仅仅是协调亲环素的膜结合。