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血清素改变磷脂和胆固醇三元混合物的相平衡。

Serotonin Alters the Phase Equilibrium of a Ternary Mixture of Phospholipids and Cholesterol.

作者信息

Engberg Oskar, Bochicchio Anna, Brandner Astrid F, Gupta Ankur, Dey Simli, Böckmann Rainer A, Maiti Sudipta, Huster Daniel

机构信息

Institute for Medical Physics and Biophysics, University of Leipzig, Leipzig, Germany.

Computational Biology, Department of Biology, Friedrich-Alexander University Erlangen-Nürnberg, Erlangen, Germany.

出版信息

Front Physiol. 2020 Oct 23;11:578868. doi: 10.3389/fphys.2020.578868. eCollection 2020.

Abstract

Unsaturated and saturated phospholipids tend to laterally segregate, especially in the presence of cholesterol. Small molecules such as neurotransmitters, toxins, drugs etc. possibly modulate this lateral segregation. The small aromatic neurotransmitter serotonin (5-HT) has been found to bind to membranes. We studied the lipid structure and packing of a ternary membrane mixture consisting of palmitoyl-oleoyl-phosphatidylcholine, palmitoyl-sphingomyelin, and cholesterol at a molar ratio of 4/4/2 in the absence and in the presence of 5-HT, using a combination of solid-state H NMR, atomic force microscopy, and atomistic molecular dynamics (MD) simulations. Both NMR and MD report formation of a liquid ordered (L ) and a liquid disordered (L ) phase coexistence with small domains. Lipid exchange between the domains was fast such that single component H NMR spectra are detected over a wide temperature range. A drastic restructuring of the domains was induced when 5-HT is added to the membranes at a 9 mol% concentration relative to the lipids. H NMR spectra of all components of the mixture showed two prominent contributions indicative of molecules of the same kind residing both in the disordered and the ordered phase. Compared to the data in the absence of 5-HT, the lipid chain order in the disordered phase was further decreased in the presence of 5-HT. Likewise, addition of serotonin increased lipid chain order within the ordered phase. These characteristic lipid chain order changes were confirmed by MD simulations. The 5-HT-induced larger difference in lipid chain order results in more pronounced differences in the hydrophobic thickness of the individual membrane domains. The correspondingly enlarged hydrophobic mismatch between ordered and disordered phases is assumed to increase the line tension at the domain boundary, which drives the system into formation of larger size domains. These results not only demonstrate that small membrane binding molecules such as neurotransmitters have a profound impact on essential membrane properties. It also suggests a mechanism by which the interaction of small molecules with membranes can influence the function of membrane proteins and non-cognate receptors. Altered membrane properties may modify lateral sorting of membrane protein, membrane protein conformation, and thus influence their function as suspected for neurotransmitters, local anesthetics, and other small drug molecules.

摘要

不饱和磷脂和饱和磷脂往往会发生侧向分离,尤其是在有胆固醇存在的情况下。神经递质、毒素、药物等小分子可能会调节这种侧向分离。已发现小分子芳香族神经递质血清素(5-羟色胺,5-HT)可与膜结合。我们使用固态氢核磁共振(H NMR)、原子力显微镜和原子分子动力学(MD)模拟相结合的方法,研究了在不存在和存在5-HT的情况下,由棕榈酰油酰磷脂酰胆碱、棕榈酰鞘磷脂和胆固醇以4/4/2的摩尔比组成的三元膜混合物的脂质结构和堆积情况。核磁共振和分子动力学模拟均表明形成了液相有序(L )和液相无序(L )相共存的小区域。区域间的脂质交换很快,以至于在很宽的温度范围内都能检测到单一组分的氢核磁共振谱。当以相对于脂质9 mol%的浓度向膜中添加5-HT时,会引起区域的剧烈重组。混合物中所有组分的氢核磁共振谱显示出两个显著的贡献,表明同类分子同时存在于无序相和有序相中。与不存在5-HT时的数据相比,在存在5-HT的情况下,无序相中的脂质链有序性进一步降低。同样,血清素的添加增加了有序相内的脂质链有序性。这些特征性的脂质链有序性变化通过分子动力学模拟得到了证实。5-HT诱导的脂质链有序性的更大差异导致各个膜区域的疏水厚度出现更明显的差异。有序相和无序相之间相应增大的疏水失配被认为会增加区域边界处的线张力,从而促使系统形成更大尺寸的区域。这些结果不仅表明神经递质等与膜结合的小分子对基本的膜性质有深远影响。它还提出了一种机制,通过该机制小分子与膜的相互作用可以影响膜蛋白和非同源受体的功能。膜性质的改变可能会改变膜蛋白的侧向分选、膜蛋白构象,从而如对神经递质、局部麻醉剂和其他小药物分子所怀疑的那样影响它们的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/faca/7645218/1f966f3a6d55/fphys-11-578868-g001.jpg

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