Pogozheva Irina D, Armstrong Grant A, Kong Lingyang, Hartnagel Timothy J, Carpino Carly A, Gee Stephen E, Picarello Danielle M, Rubin Amanda S, Lee Jumin, Park Soohyung, Lomize Andrei L, Im Wonpil
Department of Medicinal Chemistry, College of Pharmacy, University of Michigan, Ann Arbor, Michigan 48109, United States.
Department of Biological Sciences, Lehigh University, Bethlehem, Pennsylvania 18015, United States.
J Chem Inf Model. 2022 Feb 28;62(4):1036-1051. doi: 10.1021/acs.jcim.1c01514. Epub 2022 Feb 15.
We present a comparative all-atom molecular dynamics simulation study of 18 biomembrane systems with lipid compositions corresponding to eukaryotic, bacterial, and archaebacterial membranes together with three single-component lipid bilayers. A total of 105 lipid types used in this study include diverse sterols and glycerol-based lipids with acyl chains of various lengths, unsaturation degrees, and branched or cyclic moieties. Our comparative analysis provides deeper insight into the influences of sterols and lipid unsaturation on the structural and mechanical properties of these biomembranes, including water permeation into the membrane hydrocarbon core. For sterol-containing membranes, sterol fraction is correlated with the membrane thickness, the area compressibility modulus, and lipid order but anticorrelated with the area per lipid and sterol tilt angles. Similarly, for all 18 biomembranes, lipid order is correlated with the membrane thickness and area compressibility modulus. Sterols and lipid unsaturation produce opposite effects on membrane thickness, but only sterols influence water permeation into the membrane. All membrane systems are accessible for public use in CHARMM-GUI Archive. They can be used as templates to expedite future modeling of realistic cell membranes with transmembrane and peripheral membrane proteins to study their structure, dynamics, molecular interactions, and function in a nativelike membrane environment.
我们展示了一项对18个生物膜系统的全原子分子动力学模拟比较研究,这些生物膜系统的脂质组成分别对应于真核生物、细菌和古细菌膜,以及三个单组分脂质双层。本研究中使用的总共105种脂质类型包括各种不同的固醇和基于甘油的脂质,其酰基链具有不同的长度、不饱和度以及分支或环状部分。我们的比较分析更深入地洞察了固醇和脂质不饱和度对这些生物膜的结构和力学性质的影响,包括水渗透进入膜的烃核心。对于含固醇的膜,固醇分数与膜厚度、面积压缩模量和脂质有序度相关,但与每个脂质的面积和固醇倾斜角呈负相关。同样,对于所有18个生物膜,脂质有序度与膜厚度和面积压缩模量相关。固醇和脂质不饱和度对膜厚度产生相反的影响,但只有固醇会影响水渗透进入膜。所有膜系统均可在CHARMM-GUI存档中供公众使用。它们可以用作模板,以加快未来对具有跨膜和外周膜蛋白的真实细胞膜进行建模,从而在类似天然的膜环境中研究其结构、动力学、分子相互作用和功能。