Proteoliposome fusion to artificial lipid bilayer promoted by domains of polyunsaturated phosphatidylethanolamine

被引:3
|
作者
Goh, Melvin Wei Shern [1 ]
Hirano-Iwata, Ayumi [2 ,3 ]
Niwano, Michio [4 ]
Tero, Ryugo [1 ]
机构
[1] Toyohashi Univ Technol, Dept Environm & Life Sci, Toyohashi, Aichi 4418580, Japan
[2] Tohoku Univ, Adv Inst Mat Res, Sendai, Miyagi 9808577, Japan
[3] Tohoku Univ, Res Inst Elect Commun, Sendai, Miyagi 9808577, Japan
[4] Tohoku Fukushi Univ, Kansei Fukushi Res Inst, Sendai, Miyagi 9893201, Japan
关键词
VESICLE FUSION; MEMBRANE; DYNAMICS; RECONSTITUTION; MECHANISM; CHANNELS; PACKING;
D O I
10.7567/1347-4065/ab1397
中图分类号
O59 [应用物理学];
学科分类号
摘要
There is growing concern regarding the fusion efficiency of proteoliposomes (PLs) as it is vital for the reconstitution of membrane proteins into artificial lipid bilayers. Recently, we discovered the formation of microdomains which act as a specific fusion site for PLs in a ternary lipid bilayer consisting of phosphatidylcholine (PC), phosphatidylethanolamine (PE) and cholesterol (Chol). Based on our discovery of the microdomains, we propose that an increment of the microdomain area by manipulating the composition of lipid bilayers would ultimately lead to an improvement of PL fusion efficiency. In this study, we investigated the effects of didocosahexaenoyl-PE (22: 6-PE), which has polyunsaturated fatty acids, on the fusion efficiency of PLs into a supported lipid bilayer comprising of PC, PE and Chol. We found that 22: 6-PE increased the area fraction of microdomains and promoted the PL fusion efficiency compared with egg-derived PE. (C) 2019 The Japan Society of Applied Physics
引用
收藏
页数:6
相关论文
共 50 条
  • [1] Formation of Cell Membrane Component Domains in Artificial Lipid Bilayer
    Ryugo Tero
    Kohei Fukumoto
    Toshinori Motegi
    Miyu Yoshida
    Michio Niwano
    Ayumi Hirano-Iwata
    Scientific Reports, 7
  • [2] Formation of Cell Membrane Component Domains in Artificial Lipid Bilayer
    Tero, Ryugo
    Fukumoto, Kohei
    Motegi, Toshinori
    Yoshida, Miyu
    Niwano, Michio
    Hirano-Iwata, Ayumi
    SCIENTIFIC REPORTS, 2017, 7
  • [3] Bilayer distribution of phosphatidylserine and phosphatidylethanolamine in lipid vesicles
    Roy, MT
    Gallardo, M
    Estelrich, J
    BIOCONJUGATE CHEMISTRY, 1997, 8 (06) : 941 - 945
  • [4] Texture of lipid bilayer domains
    Bernchou, Uffe
    Brewer, Jonathan
    Midtiby, Henrik S.
    Ipsen, John H.
    Bagatolli, Luis A.
    Simonsen, Adam C.
    Journal of the American Chemical Society, 2009, 131 (40): : 14130 - 14131
  • [5] Texture of Lipid Bilayer Domains
    Bernchou, Uffe
    Brewer, Jonathan
    Midtiby, Henrik S.
    Ipsen, John. H.
    Bagatolli, Luis A.
    Simonsen, Adam C.
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (40) : 14130 - +
  • [6] Vesicle Fusion with Artificial Bilayer Lipid Membrane Induced by Electrostatic Interaction
    Oshima, Azusa
    Sumitomo, Koji
    BUNSEKI KAGAKU, 2019, 68 (01) : 23 - 32
  • [7] Interfacial tension of bilayer lipid membrane formed from phosphatidylethanolamine
    Petelska, AD
    Figaszewski, ZA
    BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2002, 1567 (1-2): : 79 - 86
  • [8] Towards theory of the lipid bilayer domains
    Smorodin, VY
    BIOPHYSICAL JOURNAL, 2005, 88 (01) : 237A - 238A
  • [9] Molecular dynamics simulation of a polyunsaturated lipid bilayer susceptible to lipid peroxidation
    Bachar, M
    Brunelle, P
    Tieleman, DP
    Rauk, A
    JOURNAL OF PHYSICAL CHEMISTRY B, 2004, 108 (22): : 7170 - 7179
  • [10] Planar confined water organisation in lipid bilayer stacks of phosphatidylcholine and phosphatidylethanolamine
    Vancuylenberg, Gerome
    Sadeghpour, Amin
    Tyler, Arwen I. I.
    Rappolt, Michael
    SOFT MATTER, 2023, 19 (27) : 5179 - 5192