Inverse Conformational Selection in Lipid-Protein Binding

被引:18
作者
Bacle, Amelie [1 ]
Buslaev, Pavel [2 ,3 ,4 ]
Garcia-Fandino, Rebeca [5 ,6 ]
Favela-Rosales, Fernando [7 ]
Ferreira, Tiago Mendes [8 ]
Fuchs, Patrick F. J. [9 ,10 ]
Gushchin, Ivan [4 ]
Javanainen, Matti [11 ]
Kiirikki, Anne M. [12 ]
Madsen, Jesper J. [13 ,14 ]
Melcr, Josef [15 ,16 ]
Rodriguez, Paula Milan [9 ]
Miettinen, Markus S. [17 ]
Ollila, O. H. Samuli [12 ]
Papadopoulos, Chris G. [18 ]
Peon, Antonio [6 ]
Piggot, Thomas J. [19 ]
Pineiro, Angel [20 ]
Virtanen, Salla, I [12 ]
机构
[1] Univ Poitiers, Lab Cooperatif Lipotoxic & Channelopathies ConicM, F-86000 Poitiers, France
[2] Univ Jyvaskyla, Nanosci Ctr, Jyvaskyla 40014, Finland
[3] Univ Jyvaskyla, Dept Chem, Jyvaskyla 40014, Finland
[4] Moscow Inst Phys & Technol, Res Ctr Mol Mech Aging & Age Related Dis, Dolgoprudnyi 141701, Russia
[5] Univ Santiago Compostela, Ctr Res Biol Chem & Mol Mat CiQUS, E-15782 Santiago De Compostela, Spain
[6] Univ Porto, Fac Ciencias, Ctr Investigao Quim, Dept Quim & Bioquim,CIQUP, P-4169007 Porto, Portugal
[7] Tecnol Nacl Mexico ITS Zacatecas Occidente, Dept Ciencias Basicas, Sombrerete 99102, Zacatecas, Mexico
[8] Martin Luther Univ Halle Wittenberg, NMR Grp, Inst Phys, D-06120 Halle, Saale, Germany
[9] Sorbonne Univ, PSL Univ, Lab Biomol LBM, CNRS,Ecole Normale Super, F-75005 Paris, France
[10] Univ Paris, UFR Sci Vivant, F-75013 Paris, France
[11] Czech Acad Sci, Inst Organ Chem & Biochem, CZ-16610 Prague, Czech Republic
[12] Univ Helsinki, Inst Biotechnol, Helsinki 00014, Finland
[13] Univ Chicago, Dept Chem, Chicago, IL 60637 USA
[14] Univ S Florida, Coll Publ Hlth, Global & Planetary Hlth, Tampa, FL 33612 USA
[15] Univ Groningen, Groningen Biomol Sci & Biotechnol Inst, NL-9747 AG Groningen, Netherlands
[16] Univ Groningen, Zernike Inst Adv Mat, NL-9747 AG Groningen, Netherlands
[17] Max Planck Inst Colloids & Interfaces, Dept Theory & Biosyst, D-14424 Potsdam, Germany
[18] Univ Paris Saclay, Inst Integrat Biol Cell I2BC, CNRS, CEA, F-91198 Gif Sur Yvette, France
[19] Univ Southampton, Chem, Southampton SO17 1BJ, Hants, England
[20] Univ Santiago Compostela, Fac Fis, Dept Fis Aplicada, E-15782 Santiago De Compostela, Spain
基金
芬兰科学院;
关键词
MEMBRANE-LIPIDS; PHOSPHATIDYLCHOLINE HEADGROUP; PHOSPHOLIPID-BINDING; MAGNETIC-RESONANCE; SEGMENTAL ORDER; ELECTRIC CHARGE; MAS NMR; DEUTERIUM; DYNAMICS; BILAYERS;
D O I
10.1021/jacs.1c05549
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Interest in lipid interactions with proteins and other biomolecules is emerging not only in fundamental biochemistry but also in the field of nanobiotechnology where lipids are commonly used, for example, in carriers of mRNA vaccines. The outward-facing components of cellular membranes and lipid nanoparticles, the lipid headgroups, regulate membrane interactions with approaching substances, such as proteins, drugs, RNA, or viruses. Because lipid headgroup conformational ensembles have not been experimentally determined in physiologically relevant conditions, an essential question about their interactions with other biomolecules remains unanswered: Do headgroups exchange between a few rigid structures, or fluctuate freely across a practically continuous spectrum of conformations? Here, we combine solid-state NMR experiments and molecular dynamics simulations from the NMRlipids Project to resolve the conformational ensembles of headgroups of four key lipid types in various biologically relevant conditions. We find that lipid headgroups sample a wide range of overlapping conformations in both neutral and charged cellular membranes, and that differences in the headgroup chemistry manifest only in probability distributions of conformations. Furthermore, the analysis of 894 protein-bound lipid structures from the Protein Data Bank suggests that lipids can bind to proteins in a wide range of conformations, which are not limited by the headgroup chemistry. We propose that lipids can select a suitable headgroup conformation from the wide range available to them to fit the various binding sites in proteins. The proposed inverse conformational selection model will extend also to lipid binding to targets other than proteins, such as drugs, RNA, and viruses.
引用
收藏
页码:13701 / 13709
页数:9
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