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首页> 外文期刊>Journal of the American Chemical Society >Inverse Conformational Selection in Lipid-Protein Binding
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Inverse Conformational Selection in Lipid-Protein Binding

机译:脂蛋白结合中的逆构象选择

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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.
机译:对蛋白质和其他生物分子的脂质相互作用的兴趣不仅在基础生物化学中出现,而且在纳米生物学领域中出现,其中脂质通常用于MRNA疫苗的载体。细胞膜和脂质纳米颗粒的外观组分,脂质头组,调节与接近物质的膜相互作用,例如蛋白质,药物,RNA或病毒。因为脂质头组一致性集合未经在生理相关条件下实验确定,所以关于它们与其他生物分子的相互作用的基本问题仍未得到答复:在几个刚性结构之间进行头部交换,或者在实际上连续的概要波动之间进行波动,或者在实际上连续的围绕的圆谱之间进行波动。在这里,我们将固态的NMR实验和分子动力学模拟与NMRLIPID项目相结合,以在各种生物学相关条件下解决四种关键脂质类型的组合组合组合。我们发现脂质头组在中性和带电的细胞膜中样本在中性和带电细胞膜中的各种重叠构象,并且只在构象的概率分布中表现出头组化学的差异。此外,来自蛋白质数据库的894蛋白结合的脂质结构的分析表明,脂质可以在很多符合符号中与蛋白质结合,这不受头组化学的限制。我们提出,脂质可以从其可用的范围内选择合适的头组符合,以适合蛋白质中的各种结合位点。所提出的逆构象选择模型也将延伸至脂质结合到蛋白质,例如药物,RNA和病毒之外的靶标。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第34期|13701-13709|共9页
  • 作者单位

    Laboratoire Cooperatif 'Lipotoxicity and Channelopathies - ConicMeds' Universite de Poitiers Poitiers 86000 France;

    Nanoscience Center and Department of Chemistry University of Jyvaeskylae Jyvaeskylae 40014 Finland Research Center for Molecular Mechanisms of Aging and Age-related Diseases Moscow Institute of Physics and Technology Dolgoprudny 141701 Russia;

    Center for Research in Biological Chemistry and Molecular Materials (CiQUS) Universidade de Santiago de Compostela Santiago de Compostela E-15782 Spain CIQUP Centro de Investigao em Quimica Departamento de Quimica e Bioquimica Faculdade de Ciencias Universidade do Porto Porto 4169-007 Portugal;

    Departamento de Ciencias Basicas Tecnologico Nacional de Mexico - ITS Zacatecas Occidente Sombrerete Zacatecas 99102 Mexico;

    NMR group - Institute for Physics Martin Luther University Halle-Wittenberg Halle (Saale) 06120 Germany;

    Ecole Normale Superieure PSL University CNRS Laboratoire des Biomolecules (LBM) Sorbonne Universite Paris 75005 France UFR Sciences du Vivant Universite de Paris Paris 75013 France;

    Research Center for Molecular Mechanisms of Aging and Age-related Diseases Moscow Institute of Physics and Technology Dolgoprudny 141701 Russia;

    Institute of Organic Chemistry and Biochemistry Czech Academy of Sciences Prague CZ-16610 Czech Republic;

    Institute of Biotechnology University of Helsinki Helsinki 00014 Finland;

    Department of Chemistry The University of Chicago Chicago Illinois 60637 United States Global and Planetary Health College of Public Health University of South Florida Tampa Florida 33612 United States;

    Groningen Biomolecular Sciences and Biotechnology Institute and The Zernike Institute for Advanced Materials University of Groningen Groningen 9747 AG The Netherlands;

    Ecole Normale Superieure PSL University CNRS Laboratoire des Biomolecules (LBM) Sorbonne Universite Paris 75005 France;

    Department of Theory and Bio-Systems Max Planck Institute of Colloids and Interfaces Potsdam 14424 Germany;

    Institute of Biotechnology University of Helsinki Helsinki 00014 Finland;

    CEA CNRS Institute for Integrative Biology of the Cell (I2BC) Universite Paris-Saclay Gif-sur-Yvette 91198 France;

    CIQUP Centro de Investigao em Quimica Departamento de Quimica e Bioquimica Faculdade de Ciencias Universidade do Porto Porto 4169-007 Portugal;

    Chemistry University of Southampton Highfield Southampton SO17 1BJ United Kingdom;

    Departamento de Fisica Aplicada Facultade de Fisica Universidade de Santiago de Compostela Santiago de Compostela E-15782 Spain;

    Institute of Biotechnology University of Helsinki Helsinki 00014 Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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