Structure Analysis of Viral Assembly Mechanisms
Structure Analysis of Viral Assembly Mechanisms
批准号:
7619592
负责人:
Mark Jay Yeager
金额:
$30.91万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-05-01 至 2011-04-30
关键词:
Acquired Immunodeficiency SyndromeAlphavirusBindingBiochemicalBiochemical GeneticsBiochemistryBiological ModelsC-terminalCaliberCapsidCellsCleaved cellComplexCountryCryoelectron MicroscopyCrystallizationDNA Sequence RearrangementDefectDevelopmentFundingGaggingGeneticGenomeGoalsHIVHIV-1Image AnalysisIn VitroIndividualLaboratoriesLengthMapsMembraneModelingMolecularMolecular ModelsMorphologyMurine leukemia virusN-terminalNucleocapsidPeptide HydrolasesPopulationPositioning AttributeProcessProteinsRNAResearchResearch PersonnelResolutionRetinal ConeRetroviridaeRibonucleoproteinsRoentgen RaysShapesStagingStructureStudy modelsSystemTechniquesTherapeuticTranslatingTubeVariantViralVirionVirusWorkX-Ray Crystallographybasedesigndrug efficacygag Gene Productsimage processingin vivoinsightmolecular modelingmutantnovelnovel therapeuticspandemic diseaseparticleprogramsreconstructionresistant strainvirology
中文摘要
描述(由申请人提供):本研究计划的总体目标是探索最终导致传染性病毒组装的协调大分子相互作用的基本原理。自1981年以来,已有2500多万人死于艾滋病。虽然艾滋病的病原体HIV-1已经得到了广泛的研究,但其复制周期的许多阶段仍然知之甚少。逆转录病毒的组装和成熟是一个重要但定义不明确的阶段,这将是我们下一个资金周期研究的重点。在病毒复制的后期,新翻译的逆转录病毒Gag蛋白组装成球形的未成熟衣壳,然后从细胞中释放出来。伴随着释放,逆转录病毒经历一个成熟的过程,在这个过程中,Gag被病毒蛋白酶切割成几个较小的结构域(MA、CA和NC),引发戏剧性的形态变化,使颗粒具有感染性。在成熟的病毒粒子中,MA仍然与病毒被膜结合,而CA组装成一个成熟的衣壳,包围着由RNA基因组和NC形成的核糖核蛋白复合体。未成熟衣壳和成熟衣壳缺乏全球对称性,阻碍了对逆转录病毒的高分辨率结构研究。然而,广泛的生化和遗传学研究导致了显示全球对称性的GAG和CA的模型系统的发展。在低分辨率电磁结构的基础上,提出了未成熟和成熟衣壳的模型。这个项目的总体目标是使用电子冷冻显微镜、图像分析和分子建模来获得这些模型系统的更高分辨率的结构。我们将通过表征一个有序的、新的MuLV Gag模型系统来定义对未成熟衣壳形成重要的Gag-Gag相互作用。我们将把两个全长CA的模型系统(HIV-1和MuLV)的分辨率扩展到超过10A的分辨率,并研究小的球形CA组件来研究推测的五聚体CA的结构。这些研究将提供对未成熟晶格和成熟晶格中分子相互作用的更深层次的理解,这对于设计新的治疗策略将是重要的。
英文摘要
DESCRIPTION (provided by applicant): The overall goal of this research program is to explore the principles underlying the coordinated macromolecular interactions that culminate in the assembly of infectious viruses. Since 1981, more than 25 million people have died of AIDS. Although HIV-1, the causative agent of AIDS, has been extensively studied, many stages of its replication cycle remain poorly understood. One essential yet ill-defined stage is retroviral assembly and maturation, and this will be the focus of our research for the next funding cycle. During the late stages of viral replication, newly translated retroviral Gag proteins assemble into spherical immature capsids that are then released from the cell. Concomitant with release, retroviruses undergo a maturation process in which Gag is cleaved by the viral protease into several smaller domains (MA, CA, and NC), triggering dramatic morphological changes that render the particles infectious. Within the mature virion, MA remains associated with the viral envelope, while CA assembles into a mature capsid surrounding a ribonucleoprotein complex formed by the RNA genome and NC. The lack of global symmetry in the immature and mature capsids has thwarted high-resolution structural studies of retroviruses. However, extensive biochemical and genetic studies have led to the development of model systems for Gag and CA that manifest global symmetry. On the basis of low resolution EM structures, models have been proposed for the immature and mature capsids. The overall goal of this project is to use electron cryo-microscopy, image analysis and molecular modeling to derive higher resolution structures of these model systems. We will define the Gag-Gag interactions important for immature capsid formation by characterizing a well-ordered, novel model system for MuLV Gag. We will extend the resolution of two model systems of full-length CA (HIV-1 and MuLV) to beyond 10 A resolution and study small, spherical CA assemblies to examine the structure of putative pentamers CA. These studies will provide a deeper understanding of the molecular interactions in the immature and mature lattices, which will be important for the design of new therapeutic strategies.
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