Structure Analysis of Viral Assembly Mechanisms
病毒组装机制的结构分析
基本信息
- 批准号:9759955
- 负责人:
- 金额:$ 59.98万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2018
- 资助国家:美国
- 起止时间:2018-09-01 至 2022-05-31
- 项目状态:已结题
- 来源:
- 关键词:3-DimensionalAIDS/HIV problemAcquired Immunodeficiency SyndromeAddressAffectArchitectureBindingBiologicalC-terminalCapsidCell NucleusChemicalsChicagoComplexComputer SimulationConeCryoelectron MicroscopyCrystallizationCrystallographyDataDegP proteaseDimensionsDisulfidesDockingDrug effect disorderDrug resistanceElectrostaticsFissuralFreezingFullerenesGenerationsGoalsGrainHIV-1HIV-1 proteaseHydration statusHydrophobic InteractionsImage AnalysisLabelLengthLigationMapsMedicalMethodsMicro Electron DiffractionModelingMolecularMolecular ConformationMutateN-terminalNMR SpectroscopyNuclear PorePathway interactionsPeptide HydrolasesPeptidesPharmaceutical PreparationsProductivityProtein BiosynthesisProteinsProtomerRecombinantsResearchResearch PersonnelResolutionRoentgen RaysS PhaseSP1 geneSiteSolidStructureTechniquesTestingThinnessTimeTreatment EfficacyUnited States National Institutes of HealthUtahViralVirusVirus AssemblyX-Ray Crystallographyatomic databiophysical techniquescrosslinkcrystallinitydesigndrug discoveryelectron crystallographyexperimental studyinhibitor/antagonistinsightmolecular dynamicsmulti-scale modelingmutantnovelnovel therapeutic interventionparticleprogramsreconstructionresistance mechanismself assemblysimulationsolid state nuclear magnetic resonancesuccesstherapeutic targetthree dimensional structure
项目摘要
ABSTRACT
A theme of our research program is the design and assembly of symmetric surrogates of the quasi-
hexagonal and pleiomorphic lattices of the HIV-1 immature and mature capsids that enable high-resolution
structure analysis by cryoEM, microED, X-ray crystallography and ssNMR spectroscopy. Interpretation of our
experimental results is fortified by the addition of multi-scale, computational simulations.
· Aim 1: Structural studies of the immature Gag lattice: We previously determined a 3.2 Å X-ray
structure of a CTD-SP1 Gag construct, which revealed a 6-helix bundle comprised of 2 turns of CTD and 2
turns of SP1. The protease cleavage sites are sequestered in the interior of the bundle. This surprising result
revealed a mystery: How does protease gain access to the sequestered cleavage sites? ssNMR spectroscopy
of selectively labeled ΔMA-Gag VLPs will allow us to examine conformational dynamics of the junction helices.
Time-resolved cryoEM of 2D crystals of CTD-SP1, which diffract to 5-Å resolution, will test whether protease
cleavage is initiated at the fissures within the immature Gag lattice. MicroED of 2-4 µm 3D crystals yielded a
2.9-Å resolution 3D structure of CTD-SP1 with bound bevirimat, which sets the stage for us to explore
mechanisms of drug resistance and action of second-generation maturation inhibitors. Our results will not only
provide data for atomic-resolution MD simulations, but also help develop and refine novel coarse-grained (CG)
models of Gag lattice components to explore the dynamics of on- and off-pathway generation of viral particles.
· Aim 2: Structural studies of the mature capsid: We previously used disulfide crosslinking to stabilize
and solve X-ray structures of the CA hexamer and pentamer. The resulting atomic model of the fullerene cone
suggested mechanisms for the continuously varying curvature in the conical capsid. We also showed that the
compound PF74, a CPSF6 peptide and a peptide of NUP153 bind the interface between the C-terminal and N-
terminal domains of CA, indicating that this interface is a therapeutic target and may be important for docking
of the capsid at the nuclear pore. We will now explore a surrogate of capsid docking at the nuclear pore by
examination of 2D CA crystals with bound NUP153, allowing us to test whether the FG repeats bind
cooperatively and whether binding disrupts the lattice to release the preintegration complex into the nucleus.
We have shown that the R18F mutant of CA forms ~35 nm spherical particles, and a preliminary 3D cryoEM
reconstruction shows that the ~90 Å spacing between protomers in the icosahedral lattice recapitulates the
spacing in authentic HIV-1 capsids. We seek to determine an atomic resolution structure to examine the
chemical interactions at the protomer-protomer interfaces. The 7-Å cryoEM map of mature HIV-1 and the high-
resolution map of the icosahedral surrogate will enable computational simulations of the mature capsid lattice
to investigate the effects of protein and drug binding on lattice self-assembly and stability. We believe our
studies will yield novel insight into HIV-1 maturation and assembly that will be relevant for drug discovery.
摘要
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Mark Jay Yeager其他文献
Mark Jay Yeager的其他文献
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{{ truncateString('Mark Jay Yeager', 18)}}的其他基金
Structural Biology of Connexin Membrane Channels
连接蛋白膜通道的结构生物学
- 批准号:
10809113 - 财政年份:2020
- 资助金额:
$ 59.98万 - 项目类别:
Structural Biology of Connexin Membrane Channels
连接蛋白膜通道的结构生物学
- 批准号:
10033332 - 财政年份:2020
- 资助金额:
$ 59.98万 - 项目类别:
Structural Biology of Connexin Membrane Channels
连接蛋白膜通道的结构生物学
- 批准号:
10679105 - 财政年份:2020
- 资助金额:
$ 59.98万 - 项目类别:
Structural Biology of Connexin Membrane Channels
连接蛋白膜通道的结构生物学
- 批准号:
10201681 - 财政年份:2020
- 资助金额:
$ 59.98万 - 项目类别:














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