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A hybrid 12T Q-FTMS for the investigation of nucleic acids non-cov./cov.adducts

A hybrid 12T Q-FTMS for the investigation of nucleic acids non-cov./cov.adducts
用于研究核酸非冠状病毒/冠状病毒加合物的混合 12T Q-FTMS
批准号:
7125715
负责人:
Daniele Fabris
金额:
$151.5万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-08-01 至 2008-07-31

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英文摘要
DESCRIPTION (provided by applicant): This proposal seeks funding for the acquisition of a hybrid quadrupole/trap-Fourier transform ion cyclotron esonance mass spectrometer equipped with a 12 Tesla superconductive magnet, electrospray ionization (ESI), electron capture dissociation (ECD), and infrared multiphoton dissociation (IRMPD). This configuration affords the state-of-the-art capabilities necessary to complete the high-resolution characterization of nucleic acids and their non-covalent and covalent adducts, which is at the core of the supported research projects. The participants have established programs aimed at advancing our understanding of infectious diseases and cancer by tackling fundamental questions concerning retroviral replication and packaging, drug resistance, and gene damage and repair. The proposed instrument will provide the basis for structural and functional investigations that would not be possible by traditional approaches used in structural biology and biochemistry. In particular, it will enable the implementation of structural probing, binding constants determination, kinetics analysis, and top-down characterization of biological substrates that are very susceptible to degradation (e.g., RNA and RNA-adducts), inherently labile (e.g., non-covalent complexes), and present in very low amounts (e.g., DNA-adducts). The resolving power afforded by the high magnetic field will be crucial for the analysis of the complex analyte mixtures obtained by treating nucleic acid substrates and protein-nucleic acids assemblies with footprinting reagents, bifunctional crosslinkers, biochemical probes, carcinogenic agents, nucleotide analogues, and candidate inhibitor ligands. The front- end of the hybrid will enable to control the number of ions admitted into the cell to improve resolution, dynamic range, and performance in tandem mass spectrometry. The combination of ECD and IRMPD will provide the ability to complete the unambiguous characterization of chemically-modified products and crosslinked heteroconjugates. In addition to the described projects lead by the primary users, the proposed instrument will support the work of many other biomedical investigators with a proven need for high- resolution mass spectrometry (secondary users). The anticipated service component will complement the activities of two distinct core facilities serving the University of Maryland Baltimore County (UMBC) campus and the University of Maryland at Baltimore (UMB) Greenebaum Cancer Center and Medical School.
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Modulation of RNA modifications by RNA viruses
RNA post-transcriptional modifications as possible communication hubs between substances of abuse and HIV-1 replication processes
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  • 项目类别:
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  • 负责人:
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  • 依托单位:
Modulation of RNA modifications by RNA viruses
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