Targeting Biologically Relevant DNA and RNA with Guanine Quadruplex Forming PNA's
Targeting Biologically Relevant DNA and RNA with Guanine Quadruplex Forming PNA's
批准号:
7142752
负责人:
Bruce A. ARMITAGE
金额:
$20.97万
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-04-01 至 2010-07-31
关键词:
RNA directed DNA polymeraseRNA splicingcalorimetrychemical kineticsenzyme activitygene targetinggenetic transcriptionnucleic acid chemical synthesisnucleic acid hybridizationnucleic acid probesnucleic acid sequencenucleic acid structureoncogenesopticspeptide analogpolynucleotidessurface plasmon resonancetelomerasethermodynamicstissue /cell culture
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Guanine-rich DNA and RNA sequences can fold into structures consisting of stacked guanine tetrads. These quadruplex structures are believed to play important roles in several biological contexts, including repressing transcription of the c-MYC oncogene, controlling alternative splicing of the pre-mRNA for hTERT, the reverse transcriptase component of telomerase and regulating the activity of telomerase. Molecules that bind to these quadruplex structures can serve as probes of biological function and potential therapeutics.
High affinity PNA probes will be synthesized and targeted to DNA and RNA G-quadruplex structures. What distinguishes this proposal from standard antigene and antisense approaches to regulating gene expression is the fact that the PNAs will have homologous, rather than complementary, sequences to their targets. This strategy is feasible because G-rich PNAs are known to form hybrid quadruplexes with homologous DNA and RNA sequences. Hybridization thermodynamics and kinetics will be measured for PNA-DNA and PNA-RNA quadruplex formation using a combination of optical spectroscopy and surface plasmon resonance experiments. An important component of this project will be synthesizing various PNA designs will to optimize affinity and selectivity. Once this is achieved, PNAs will be synthesized and used to test binding to three G quadruplexes (2 DNA and 1 RNA) modeled on biologically relevant targets. Finally, PNAs will be introduced into mammalian cell culture to study inhibition of c-MYC transcription, alteration of hTERT pre-mRNA splicing and inhibition of telomerase activity.
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海外基金