Synthesis and Mechanism of DNA Cross-linking of FR900482
Synthesis and Mechanism of DNA Cross-linking of FR900482
批准号:
7235683
负责人:
Robert Michael Williams
金额:
$29.77万
依托单位国家:
美国
项目类别:
财政年份:
1992
资助国家:
美国
项目状态:
已结题
起止时间:
1992-04-01 至 2009-04-30
关键词:
AddressAlkaloidsAnabolismAnthramycinAntineoplastic AgentsBiochemicalBiogenesisBlood VesselsCellsCellular biologyChemicalsClassClinical TrialsCollaborationsColoradoComplexCytotoxic agentDNADNA crosslinkDevelopmentFK 973FR 900482GenesGrantHumanInterleukin-2InvestigationJapanLabelLaboratoriesLeadMethodologyMichiganMitomycinMitomycin AMitomycin BMitomycinsMolecular ProbesMolecular StructureNuclearNucleosome Core ParticleNucleosomesOncogenesPathway interactionsPharmaceutical PreparationsPhasePorfiromycinPrincipal InvestigatorPyrrolizidine AlkaloidsRelative (related person)ResearchSeriesSignal TransductionStructureSyndromeTechnologyUniversitiesWashingtonantitumor drugbasecancer cellclinically significantcrosslinkmitomycin Dmitoseneprogenitorprograms
中文摘要
描述(由申请方提供):拟定研究的主要目的是研究具有临床意义的抗肿瘤药物FR 900482、FR 66979、FK 973和FK 317的合成和作用机制(FK 973是第一个进入临床试验的衍生物,然而,半合成衍生物FK 317目前正在日本进行人体临床试验)。这些物质在结构和机制上与广泛使用的抗肿瘤药物丝裂霉素C(MMC)相关。下一个资助期的具体目标包括:1.完成了丝裂霉素C、丝裂霉素K和丝裂霉素B的首次不对称全合成。2.我们计划与大卫谢尔曼教授的实验室(密歇根大学)合作研究FR 900482和丝裂霉素C的生物合成。特别是,我们的实验室将在这些途径上合成同位素标记的推定生物合成中间体,作为鉴定几个关键步骤的结构和机制的手段。3.在与Raymond Reeves教授(华盛顿州立大学)的合作中,我们计划继续研究这些抗肿瘤药物对肿瘤转化的人类细胞的细胞生物学的几个方面。具体而言,我们建议解决以下问题:A。MMC、FR 900482和FK 317对IL-2表达的相对影响是什么?B。这些药物上调或下调了哪些致癌基因和其他重要的代谢基因?4.在与Karolin Luger教授(科罗拉多州立大学)的合作中,我们计划研究FR 900482和同源物对核小体的交联作用。5.合成一类新的“潜在”的丝裂素、吡咯里西啶生物碱和与蒽霉素有关的物质的可生物降解的前体,并将其用作潜在的新型抗癌药物和大分子交联的探针。6.我们在全合成努力中开发的合成方法将用于制备基于FR 900482和MMC结构的有丝分裂母细胞,其可以通过替代化学和生物化学手段触发。
英文摘要
DESCRIPTION (provided by applicant): The primary objectives of the proposed research are to study the synthesis and mechanism of action of the clinically significant antitumor drugs FR900482, FR66979, FK973, and FK317 (FK973 was the first derivative to go to clinical trials however, the semi-synthetic derivative FK317 is currently in human clinical trials in Japan). These substances are structurally and mechanistically related to the widely used antitumor drug mitomycin C (MMC). Specific Aims for the forthcoming grant period include the following: 1. Completion of the first asymmetric total synthesis of mitomycin C, mitomycin K and mitomycin B. 2. We plan to study the biosynthesis of FR900482 and mitomycin C in collaboration with Prof. David Sherman's laboratory (University of Michigan). In particular, our laboratory will synthesize isotopically labeled putative biosynthetic intermediates on these pathways as a means for identifying the structure and mechanism of several key steps. 3. In collaboration with Prof. Raymond Reeves (Washington State University), we plan to continue our investigation of several aspects of the cell biology of these antitumor drugs on neoplastically transformed human cells. In particular, we propose to address the following questions: A. What are the relative effects of MMC, FR900482 and FK317 on IL-2 expression? B. What oncogenes and other metabolically important genes are up-regulated or down-regulated by these drugs? 4. In collaboration with Prof. Karolin Luger (Colorado State University) we plan to investigate the cross-linking of nucleosomes by FR900482 and congeners. 5. A new class of "latent" triggerable progenitors of mitosenes, pyrrolizidine alkaloids and substances related to the anthramycins will be synthesized and utilized as potential new anti-cancer drugs and probes for the macromolecular cross-links. 6. The synthetic methodology we have developed in the total synthesis endeavors shall be utilized to prepare mitosene progenitors based on the FR900482 and MMC structures that can be triggered by alternative chemical and biochemical means.
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