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Molecular screening: MALDI-TOF scanning of peptides (RMI)

Molecular screening: MALDI-TOF scanning of peptides (RMI)
分子筛选:肽的 MALDI-TOF 扫描 (RMI)
批准号:
7286121
负责人:
Stephen J. Kron
金额:
$54.48万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-09-23 至 2009-07-31

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中文摘要
翻译
描述(由申请人提供):针对RFA-RM-04-020,“分子文库筛选仪器”,我们建议开发一个高度集成的硬件和软件平台,该平台可执行高度多路复用的高通量分析,用于单个化合物处理的细胞提取物中的信号蛋白激活。目前的高通量筛选方法通过检测激酶、磷酸酶、蛋白水解酶和其他信号酶对底物的化学修饰,为在大的小分子文库中发现新的细胞信号调节器提供了强大的工具。这一方法已经证明了它在发现致癌酪氨酸激酶抑制剂方面的价值,导致了临床上重要的药物,如针对CML中bcr-Abl的Imatinib和针对GIST中的c-Kit,针对小细胞肺癌中的EGFR的Gefitinib,以及针对AML中的Flt3的一些研究中的激酶拮抗剂,如SU11248。然而,最先进的分子文库筛选在识别可能是特定信号通路的激动剂或拮抗剂但不一定针对特定信号蛋白的分子方面存在不足。在之前的工作中,我们开发了使用免疫学和MALDI-TOF检测固定化肽和蛋白质的磷酸化的灵敏分析方法,准确地报告了Ph+白血病细胞株全细胞提取物中BCR-Abl的活性和抑制。在这里,我们将扩展这项工作,并使用我们建立的共聚方法,通过可光裂解的连接物将多个酪氨酸激酶底物和同位素编码的控制肽固定在丙烯酰胺共聚物中。对单个酪氨酸激酶或特定类别表现出高度特异性的多肽将被选择并以这种形式进行验证。细胞提取物将以阵列形式应用于这些表面,其中每个斑点对应于用单一库化合物处理的细胞。孵育后,表面将被清洗,并通过紫外光裂解释放多肽。对每个斑点的MALDI-TOF分析将导致与每个化合物相关的测试和控制肽的光谱。这些光谱将被归一化,并与参考光谱进行比较,以检测一个或多个信号通路在统计上的显著变化。似乎激活或抑制细胞提取物中存在的一个或多个酪氨酸激酶的化合物将被标记以进行进一步分析。
英文摘要
DESCRIPTION (provided by applicant): In response to RFA-RM-04-020, "Molecular Libraries Screening Instrumentation", we propose to develop a highly integrated hardware and software platform that performs highly multiplexed high throughput assays for signaling protein activation in extracts from cells treated with individual compounds. Current high throughput screening methods offer powerful tools to discover novel modulators of cell signaling in large libraries of small molecules by detecting the chemical modification of substrates by kinases, phosphatase, proteases and other signaling enzymes. This approach has proven its value in discovering inhibitors of oncogenic tyrosine kinases, leading to clinically important drugs such as Imatinib to target Bcr-Abl in CML and c-kit in GIST, Gefitinib to target EGFR in small cell lung cancer and a number of investigational kinase antagonists such as SU11248 to target Flt3 in AML. However, the state-of-the-art in molecular library screening falls short in identifying molecules that may be agonists or antagonists of specific signaling pathways but that are not necessarily targeted at a particular signaling protein. In prior work, we have developed sensitive assays using immunologic and MALDI-TOF detection of the phosphorylation of immobilized peptides and proteins that accurately report Bcr-Abl activity and inhibition in whole cell extracts from Ph+ leukemia cell lines. Here, we will extend this work and use our established copolymerization methodology to immobilize multiple tyrosine kinase substrate and isotope-coded control peptides in an acrylamide copolymer via photo-cleavable linkers. Peptides that display high specificity for individual tyrosine kinases or specific classes will be selected and validated in this format. Cell extracts will be applied to these surfaces in an array format where each spot corresponds to cells treated with a single library compound. After incubation, the surface will be washed, and the peptides released by UV photo-cleavage. MALDI-TOF analysis of each spot will lead to a spectrum of test and control peptides associated with each compound. These spectra will be normalized and compared with reference spectra to detect statistically significant changes in one or more signaling pathways. Compounds that appear to activate or inhibit one or more tyrosine kinases present in the cell extracts will be flagged for further analysis.
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海外基金