Biological Fingerprinting Analysis of Interaction Between Taxoids in Taxus and Microtubule Protein b

来源 :Chemical Research in Chinese Universities | 被引量 : 0次 | 上传用户:hulala
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Some natural products,such as traditional Chinese medicines(TCMs),contain compounds with anticancer activity and have attracted a great interest in recent years as alternative anticancer therapies. A quick and convenient assay for screening antimicrotubule compounds in which in vitro microdialysis/high-performance liquid chromatography (HPLC) is used to monitor the binding of the compounds extracted from TCM Taxus cuspidata Siebold & Zucc(Taxus) to microtubules is reported. It was observed that the extract of Taxus contains at least five compounds which have affinity interaction with microtubules by biological fingerprinting analysis,and they were identified as the taxoids of taxol,baccatin Ⅲ,10-deacetylbaccatin Ⅲ(10-DAB),cephalomannine and 7-epi-10-deacetyltaxol (7-epi-10-DAT) based on the comparison of their high-performance liquid chromatographic/mass spectrometric and UV spectra with those of the standard samples,both assembly-promoting and disassembly-inhibiting characteristics of those compounds were evaluated. It was observed that baccatin Ⅲ and 10-DAB bound to microtubules and the binding degrees were influenced by GTP. Competitive binding behavior of taxol with other four taxoids to microtubules was also investigated. Some natural products,such as traditional Chinese medicines(TCMs),contain compounds with anticancer activity and have attracted a great interest in recent years as alternative anticancer therapies. A quick and convenient assay for screening antimicrotubule compounds in which in vitro microdialysis/high-performance Liquid chromatography (HPLC) is used to monitor the binding of the compounds extracted from TCM Taxus cuspidata Siebold & Zucc(Taxus) to microtubules reported. It was that that that the extract of Taxus contains at least five compounds which have affinity interaction with microtubules by Biological fingerprinting analysis, and they were identified as the taxoids of taxol,baccatin III,10-deacetylbaccatin III(10-DAB),cephalomannine and 7-epi-10-deacetyltaxol (7-epi-10-DAT) based on the comparison of Their high-performance liquid chromatographic/mass spectrometric and UV spectra with those of the standard samples, both assembly-promoting and disassembly-inhibiting characteristic s of those compounds were evaluated. It was considered that baccatin III and 10-DAB bound to microtubules and the binding degrees were influenced by GTP. Competitive binding behavior of taxol with other four taxoids to microtubules was also investigated.
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