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阿西维辛在癌细胞中的靶点发现阐明了其生长抑制机制† 可获取电子补充信息(ESI):合成、克隆、蛋白质表达、纯化及生化分析。见DOI: 10.1039/c4sc02339k。

Target discovery of acivicin in cancer cells elucidates its mechanism of growth inhibition†Electronic supplementary information (ESI) available: Synthesis, cloning, protein expression, purification and biochemical assays. See DOI: 10.1039/c4sc02339k.

作者信息

Kreuzer Johannes, Bach Nina C, Forler Daniel, Sieber Stephan A

机构信息

Center for Integrated Protein Science CIPSM , Institute of Advanced Studies IAS , Department Chemie , Lehrstuhl für Organische Chemie II , Technische Universität München , Lichtenbergstrasse 4 , 85747 Garching , Germany . Email:

Bayer HealthCare Bayer Pharma AG , Müllerstr. 178 , 13353 Berlin , Germany.

出版信息

Chem Sci. 2014 Dec 1;6(1):237-245. doi: 10.1039/c4sc02339k. Epub 2014 Sep 26.

Abstract

Acivicin is a natural product with diverse biological activities. Several decades ago its clinical application in cancer treatment was explored but failed due to unacceptable toxicity. The causes behind the desired and undesired biological effects have never been elucidated and only limited information about acivicin-specific targets is available. In order to elucidate the target spectrum of acivicin in more detail we prepared functionalized derivatives and applied them for activity based proteomic profiling (ABPP) in intact cancer cells. Target deconvolution by quantitative mass spectrometry (MS) revealed a preference for specific aldehyde dehydrogenases. Further in depth target validation confirmed that acivicin inhibits ALDH4A1 activity by binding to the catalytic site. In accordance with this, downregulation of ALDH4A1 by siRNA resulted in a severe inhibition of cell growth and might thus provide an explanation for the cytotoxic effects of acivicin.

摘要

阿西维辛是一种具有多种生物活性的天然产物。几十年前,人们探索了它在癌症治疗中的临床应用,但由于不可接受的毒性而失败。其预期和非预期生物学效应背后的原因从未得到阐明,关于阿西维辛特异性靶点的信息也非常有限。为了更详细地阐明阿西维辛的靶点谱,我们制备了功能化衍生物,并将其应用于完整癌细胞的基于活性的蛋白质组学分析(ABPP)。通过定量质谱(MS)进行的靶点反卷积揭示了对特定醛脱氢酶的偏好。进一步深入的靶点验证证实,阿西维辛通过与催化位点结合来抑制ALDH4A1活性。与此一致的是,通过siRNA下调ALDH4A1会导致细胞生长的严重抑制,这可能为阿西维辛的细胞毒性作用提供一种解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a72/5444113/2e5119672564/c4sc02339k-f1.jpg

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