Eirich Jürgen, Burkhart Jens L, Ullrich Angelika, Rudolf Georg C, Vollmar Angelika, Zahler Stefan, Kazmaier Uli, Sieber Stephan A
Center for Integrated Protein Science Munich CIPSM, Department of Chemistry, Institute of Advanced Studies IAS, Technische Universität München, Lichtenbergstrasse 4, 85747 Garching, Germany.
Mol Biosyst. 2012 Aug;8(8):2067-75. doi: 10.1039/c2mb25144b. Epub 2012 Jun 21.
Microtubules (mt) are highly dynamic polymers composed of alpha- and beta-tubulin monomers that are present in all dividing and non-dividing cells. A broad variety of natural products exists that are known to interfere with the microtubule network, by either stabilizing or de-stabilizing these rope-like polymers. Among those tubulysins represent a new and potent class of cytostatic tetrapeptides originating from myxobacteria. Early studies suggested that tubulysins interact with the eukaryotic cytoskeleton by inhibition of tubulin polymerization with EC₅₀ values in the picomolar range. Recently, pretubulysins have been described to retain the high tubulin-degradation activity of their more complex tubulysin relatives and represent an easier synthetic target with an efficient synthesis already in place. Although tubulin has been suggested as the dedicated target of tubulysin a comprehensive molecular target analysis of pretubulysin in the context of the whole proteome has not been carried out so far. Here we utilize synthetic chemistry to develop two pretubulysin photoaffinity probes which were applied in cellular activity-based protein profiling and imaging studies in order to unravel and visualize dedicated targets. Our results clearly show a remarkable selectivity of pretubulysin for beta-tubulin which we independently confirmed by a mass-spectrometry based proteomic profiling platform as well as by tubulin antibody based co-staining on intact cells.
微管(mt)是由α-和β-微管蛋白单体组成的高度动态聚合物,存在于所有分裂和非分裂细胞中。已知有多种天然产物可通过稳定或破坏这些绳状聚合物来干扰微管网络。其中,微管溶素是一类源自粘细菌的新型强效细胞生长抑制四肽。早期研究表明,微管溶素通过抑制微管蛋白聚合与真核细胞骨架相互作用,其半数有效浓度(EC₅₀)值在皮摩尔范围内。最近,前微管溶素已被描述为保留了其更复杂的微管溶素类似物的高微管蛋白降解活性,并且由于已经有了高效的合成方法,它成为了一个更容易合成的目标。尽管微管蛋白已被认为是微管溶素的特定靶点,但到目前为止,尚未在整个蛋白质组的背景下对前微管溶素进行全面的分子靶点分析。在这里,我们利用合成化学方法开发了两种前微管溶素光亲和探针,并将其应用于基于细胞活性的蛋白质谱分析和成像研究中,以揭示和可视化特定靶点。我们的结果清楚地表明,前微管溶素对β-微管蛋白具有显著的选择性,我们通过基于质谱的蛋白质组学分析平台以及基于微管蛋白抗体的完整细胞共染色独立证实了这一点。