Stem Cell and Leukaemia Proteomics Laboratory, School of Cancer, Enabling Sciences, Manchester Academic Health Science Centre, The University of Manchester, Wolfson Molecular Imaging Centre, Withington, Manchester, UK.
Proteomics. 2010 Sep;10(18):3321-42. doi: 10.1002/pmic.201000176.
Leukaemic transformation is frequently associated with the aberrant activity of a protein tyrosine kinase (PTK). As such it is of clinical relevance to be able to map the effects of these leukaemogenic PTKs on haemopoietic cells at the level of phosphorylation modulation. In this paradigm study we have employed a range of proteomic approaches to analyse the effects of one such PTK, BCR/ABL. We have employed phosphoproteome enrichment techniques allied to peptide and protein quantification to identify proteins and pathways involved in cellular transformation. Amongst the proteins shown to be regulated at the post-translational level were cofilin, an actin-severing protein thus linked to altered motility and Cbl an E3 ubiquitin ligase integrally linked to the control of tyrosine kinase signalling (regulated by 5 and 6 PTKs respectively). The major class of proteins identified however were molecular chaperones. We also showed that HSP90 phosphorylation is altered by BCR/ABL action and that HSP90 plays a crucial role in oncogene stability. Further investigation with another six leukaemogenic PTKs demonstrates that this HSP90 role in oncogene stability appears to be a common phenomenon in a range of leukaemias. This opens up the potential opportunity to treat different leukaemias with HSP90 inhibitors.
白血病转化通常与蛋白酪氨酸激酶(PTK)的异常活性有关。因此,能够在磷酸化调节水平上绘制这些致白血病 PTK 对造血细胞的影响,这在临床上具有重要意义。在这项范例研究中,我们采用了一系列蛋白质组学方法来分析一种这样的 PTK,BCR/ABL 的作用。我们采用磷酸肽组学富集技术与肽和蛋白质定量相结合,以鉴定参与细胞转化的蛋白质和途径。在被证明在翻译后水平受到调节的蛋白质中,有肌动蛋白切割蛋白肌动蛋白丝结合蛋白(cofilin),因此与运动性改变有关,以及 E3 泛素连接酶 Cbl,它与酪氨酸激酶信号的控制密切相关(分别受 5 和 6 个 PTK 调节)。然而,鉴定的主要蛋白质类是分子伴侣。我们还表明,BCR/ABL 作用改变了 HSP90 的磷酸化,并且 HSP90 在癌基因稳定性中起着关键作用。对另外六种致白血病 PTK 的进一步研究表明,HSP90 在癌基因稳定性中的这种作用似乎是多种白血病中的一种常见现象。这为用 HSP90 抑制剂治疗不同类型的白血病开辟了潜在的机会。