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Targeting of BCR-ABL: Lessons learned from BCR-ABL inhibition

机译:BCR-ABL的靶向:从BCR-ABL抑制中学到的经验教训

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In 1960 researchers reported that balanced translocation between chromosomes 22 and 9 resulted in the generation of Philadelphia chromosome. This breakthrough revolutionized our knowledge related to leukemia biology and contemporary studies revealed that chromosomal translocation resulted in the fusion between the 5' segment of BCR gene and 3' segment of the ABL gene to form BCR/ABL fusion gene. Research over the years has progressively and systematically improved our understanding of the genetic and proteomic basis of Leukemia. Genome-wide profiling studies, including genome sequencing and microarray analysis, have helped us in identification of different intracellular signaling cascades that are frequently mutated in Leukemia. We partition this multi-component review into different sections related to biochemical characteristics of BCR-ABL+ cells, underlying mechanism of generation of mutations and crosstalk of BCR-ABL with various intracellular signaling cascades. We also summarize how BCR-ABL encoding mRNA is negatively regulated by different miRNAs and the strategies which are currently being used to effectively target BCR-ABL protein. We also provide an overview of the natural products which have been used for targeting of BCR-ABL protein. Better understanding of the protein network of Philadelphia positive leukemic cells will prove to be helpful in getting a step closer to personalized medicine.
机译:1960年,研究人员报告说,染色体22和9之间的平衡易位导致了成年染色体的产生。这种突破彻底改变了我们与白血病生物学和当代研究相关的知识,揭示了染色体易位导致5'BCR基因的区段与ABL基因的3'区段之间的融合以形成BCR / ABL融合基因。多年来的研究逐渐和系统地改善了我们对白血病遗传和蛋白质组基础的理解。基因组分析研究包括基因组测序和微阵列分析,帮助我们鉴定了白血病中经常突变的不同细胞内信号传导级联。我们将该多组分审查分区与BCR-ABL +细胞的生化特征相关的不同部分,具有各种细胞内信号传导级联的BCR-ABL产生的突变和串扰的基础机制。我们还总结了通过不同的miRNA和目前用于有效靶向BCR-ABL蛋白的策略的BCR-Abl编码mRNA如何产生负面调节。我们还提供了用于靶向BCR-ABL蛋白的天然产物的概述。更好地了解费城阳性白血病细胞的蛋白质网络将有助于越来越靠近个性化医学。

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