Current and future of targeted therapies against BCR::ABL kinases.

Sridhar Jayavel, Manasvini Subramanian, Pradeep Kumar Kesavan, Suresh Jayavel
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Abstract

Chronic myeloid leukemia (CML) is a kind of leukemia that arises due to the translocation betwixt chromosomes 9 and 22. Philadelphia chromosome is characterized by the BCR::ABL fusion gene, which results from this recombination. It transcribes into active tyrosine kinase variants such as P185, P190, P210, and P230, depending on breakpoint chain variations. The fusion protein, encodes tyrosine kinases with varying exons, resulting in uncontrollable ATP-utilizing downstream signaling activities. Targeted therapy with various tyrosine kinase inhibitors (TKIs) is used to combat BCR::ABL fusion kinases and increase the survival rate of patients. However, the incidence of TKI resistance among CML patients is widely noticed around the world. Hence, an elaborate and accurate understanding of the structural interactions between BCR::ABL encoded tyrosine kinases, which are responsible for sensitivity and resistance, is mandatory for hassle-free targeted therapy. This review is intended to cover the reported structural interactions between BCR::ABL variants and TKI ligands in detail to highlight strategies that may be applied in the near future to overcome the resistance and other cross-reactions.

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靶向治疗BCR: ABL激酶的现状和未来。
慢性髓性白血病(Chronic myeloid leukemia, CML)是一种因9号和22号染色体易位而引起的白血病。费城染色体的特点是BCR::ABL融合基因,这是由这种重组产生的。它转录成活性酪氨酸激酶变体,如P185, P190, P210和P230,这取决于断点链的变化。融合蛋白编码具有不同外显子的酪氨酸激酶,导致不可控的atp利用下游信号活动。多种酪氨酸激酶抑制剂(TKIs)的靶向治疗用于对抗BCR::ABL融合激酶,提高患者的生存率。然而,在CML患者中TKI耐药的发生率在世界范围内被广泛关注。因此,对BCR::ABL编码的酪氨酸激酶之间的结构相互作用进行详细和准确的理解,这是负责敏感性和耐药性的,对于无障碍靶向治疗是必不可少的。本文旨在详细介绍已报道的BCR::ABL变体与TKI配体之间的结构相互作用,以强调在不久的将来可能应用于克服耐药性和其他交叉反应的策略。
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来源期刊
CiteScore
3.50
自引率
0.00%
发文量
46
审稿时长
11 weeks
期刊介绍: As the official publication of the National Cancer Institute, Cairo University, the Journal of the Egyptian National Cancer Institute (JENCI) is an open access peer-reviewed journal that publishes on the latest innovations in oncology and thereby, providing academics and clinicians a leading research platform. JENCI welcomes submissions pertaining to all fields of basic, applied and clinical cancer research. Main topics of interest include: local and systemic anticancer therapy (with specific interest on applied cancer research from developing countries); experimental oncology; early cancer detection; randomized trials (including negatives ones); and key emerging fields of personalized medicine, such as molecular pathology, bioinformatics, and biotechnologies.
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