布鲁顿酪氨酸激酶(BTK)A428D突变使慢性淋巴细胞白血病患者对BTK降解剂疗法产生抗药性。

IF 12.8 1区 医学 Q1 HEMATOLOGY Leukemia Pub Date : 2024-07-24 DOI:10.1038/s41375-024-02317-4
Richard L. Wong, Michael Y. Choi, Huan-You Wang, Thomas J. Kipps
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引用次数: 0

摘要

在过去的十年中,以 BTK 为靶点深刻地改变了 CLL 治疗的面貌。在抗药性和重新设计的猫鼠游戏中,BTK 抑制剂从共价型到非共价型,再到现在的靶向蛋白降解剂,取得了迭代进步。然而,与蛋白质降解剂可能不受 BTK 突变影响的推测相反,我们现在提出的临床证据表明,BTK 激酶结构域的突变(即 A428D)会使目前正在进行临床试验的 BTK 降解剂(即 BGB-16673)产生抗药性。BTK A428D突变模型将带负电荷的天冬氨酸置于另一种临床开发中的BTK降解剂(即NX-2127)的结合袋中,取代了丙氨酸的疏水性侧链,这表明带有BTK A428D的CLL细胞也可能对NX-2127产生耐药性,因为它们已经对BTK的非共价或共价抑制剂产生了耐药性。因此,在临床试验中最先进的两种 BTK 降解剂可能会选择对所有已批准的 BTKi 具有抗药性的 BTK A428D CLL 细胞。
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Mutation in Bruton Tyrosine Kinase (BTK) A428D confers resistance To BTK-degrader therapy in chronic lymphocytic leukemia
Targeting BTK has profoundly changed the face of CLL treatment over the past decade. Iterative advances in the cat and mouse game of resistance and redesign have moved BTK inhibitors from covalent to non-covalent and now targeted protein degraders. However, contrary to the presumption that protein degraders may be impervious to mutations in BTK, we now present clinical evidence that a mutation in the kinase domain of BTK, namely A428D, can confer disease resistance to a BTK degrader currently in clinical trials, that is BGB-16673. Modeling of a BTK A428D mutation places a negatively charged aspartic acid in place of the hydrophobic side chain of alanine within the binding pocket of another BTK-degrader in clinical development, namely NX-2127, suggesting that CLL cells with BTK A428D also may be resistant to NX-2127, as they already are known to be with either non-covalent or covalent inhibitors of BTK. Consequently, the two BTK degraders furthest advanced in clinical trials potentially may select for CLL cells with BTK A428D that are resistant to all approved BTKi’s.
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来源期刊
Leukemia
Leukemia 医学-血液学
CiteScore
18.10
自引率
3.50%
发文量
270
审稿时长
3-6 weeks
期刊介绍: Title: Leukemia Journal Overview: Publishes high-quality, peer-reviewed research Covers all aspects of research and treatment of leukemia and allied diseases Includes studies of normal hemopoiesis due to comparative relevance Topics of Interest: Oncogenes Growth factors Stem cells Leukemia genomics Cell cycle Signal transduction Molecular targets for therapy And more Content Types: Original research articles Reviews Letters Correspondence Comments elaborating on significant advances and covering topical issues
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