Janus激酶2
药物发现
贾纳斯激酶
鲁索利替尼
癌症研究
突变
药物开发
蛋白激酶结构域
生物
骨髓增生性疾病
计算生物学
突变体
生物信息学
药品
激酶
遗传学
药理学
骨髓纤维化
免疫学
基因
骨髓
作者
Pramod C. Nair,Jacob Piehler,Denis Tvorogov,David M. Ross,Angel F. López,Jason Gotlib,Danièl Thomas
出处
期刊:Blood cancer discovery
[American Association for Cancer Research]
日期:2023-07-27
卷期号:4 (5): 352-364
被引量:19
标识
DOI:10.1158/2643-3230.bcd-22-0189
摘要
Selective inhibitors of Janus kinase (JAK) 2 have been in demand since the discovery of the JAK2 V617F mutation present in patients with myeloproliferative neoplasms (MPN); however, the structural basis of V617F oncogenicity has only recently been elucidated. New structural studies reveal a role for other JAK2 domains, beyond the kinase domain, that contribute to pathogenic signaling. Here we evaluate the structure-based approaches that led to recently-approved type I JAK2 inhibitors (fedratinib and pacritinib), as well as type II (BBT594 and CHZ868) and pseudokinase inhibitors under development (JNJ7706621). With full-length JAK homodimeric structures now available, superior selective and mutation-specific JAK2 inhibitors are foreseeable. SIGNIFICANCE: The JAK inhibitors currently used for the treatment of MPNs are effective for symptom management but not for disease eradication, primarily because they are not strongly selective for the mutant clone. The rise of computational and structure-based drug discovery approaches together with the knowledge of full-length JAK dimer complexes provides a unique opportunity to develop better targeted therapies for a range of conditions driven by pathologic JAK2 signaling.
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