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血液系统恶性肿瘤中的 PIM 激酶。

The PIM kinases in hematological cancers.

机构信息

Department of Hematology/Oncology, Cancer Therapy & Research Center, The University of Texas Health Science Center San Antonio, 7979 Wurzbach Road, MC8232, San Antonio, 78229, TX, USA.

出版信息

Expert Rev Hematol. 2012 Feb;5(1):81-96. doi: 10.1586/ehm.11.69.

Abstract

The PIM genes represent a family of proto-oncogenes that encode three different serine/threonine protein kinases (PIM1, PIM2 and PIM3) with essential roles in the regulation of signal transduction cascades, which promote cell survival, proliferation and drug resistance. PIM kinases are overexpressed in several hematopoietic tumors and support in vitro and in vivo malignant cell growth and survival, through cell cycle regulation and inhibition of apoptosis. PIM kinases do not have an identified regulatory domain, which means that these proteins are constitutively active once transcribed. They appear to be critical downstream effectors of important oncoproteins and, when overexpressed, can mediate drug resistance to available agents, such as rapamycin. Recent crystallography studies reveal that, unlike other kinases, they possess a hinge region, which creates a unique binding pocket for ATP, offering a target for an increasing number of potent small-molecule PIM kinase inhibitors. Preclinical studies in models of various hematologic cancers indicate that these novel agents show promising activity and some of them are currently being evaluated in a clinical setting. In this review, we profile the PIM kinases as targets for therapeutics in hematologic malignancies.

摘要

PIM 基因家族编码三种不同的丝氨酸/苏氨酸蛋白激酶(PIM1、PIM2 和 PIM3),它们在调节信号转导级联反应中发挥着重要作用,促进细胞存活、增殖和耐药性。PIM 激酶在几种血液肿瘤中过度表达,通过细胞周期调节和抑制细胞凋亡,支持体外和体内恶性细胞的生长和存活。PIM 激酶没有确定的调节结构域,这意味着这些蛋白质一旦转录就一直处于激活状态。它们似乎是重要致癌蛋白的关键下游效应物,当过度表达时,可介导对现有药物的耐药性,如雷帕霉素。最近的晶体学研究表明,与其他激酶不同,它们具有铰链区,为 ATP 创造了一个独特的结合口袋,为越来越多的有效小分子 PIM 激酶抑制剂提供了一个靶点。在各种血液癌症模型中的临床前研究表明,这些新型药物具有很有前景的活性,其中一些目前正在临床评估中。在这篇综述中,我们将 PIM 激酶作为血液恶性肿瘤治疗的靶点进行介绍。

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