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Cell-based screen identifies a new potent and highly selective CK2 inhibitor for modulation of circadian rhythms and cancer cell growth.基于细胞的筛选鉴定出一种新型有效的、高选择性的 CK2 抑制剂,可用于调节昼夜节律和癌细胞生长。
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2
Structure-activity relationship (SAR) studies of synthetic glycogen synthase kinase-3β inhibitors: A critical review.合成糖原合酶激酶-3β抑制剂的构效关系(SAR)研究: 批判性评价。
Eur J Med Chem. 2019 Feb 15;164:448-470. doi: 10.1016/j.ejmech.2018.12.073. Epub 2018 Dec 31.
3
Preclinical In Vitro and In Vivo Evidence of an Antitumor Effect of CX-4945, a Casein Kinase II Inhibitor, in Cholangiocarcinoma.酪蛋白激酶II抑制剂CX-4945在胆管癌中抗肿瘤作用的临床前体外和体内证据
Transl Oncol. 2019 Jan;12(1):143-153. doi: 10.1016/j.tranon.2018.09.005. Epub 2018 Oct 11.
4
X-ray Structures and Feasibility Assessment of CLK2 Inhibitors for Phelan-McDermid Syndrome.X 射线结构与 CLK2 抑制剂用于 Phelan-McDermid 综合征的可行性评估。
ChemMedChem. 2018 Sep 19;13(18):1997-2007. doi: 10.1002/cmdc.201800344. Epub 2018 Aug 16.
5
Mutational analysis of two residues in the DYRK homology box of the protein kinase DYRK1A.蛋白激酶DYRK1A的DYRK同源结构域中两个残基的突变分析。
BMC Res Notes. 2018 May 15;11(1):297. doi: 10.1186/s13104-018-3416-4.
6
Crystal Structure of Human Dual-Specificity Tyrosine-Regulated Kinase 3 Reveals New Structural Features and Insights into its Auto-phosphorylation.人源双特异性酪氨酸磷酸化调节激酶 3 的晶体结构揭示了新的结构特征及其自动磷酸化的机制。
J Mol Biol. 2018 May 11;430(10):1521-1530. doi: 10.1016/j.jmb.2018.04.001. Epub 2018 Apr 7.
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Homing in: Mechanisms of Substrate Targeting by Protein Kinases.归巢:蛋白激酶的底物靶向机制。
Trends Biochem Sci. 2018 May;43(5):380-394. doi: 10.1016/j.tibs.2018.02.009. Epub 2018 Mar 12.
8
Effects of Y361-auto-phosphorylation on structural plasticity of the HIPK2 kinase domain.Y361 自身磷酸化对 HIPK2 激酶结构域结构可塑性的影响。
Protein Sci. 2018 Mar;27(3):725-737. doi: 10.1002/pro.3367. Epub 2017 Dec 28.
9
Suppression of MAPK11 or HIPK3 reduces mutant Huntingtin levels in Huntington's disease models.抑制 MAPK11 或 HIPK3 可降低亨廷顿病模型中的突变 Huntingtin 水平。
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10
Role of Homeodomain-Interacting Protein Kinase 2 in the Pathogenesis of Tissue Fibrosis in Keloid-Derived Keratinocytes.同源结构域相互作用蛋白激酶2在瘢痕疙瘩来源的角质形成细胞组织纤维化发病机制中的作用
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该蛋白激酶 HIPK2 的晶体结构揭示了其 CMGC-插入区域的独特结构。

The crystal structure of the protein kinase HIPK2 reveals a unique architecture of its CMGC-insert region.

机构信息

Cardiovascular Research Institute, University of California San Francisco, San Francisco, California 94158.

Thoracic Oncology Laboratory, Department of Surgery, Comprehensive Cancer Center, University of California San Francisco, San Francisco, California 94115.

出版信息

J Biol Chem. 2019 Sep 13;294(37):13545-13559. doi: 10.1074/jbc.RA119.009725. Epub 2019 Jul 24.

DOI:10.1074/jbc.RA119.009725
PMID:31341017
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6746438/
Abstract

The homeodomain-interacting protein kinase (HIPK) family is comprised of four nuclear protein kinases, HIPK1-4. HIPK proteins phosphorylate a diverse range of transcription factors involved in cell proliferation, differentiation, and apoptosis. HIPK2, thus far the best-characterized member of this largely understudied family of protein kinases, plays a role in the activation of p53 in response to DNA damage. Despite this tumor-suppressor function, HIPK2 is also found overexpressed in several cancers, and its hyperactivation causes chronic fibrosis. There are currently no structures of HIPK2 or of any other HIPK kinase. Here, we report the crystal structure of HIPK2's kinase domain bound to CX-4945, a casein kinase 2α (CK2α) inhibitor currently in clinical trials against several cancers. The structure, determined at 2.2 Å resolution, revealed that CX-4945 engages the HIPK2 active site in a hybrid binding mode between that seen in structures of CK2α and Pim1 kinases. The HIPK2 kinase domain crystallized in the active conformation, which was stabilized by phosphorylation of the activation loop. We noted that the overall kinase domain fold of HIPK2 closely resembles that of evolutionarily related dual-specificity tyrosine-regulated kinases (DYRKs). Most significant structural differences between HIPK2 and DYRKs included an absence of the regulatory N-terminal domain and a unique conformation of the CMGC-insert region and of a newly defined insert segment in the αC-β4 loop. This first crystal structure of HIPK2 paves the way for characterizing the understudied members of the HIPK family and for developing HIPK2-directed therapies for managing cancer and fibrosis.

摘要

同源结构域相互作用蛋白激酶(HIPK)家族由四个核蛋白激酶组成,即 HIPK1-4。HIPK 蛋白磷酸化多种参与细胞增殖、分化和凋亡的转录因子。HIPK2 是该研究甚少的蛋白激酶家族中研究最充分的成员,它在 DNA 损伤时 p53 的激活中发挥作用。尽管具有肿瘤抑制功能,但 HIPK2 也在几种癌症中过度表达,其过度激活会导致慢性纤维化。目前尚无 HIPK2 或任何其他 HIPK 激酶的结构。在这里,我们报告了 HIPK2 激酶结构域与 CX-4945 结合的晶体结构,CX-4945 是一种目前正在临床试验中针对几种癌症的酪蛋白激酶 2α(CK2α)抑制剂。该结构在 2.2 Å 分辨率下确定,表明 CX-4945 以 CK2α 和 Pim1 激酶结构中所见的混合结合模式与 HIPK2 的活性位点结合。HIPK2 激酶结构域以活性构象结晶,通过激活环的磷酸化稳定。我们注意到,HIPK2 的整体激酶结构域折叠与进化相关的双特异性酪氨酸调节激酶(DYRKs)非常相似。HIPK2 与 DYRKs 之间最显著的结构差异包括缺乏调节性 N 端结构域以及 CMGC-插入区和αC-β4 环中新定义的插入片段的独特构象。这是 HIPK2 的第一个晶体结构,为研究 HIPK 家族中研究甚少的成员铺平了道路,并为开发针对 HIPK2 的癌症和纤维化治疗方法奠定了基础。