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本文引用的文献

1
Mechanism for activation of the EGF receptor catalytic domain by the juxtamembrane segment.近膜段激活表皮生长因子受体催化结构域的机制。
Cell. 2009 Jun 26;137(7):1293-307. doi: 10.1016/j.cell.2009.04.025.
2
The juxtamembrane region of the EGF receptor functions as an activation domain.表皮生长因子受体的近膜区域作为一个激活结构域发挥作用。
Mol Cell. 2009 Jun 26;34(6):641-51. doi: 10.1016/j.molcel.2009.04.034.
3
The intracellular juxtamembrane domain of the epidermal growth factor (EGF) receptor is responsible for the allosteric regulation of EGF binding.表皮生长因子(EGF)受体的细胞内近膜结构域负责EGF结合的变构调节。
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ErbB receptors and signaling pathways in cancer.癌症中的表皮生长因子受体(ErbB)及其信号通路
Curr Opin Cell Biol. 2009 Apr;21(2):177-84. doi: 10.1016/j.ceb.2008.12.010. Epub 2009 Feb 7.
5
ErbB receptors and the development of the nervous system.表皮生长因子受体与神经系统的发育
Exp Cell Res. 2009 Feb 15;315(4):611-8. doi: 10.1016/j.yexcr.2008.10.035. Epub 2008 Nov 6.
6
Ligand-induced ErbB receptor dimerization.配体诱导的表皮生长因子受体二聚化。
Exp Cell Res. 2009 Feb 15;315(4):638-48. doi: 10.1016/j.yexcr.2008.10.024. Epub 2008 Oct 31.
7
Template-directed self-assembly enhances RTK catalytic domain function.模板导向的自组装增强受体酪氨酸激酶催化结构域功能。
J Biomol Screen. 2008 Sep;13(8):810-6. doi: 10.1177/1087057108322062.
8
The role of Neuregulin-1beta/ErbB signaling in the heart.神经调节蛋白-1β/表皮生长因子受体(ErbB)信号通路在心脏中的作用。
Exp Cell Res. 2009 Feb 15;315(4):627-37. doi: 10.1016/j.yexcr.2008.08.015. Epub 2008 Sep 3.
9
The ErbB kinase domain: structural perspectives into kinase activation and inhibition.表皮生长因子受体(ErbB)激酶结构域:激酶激活与抑制的结构视角
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10
System-wide investigation of ErbB4 reveals 19 sites of Tyr phosphorylation that are unusually selective in their recruitment properties.对ErbB4进行全系统研究发现了19个酪氨酸磷酸化位点,这些位点在其募集特性方面具有异常的选择性。
Chem Biol. 2008 Aug 25;15(8):808-17. doi: 10.1016/j.chembiol.2008.07.006.

Her4 和 Her2/neu 酪氨酸激酶结构域在体外重建系统中形成二聚体并被激活。

Her4 and Her2/neu tyrosine kinase domains dimerize and activate in a reconstituted in vitro system.

机构信息

Division of Oncology, Department of Medicine, Washington University School of Medicine, St Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2010 Mar 5;285(10):7035-44. doi: 10.1074/jbc.M109.096032. Epub 2009 Dec 18.

DOI:10.1074/jbc.M109.096032
PMID:20022944
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2844153/
Abstract

Her4 (ErbB-4) and Her2/neu (ErbB-2) are receptor-tyrosine kinases belonging to the epidermal growth factor receptor (EGFR) family. Crystal structures of EGFR and Her4 kinase domains demonstrate kinase dimerization and activation through an allosteric mechanism. The kinase domains form an asymmetric dimer, where the C-lobe surface of one monomer contacts the N-lobe of the other monomer. EGFR kinase dimerization and activation in vitro was previously reported using a nickel-chelating lipid-liposome system, and we now apply this system to all other members of the EGFR family. Polyhistidine-tagged Her4, Her2/neu, and Her3 kinase domains are bound to these nickel-liposomes and are brought to high local concentration, mimicking what happens to full-length receptors in vivo following ligand binding. Addition of nickel-liposomes to Her4 kinase domain results in 40-fold activation in kinase activity and marked enhancement of C-terminal tail autophosphorylation. Activation of Her4 shows a sigmoidal dependence on kinase concentration, consistent with a cooperative process requiring kinase dimerization. Her2/neu kinase activity is also activated by nickel-liposomes, and is increased further by heterodimerization with Her3 or Her4. The ability of Her3 and Her4 to heterodimerize and activate other family members is studied in vitro. Her3 kinase domain readily activates Her2/neu but is a poor activator of Her4, which differs from the prediction made by the asymmetric dimer model. Mutation of Her3 residues (952)ENI(954) to the corresponding sequence in Her4 enhanced the ability of Her3 to activate Her4, demonstrating that sequence differences on the C-lobe surface influence the heterodimerization and activation of ErbB kinase domains.

摘要

Her4(ErbB-4)和 Her2/neu(ErbB-2)是属于表皮生长因子受体(EGFR)家族的受体酪氨酸激酶。EGFR 和 Her4 激酶结构域的晶体结构表明激酶二聚化和通过别构机制激活。激酶结构域形成不对称二聚体,其中一个单体的 C lobe 表面与另一个单体的 N lobe 接触。先前已经使用镍螯合脂质体系统报道了 EGFR 激酶二聚化和体外激活,我们现在将该系统应用于 EGFR 家族的所有其他成员。多组氨酸标记的 Her4、Her2/neu 和 Her3 激酶结构域与这些镍脂质体结合,并被带到高局部浓度,模拟配体结合后全长受体在体内发生的情况。向 Her4 激酶结构域添加镍脂质体导致激酶活性增加 40 倍,并且 C 末端尾巴自动磷酸化明显增强。Her4 的激活显示出对激酶浓度的 S 形依赖性,与需要激酶二聚化的协同过程一致。镍脂质体还激活 Her2/neu 激酶活性,并通过与 Her3 或 Her4 的异二聚化进一步增加。体外研究了 Her3 和 Her4 异二聚化和激活其他家族成员的能力。Her3 激酶结构域容易激活 Her2/neu,但对 Her4 的激活作用较差,这与不对称二聚体模型的预测不同。将 Her3 残基(952)ENI(954)突变为 Her4 中的相应序列增强了 Her3 激活 Her4 的能力,表明 C lobe 表面上的序列差异会影响 ErbB 激酶结构域的异二聚化和激活。