Davis Tara L, Walker John R, Loppnau Peter, Butler-Cole Christine, Allali-Hassani Abdellah, Dhe-Paganon Sirano
Structural Genomics Consortium, University of Toronto, Toronto, Ontario, Canada.
Structure. 2008 Jun;16(6):873-84. doi: 10.1016/j.str.2008.03.008.
Ephrin receptors (Eph) affect cell shape and movement, unlike other receptor tyrosine kinases that directly affect proliferative pathways. The kinase domain of EphA3 is activated by ephrin binding and receptor oligomerization. This activation is associated with two tyrosines in the juxtamembrane region; these tyrosines are sites of autophosphorylation and interact with the active site of the kinase to modulate activity. This allosteric event has important implications both in terms of understanding signal transduction pathways mediated by Eph kinases as well as discovering specific therapeutic ligands for receptor kinases. In order to provide further details of the molecular mechanism through which the unphosphorylated juxtamembrane region blocks catalysis, we studied wild-type and site-specific mutants in detail. High-resolution structures of multiple states of EphA3 kinase with and without the juxtamembrane segment allowed us to map the coupled pathway of residues that connect the juxtamembrane segment, the activation loop, and the catalytic residues of the kinase domain. This highly conserved set of residues likely delineates a molecular recognition pathway for most of the Eph RTKs, helping to characterize the dynamic nature of these physiologically important enzymes.
与直接影响增殖途径的其他受体酪氨酸激酶不同,Ephrin受体(Eph)影响细胞形状和运动。EphA3的激酶结构域通过ephrin结合和受体寡聚化而被激活。这种激活与近膜区域的两个酪氨酸相关;这些酪氨酸是自磷酸化位点,并与激酶的活性位点相互作用以调节活性。这种别构事件对于理解由Eph激酶介导的信号转导途径以及发现受体激酶的特异性治疗配体都具有重要意义。为了提供未磷酸化的近膜区域阻断催化作用的分子机制的更多细节,我们详细研究了野生型和位点特异性突变体。具有和不具有近膜片段的EphA3激酶多种状态的高分辨率结构使我们能够绘制连接近膜片段、激活环和激酶结构域催化残基的残基偶联途径。这组高度保守的残基可能描绘了大多数Eph受体酪氨酸激酶的分子识别途径,有助于表征这些生理上重要的酶的动态性质。