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Structural basis of Tie2 activation and Tie2/Tie1 heterodimerization

机译:Tie2激活和Tie2 / Tie1异二聚化的结构基础

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摘要

The endothelial cell (EC)-specific receptor tyrosine kinases Tie1 and Tie2 are necessary for the remodeling and maturation of blood and lymphatic vessels. Angiopoietin-1 (Ang1) growth factor is a Tie2 agonist, whereas Ang2 functions as a context-dependent agonist/antagonist. The orphan receptor Tie1 modulates Tie2 activation, which is induced by association of angiopoietins with Tie2 in cis and across EC–EC junctions in trans. Except for the binding of the C-terminal angiopoietin domains to the Tie2 ligand-binding domain, the mechanisms for Tie2 activation are poorly understood. We report here the structural basis of Ang1-induced Tie2 dimerization in cis and provide mechanistic insights on Ang2 antagonism, Tie1/Tie2 heterodimerization, and Tie2 clustering. We find that Ang1-induced Tie2 dimerization and activation occurs via the formation of an intermolecular β-sheet between the membrane-proximal (third) Fibronectin type III domains (Fn3) of Tie2. The structures of Tie2 and Tie1 Fn3 domains are similar and compatible with Tie2/Tie1 heterodimerization by the same mechanism. Mutagenesis of the key interaction residues of Tie2 and Tie1 Fn3 domains decreased Ang1-induced Tie2 phosphorylation and increased the basal phosphorylation of Tie1, respectively. Furthermore, the Tie2 structures revealed additional interactions between the Fn 2 (Fn2) domains that coincide with a mutation of Tie2 in primary congenital glaucoma that leads to defective Tie2 clustering and junctional localization. Mutagenesis of the Fn2–Fn2 interface increased the basal phosphorylation of Tie2, suggesting that the Fn2 interactions are essential in preformed Tie2 oligomerization. The interactions of the membrane-proximal domains could provide new targets for modulation of Tie receptor activity.
机译:内皮细胞(EC)特异性受体酪氨酸激酶Tie1和Tie2对于血液和淋巴管的重塑和成熟是必需的。血管生成素-1(Ang1)生长因子是Tie2激动剂,而Ang2则是上下文相关的激动剂/拮抗剂。孤儿受体Tie1调节Tie2激活,这是由血管生成素与顺式和跨反式EC-EC交界处的Tie2缔合诱导的。除了C末端血管生成素域与Tie2配体结合域的结合以外,对Tie2激活的机制了解甚少。我们在这里报告Ang1诱导的顺式Tie2二聚化的结构基础,并提供了有关Ang2拮抗作用,Tie1 / Tie2异二聚化和Tie2聚类的机理见解。我们发现Ang1诱导的Tie2二聚化和激活是通过在Tie2的膜近端(第三)纤连蛋白III型结构域(Fn3)之间形成分子间β-折叠而发生的。 Tie2和Tie1 Fn3域的结构相似,并且通过相同的机制与Tie2 / Tie1异二聚化兼容。 Tie2和Tie1 Fn3域的关键相互作用残基的诱变分别降低了Ang1诱导的Tie2磷酸化并增加了Tie1的基础磷酸化。此外,Tie2结构揭示了Fn 2(Fn2)域之间的其他相互作用,该相互作用与原发性先天性青光眼中Tie2的突变相符,从而导致缺陷的Tie2聚集和连接定位。 Fn2-Fn2界面的诱变增加了Tie2的基础磷酸化,这表明Fn2相互作用对预先形成的Tie2寡聚化至关重要。膜近端结构域的相互作用可以为调节铁受体的活性提供新的目标。

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