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The small molecule specific EphB4 kinase inhibitor NVP-BHG712 inhibits VEGF driven angiogenesis

机译:小分子特异性EphB4激酶抑制剂NVP-BHG712抑制VEGF驱动的血管生成

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摘要

EphB4 and its cognitive ligand ephrinB2 play an important role in embryonic vessel development and vascular remodeling. In addition, several reports suggest that this receptor ligand pair is also involved in pathologic vessel formation in adults including tumor angiogenesis. Eph/ephrin signaling is a complex phenomena characterized by receptor forward signaling through the tyrosine kinase of the receptor and ephrin reverse signaling through various protein–protein interaction domains and phosphorylation motifs of the ephrin ligands. Therefore, interfering with EphR/ephrin signaling by the means of targeted gene ablation, soluble receptors, dominant negative mutants or antisense molecules often does not allow to discriminate between inhibition of Eph/ephrin forward and reverse signaling. We developed a specific small molecular weight kinase inhibitor of the EphB4 kinase, NVP-BHG712, which inhibits EphB4 kinase activity in the low nanomolar range in cellular assays showed high selectivity for targeting the EphB4 kinase when profiled against other kinases in biochemical as well as in cell based assays. Furthermore, NVP-BHG712 shows excellent pharmacokinetic properties and potently inhibits EphB4 autophosphorylation in tissues after oral administration. In vivo, NVP-BHG712 inhibits VEGF driven vessel formation, while it has only little effects on VEGF receptor (VEGFR) activity in vitro or in cellular assays. The data shown here suggest a close cross talk between the VEGFR and EphR signaling during vessel formation. In addition to its established function in vascular remodeling and endothelial arterio-venous differentiation, EphB4 forward signaling appears to be an important mediator of VEGF induced angiogenesis since inhibition of EphB4 forward signaling is sufficient to inhibit VEGF induced angiogenesis.
机译:EphB4及其认知配体ephrinB2在胚胎血管发育和血管重塑中起重要作用。另外,一些报道表明该受体配体对也参与成人的病理性血管形成,包括肿瘤血管生成。 Eph / ephrin信号传递是一种复杂的现象,其特征在于通过受体的酪氨酸激酶进行的受体正向信号传递和通过各种蛋白-蛋白质相互作用域和ephrin配体的磷酸化基序的ephrin反向信号传递。因此,通过靶向基因消融的方式干扰EphR / ephrin信号,可溶性受体,显性负突变体或反义分子通常无法区分对Eph / ephrin正向和反向信号的抑制。我们开发了EphB4激酶的特定小分子量激酶抑制剂NVP-BHG712,该抑制剂在低纳摩尔范围内抑制EphB4激酶活性。基于细胞的测定。此外,NVP-BHG712表现出优异的药代动力学特性,并在口服后可有效抑制组织中的EphB4自磷酸化。在体内,NVP-BHG712抑制VEGF驱动的血管形成,而在体外或细胞测定中对VEGF受体(VEGFR)活性几乎没有影响。此处显示的数据表明血管形成过程中VEGFR和EphR信号之间存在紧密的串扰。除了在血管重塑和内皮动静脉分化中已确立的功能外,EphB4正向信号转导似乎是VEGF诱导的血管生成的重要介体,因为对EphB4正向信号转导的抑制足以抑制VEGF诱导的血管生成。

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