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Kindlin2 能够使 EphB/ephrinB 双向信号传导来支持血管发育。

Kindlin2 enables EphB/ephrinB bi-directional signaling to support vascular development.

机构信息

Department of Medicine, University of California San Diego, La Jolla, CA, USA.

La Jolla Institute for Immunology, La Jolla, CA, USA.

出版信息

Life Sci Alliance. 2022 Dec 27;6(3). doi: 10.26508/lsa.202201800. Print 2023 Mar.

Abstract

Direct contact between cells expressing either ephrin ligands or Eph receptor tyrosine kinase produces diverse developmental responses. Transmembrane ephrinB ligands play active roles in transducing bi-directional signals downstream of EphB/ephrinB interaction. However, it has not been well understood how ephrinB relays transcellular signals to neighboring cells and what intracellular effectors are involved. Here, we report that kindlin2 can mediate bi-directional ephrinB signaling through binding to a highly conserved NIYY motif in the ephrinB2 cytoplasmic tail. We show this interaction is important for EphB/ephrinB-mediated integrin activation in mammalian cells and for blood vessel morphogenesis during zebrafish development. A mixed two-cell population study revealed that kindlin2 (in ephrinB2-expressing cells) modulates transcellular EphB4 activation by promoting ephrinB2 clustering. This mechanism is also operative for EphB2/ephrinB1, suggesting that kindlin2-mediated regulation is conserved for EphB/ephrinB signaling pathways. Together, these findings show that kindlin2 enables EphB4/ephrinB2 bi-directional signal transmission.

摘要

细胞表达的 ephrin 配体或 Eph 受体酪氨酸激酶之间的直接接触会产生多种发育反应。跨膜 EphrinB 配体在 EphB/ephrinB 相互作用下游转导双向信号中发挥积极作用。然而,ephrinB 如何将细胞间信号传递到邻近细胞以及涉及哪些细胞内效应物尚不清楚。在这里,我们报告说,kindlin2 可以通过与 EphrinB2 细胞质尾部中高度保守的 NIYY 基序结合来介导双向 EphrinB 信号。我们表明,这种相互作用对于 EphB/ephrinB 介导的哺乳动物细胞整合素激活以及斑马鱼发育过程中的血管形态发生很重要。混合的两细胞群体研究表明,kindlin2(在表达 EphrinB2 的细胞中)通过促进 EphrinB2 聚集来调节 EphB4 的细胞间激活。EphB2/ephrinB1 也存在这种机制,表明 kindlin2 介导的调节对于 EphB/ephrinB 信号通路是保守的。总之,这些发现表明 kindlin2 使 EphB4/ephrinB2 能够双向信号传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df2c/9795039/e9a609a9da49/LSA-2022-01800_GA.jpg

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