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Fyn和Abl介导的动态多位点磷酸化驱动了CRKL与新型支架受体DCBLD1和DCBLD2之间的相互作用。

Dynamic multi-site phosphorylation by Fyn and Abl drives the interaction between CRKL and the novel scaffolding receptors DCBLD1 and DCBLD2.

作者信息

Schmoker Anna M, Weinert Jaye L, Kellett Kyle J, Johnson Hannah E, Joy Ryan M, Weir Marion E, Ebert Alicia M, Ballif Bryan A

机构信息

Department of Biology, University of Vermont, 109 Carrigan Drive, 120A Marsh Life Sciences, Burlington, VT 05405, U.S.A.

出版信息

Biochem J. 2017 Nov 21;474(23):3963-3984. doi: 10.1042/BCJ20170615.

Abstract

Discoidin, CUB, and LCCL domain containing 2 (DCBLD2) is a neuropilin-like transmembrane scaffolding receptor with known and anticipated roles in vascular remodeling and neuronal positioning. DCBLD2 is also up-regulated in several cancers and can drive glioblastomas downstream of activated epidermal growth factor receptor. While a few studies have shown either a positive or negative role for DCBLD2 in regulating growth factor receptor signaling, little is known about the conserved signaling features of DCBLD family members that drive their molecular activities. We previously identified DCBLD2 tyrosine phosphorylation sites in intracellular YxxP motifs that are required for the phosphorylation-dependent binding of the signaling adaptors CRK and CRKL (CT10 regulator of kinase and CRK-like). These intracellular YxxP motifs are highly conserved across vertebrates and between DCBLD family members. Here, we demonstrate that, as for DCBLD2, DCBLD1 YxxP motifs are required for CRKL-SH2 (Src homology 2) binding. We report that Src family kinases (SFKs) and Abl differentially promote the interaction between the CRKL-SH2 domain and DCBLD1 and DCBLD2, and while SFKs and Abl each promote DCBLD1 and DCBLD2 binding to the CRKL-SH2 domain, the effect of Abl is more pronounced for DCBLD1. Using high-performance liquid chromatography coupled with tandem mass spectrometry, we quantified phosphorylation at several YxxP sites in DCBLD1 and DCBLD2, mapping site-specific preferences for SFKs and Abl. Together, these data provide a platform to decipher the signaling mechanisms by which these novel receptors drive their biological activities.

摘要

含盘状结构域、CUB结构域和LCCL结构域蛋白2(DCBLD2)是一种类神经纤毛蛋白跨膜支架受体,在血管重塑和神经元定位中发挥着已知和预期的作用。DCBLD2在多种癌症中也上调,并且可在活化的表皮生长因子受体下游驱动胶质母细胞瘤的发生。虽然一些研究显示DCBLD2在调节生长因子受体信号传导中具有正向或负向作用,但对于驱动其分子活性的DCBLD家族成员的保守信号特征却知之甚少。我们之前在细胞内YxxP基序中鉴定出DCBLD2酪氨酸磷酸化位点,这些位点是信号衔接蛋白CRK和CRKL(激酶CT10调节因子和类CRK)磷酸化依赖性结合所必需的。这些细胞内YxxP基序在脊椎动物中以及DCBLD家族成员之间高度保守。在此,我们证明,与DCBLD2一样,DCBLD1的YxxP基序是CRKL-SH2(Src同源结构域2)结合所必需的。我们报告称,Src家族激酶(SFK)和Abl分别以不同方式促进CRKL-SH2结构域与DCBLD1和DCBLD2之间的相互作用,虽然SFK和Abl均促进DCBLD1和DCBLD2与CRKL-SH2结构域的结合,但Abl对DCBLD1的作用更为明显。通过高效液相色谱联用串联质谱,我们对DCBLD1和DCBLD2中多个YxxP位点的磷酸化进行了定量,绘制了SFK和Abl的位点特异性偏好图谱。这些数据共同提供了一个平台,用于解读这些新型受体驱动其生物学活性的信号传导机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2256/6029619/66318b7ff28e/nihms976803f1.jpg

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