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首页> 外文期刊>Journal of Molecular Biology >Clustering, Spatial Distribution, and Phosphorylation of Discoidin Domain Receptors 1 and 2 in Response to Soluble Collagen I
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Clustering, Spatial Distribution, and Phosphorylation of Discoidin Domain Receptors 1 and 2 in Response to Soluble Collagen I

机译:盘状蛋白域受体1和2响应可溶性胶原蛋白的聚类,空间分布和磷酸化。

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摘要

Discoidin domain receptors (DDR1 and DDR2) are receptor tyrosine kinases that signal in response to collagen. We had previously shown that collagen binding leads to clustering of DDR1b, a process partly mediated by its extracellular domain (ECD). In this study, we investigated (i) the impact of the oligomeric state of DDR2 ECD on collagen binding and fibrillogenesis, (ii) the effect of collagen binding on DDR2 clustering, and (iii) the spatial distribution and phosphorylation status of DDR1b and DDR2 after collagen stimulation. Studies were conducted using purified recombinant DDR2 ECD proteins in monomeric, dimeric or oligomeric state, and MC3T3-E1 cells expressing full-length DDR2-GFP or DDR1b-YFP. We show that the oligomeric form of DDR2 ECD displayed enhanced binding to collagen and inhibition of fibrillogenesis. Using atomic force and fluorescence microscopy, we demonstrate that unlike DDR1b, DDR2 ECD and DDR2-GFP do not undergo collagen-induced receptor clustering. However, after prolonged collagen stimulation, both DDR1b-YFP and DDR2-GFP formed filamentous structures consistent with spatial re-distribution of DDRs in cells. Immunocytochemistry revealed that while DDR1b clusters co-localized with non-fibrillar collagen, DDR1b/DDR2 filamentous structures associated with collagen fibrils. Antibodies against a tyrosine phosphorylation site in the intracellular juxtamembrane region of DDR1b displayed positive signals in both DDR1b clusters and filamentous structures. However, only the filamentous structures of both DDR1b and DDR2 co-localized with antibodies directed against tyrosine phosphorylation sites within the receptor kinase domain. Our results uncover key differences and similarities in the clustering abilities and spatial distribution of DDR1b and DDR2 and their impact on receptor phosphorylation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:盘状蛋白域受体(DDR1和DDR2)是响应胶原蛋白的受体酪氨酸激酶。我们之前已经表明,胶原蛋白结合导致DDR1B的聚类,部分由其细胞外结构域(ECD)部分介导的方法。在这项研究中,我们研究了(i)DDR2 ECD的低聚状态对胶原蛋白结合和原纤维发生的影响,(ii)胶原蛋白结合对DDR2聚类的影响,(iii)DDR1B和DDR2的空间分布和磷酸化状态胶原蛋白刺激后。研究是在单体,二聚或低聚的状态使用纯化的重组DDR2 ECD蛋白进行,MC3T3-E1细胞中表达的全长DD​​R2-GFP或DDR1b-YFP。我们表明,DDR2 ECD的低聚形式显示出增强与胶原蛋白的结合和抑制原纤维生成。使用原子力和荧光显微镜,我们证明与DDR1B不同,DDR2 ECD和DDR2-GFP不接受胶原诱导的受体聚类。然而,在延长胶原蛋白刺激之后,DDR1B-YFP和DDR2-GFP两者都形成了与细胞中DDR的空间重新分布一致的丝状结构。免疫细胞化学显示,当DDR1B簇共同定位与非纤维胶原,与胶原纤维有关的DDR1B / DDR2丝状结构。抗酪氨酸磷酸化位点的抗体在DDR1B的细胞内Juxtamembrane区域中显示DDR1B簇和丝状结构中的正信号。然而,只有DDR1B和DDR2的丝状结构与被引导的受体激酶结构域内的酪氨酸磷酸化位点的抗体共定位。我们的结果揭示了DDR1B和DDR2的聚类能力和空间分布的关键差异和相似性及其对受体磷酸化的影响。 (c)2018年elestvier有限公司保留所有权利。

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