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NCAM2 的纤连蛋白 III 结构域形成刚性结构,结合并激活成纤维细胞生长因子受体。

NCAM2 Fibronectin type-III domains form a rigid structure that binds and activates the Fibroblast Growth Factor Receptor.

机构信息

Biological Chemistry, Department of Chemistry, University of Copenhagen, Copenhagen, Denmark.

Laboratory of Neural Plasticity, Department of Neuroscience and Pharmacology, University of Copenhagen, Copenhagen, Denmark.

出版信息

Sci Rep. 2018 Jun 12;8(1):8957. doi: 10.1038/s41598-018-27089-7.

Abstract

NCAM1 and NCAM2 have ectodomains consisting of 5 Ig domains followed by 2 membrane-proximal FnIII domains. In this study we investigate and compare the structures and functions of these FnIII domains. The NCAM1 and -2 FnIII2 domains both contain a Walker A motif. In NCAM1 binding of ATP to this motif interferes with NCAM1 binding to FGFR. We obtained a structural model of the NCAM2 FnIII2 domain by NMR spectroscopy, and by titration with an ATP analogue we show that the NCAM2 Walker A motif does not bind ATP. Small angle X-ray scattering (SAXS) data revealed that the NCAM2 FnIII1-2 double domain exhibits a very low degree of flexibility. Moreover, recombinant NCAM2 FnIII domains bind FGFR in vitro, and the FnIII1-2 double domain induces neurite outgrowth in a concentration-dependent manner through activation of FGFR. Several synthetic NCAM1-derived peptides induce neurite outgrowth via FGFR. Only 2 of 5 peptides derived from similar regions in NCAM2 induce neurite outgrowth, but the most potent of these peptides stimulates neurite outgrowth through FGFR-dependent activation of the Ras-MAPK pathway. These results reveal that the NCAM2 FnIII domains form a rigid structure that binds and activates FGFR in a manner related to, but different from NCAM1.

摘要

NCAM1 和 NCAM2 的细胞外结构域由 5 个 Ig 结构域和 2 个靠近细胞膜的 FnIII 结构域组成。在本研究中,我们研究并比较了这些 FnIII 结构域的结构和功能。NCAM1 和 -2 FnIII2 结构域都包含 Walker A 基序。在 NCAM1 中,ATP 与该基序的结合会干扰 NCAM1 与 FGFR 的结合。我们通过 NMR 光谱获得了 NCAM2 FnIII2 结构域的结构模型,并通过与 ATP 类似物滴定表明,NCAM2 Walker A 基序不结合 ATP。小角度 X 射线散射(SAXS)数据表明,NCAM2 FnIII1-2 双结构域的柔韧性非常低。此外,重组 NCAM2 FnIII 结构域在体外与 FGFR 结合,并且 FnIII1-2 双结构域通过激活 FGFR 以浓度依赖的方式诱导神经突生长。几种合成的源自 NCAM1 的肽通过 FGFR 诱导神经突生长。只有源自 NCAM2 相似区域的 5 个肽中的 2 个诱导神经突生长,但其中最有效的肽通过 FGFR 依赖性激活 Ras-MAPK 途径刺激神经突生长。这些结果表明,NCAM2 FnIII 结构域形成刚性结构,以类似于但不同于 NCAM1 的方式结合并激活 FGFR。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da6e/5997747/c0f91baac4a2/41598_2018_27089_Fig1_HTML.jpg

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