N-terminal helix formation and dimer-monomer transition of FGF10 in specific recognition of FGFR2b.

IF 4.2
Hyunjae Park, Yoon Sik Park, Kiwoong Kwak, Jiwon Yun, Hyeonmin Lee, Chae-Eun Lee, DongHyun Lee, Kyeong Won Lee, Young Jun An, Hyung-Soon Yim, Jung-Hyun Lee, Sun-Shin Cha, Lin-Woo Kang
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Abstract

Fibroblast growth factors (FGFs) are crucial for various cellular functions, including proliferation, differentiation, tissue repair, and immune responses. FGF10, part of the FGF7 subfamily, binds to the FGFR2b receptor via heparin sulfate. We determined the crystal structure of human FGF10 alone. In the FGFR2b-bound form, the N-terminal region of FGF10 formed an α1 helix. This α1 helix, however, exists as a flexible loop with dual conformations in the unbound structure. Deleting this conformationally dynamic α1 helix reduces cell proliferation activity in vitro. Receptor-binding-induced formation of the α1 helix in FGF10 creates a distinct protruded knob and concave pocket on the globular core of FGFs, increasing the FGFR2b-binding surface by 37%. Size-exclusion chromatography showed a concentration-dependent dimer-monomer shift in purified FGF10, with the hydrophobic dimer interface aligning with the FGFR2b D2-domain-binding surface. These findings suggest that the conformational change in the N-terminal region and the dimer-monomer shift are critical for FGF10's specific binding to FGFR2b, highlighting the functional significance of these structural adaptations.

FGF10在特异性识别FGFR2b中的n端螺旋形成和二聚体-单体转变。
成纤维细胞生长因子(FGFs)对多种细胞功能至关重要,包括增殖、分化、组织修复和免疫反应。FGF10是FGF7亚家族的一部分,通过硫酸肝素与FGFR2b受体结合。我们单独测定了人类FGF10的晶体结构。在fgfr2b结合形式下,FGF10的n端区域形成α1螺旋。然而,这种α1螺旋在非结合结构中以具有双重构象的柔性环存在。删除这种构象动态α1螺旋会降低体外细胞增殖活性。受体结合诱导的FGF10中α1螺旋的形成在FGF10的球状核心上形成了一个明显的突起突起和凹口袋,使fgfr2b结合表面增加了37%。尺寸排除色谱显示纯化的FGF10中存在浓度依赖的二聚体-单体位移,疏水二聚体界面与FGFR2b d2结构域结合表面对齐。这些发现表明,n端区域的构象变化和二聚体-单体转移对于FGF10特异性结合FGFR2b至关重要,突出了这些结构适应的功能意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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