Understanding the Physical Interactions in the FGF21/FGFR/beta-Klotho Complex: Structural Requirements and Implications in FGF21 Signaling

作者:Yie Junming*; Wang Wei; Deng Liying; Tam Lei Ting; Stevens Jennitte; Chen Michelle M; Li Yang; Xu Jing; Lindberg Richard; Hecht Randy; Veniant Murielle; Chen Ching; Wang Minghan
来源:Chemical Biology & Drug Design, 2012, 79(4): 398-410.
DOI:10.1111/j.1747-0285.2012.01325.x

摘要

The endocrine fibroblast growth factor 21 (FGF21) requires both fibroblast growth factor receptor (FGFR) and beta-Klotho for signaling. In this study, we sought to understand the inter-molecular physical interactions in the FGF21/FGFR/beta-Klotho complex by deleting key regions in FGFR1c or FGF21. Deletion of the D1 and the D1-D2 linker (the D1/linker region) from FGFR1c led to beta-Klotho-independent receptor activation by FGF21, suggesting that there may be a direct interaction between FGF21 and the D1/linker region-deficient FGFR1c. Consistent with this, the extracellular portion of FGFR1c lacking the D1/linker region blocked FGF21 action in a reporter assay, presumably by binding to and sequestering FGF21 from acting on cell surface receptor complex. In addition, the D1/linker region-deficient FGFR1c had enhanced interaction with beta-Klotho. Further, we demonstrated that deletion of the D1/linker region enhanced the formation of the FGF21/beta-Klotho/FGFR1c ternary complex in both Biacore and asymmetrical flow field flow fractionation studies. Finally, we found that the N-terminus of FGF21 is involved in the interaction with FGFR1c and FGF21/beta-Klotho/FGFR1c ternary complex formation. Taken together, our data suggest that the D1/linker region regulates both the FGF21/FGFR1c and FGFR1c/beta-Klotho interaction, and a direct interaction of FGF21 with FGFR1c may be an important step in receptor-mediated FGF21 signaling.

  • 出版日期2012-4