scispace - formally typeset
L

Lili Fu

Researcher at New York University

Publications -  3
Citations -  352

Lili Fu is an academic researcher from New York University. The author has contributed to research in topics: Fibroblast growth factor receptor & Signal transduction. The author has an hindex of 2, co-authored 2 publications receiving 241 citations. Previous affiliations of Lili Fu include Wenzhou Medical College.

Papers
More filters
Journal ArticleDOI

α-Klotho is a non-enzymatic molecular scaffold for FGF23 hormone signalling

Abstract: The ageing suppressor α-klotho binds to the fibroblast growth factor receptor (FGFR). This commits FGFR to respond to FGF23, a key hormone in the regulation of mineral ion and vitamin D homeostasis. The role and mechanism of this co-receptor are unknown. Here we present the atomic structure of a 1:1:1 ternary complex that consists of the shed extracellular domain of α-klotho, the FGFR1c ligand-binding domain, and FGF23. In this complex, α-klotho simultaneously tethers FGFR1c by its D3 domain and FGF23 by its C-terminal tail, thus implementing FGF23-FGFR1c proximity and conferring stability. Dimerization of the stabilized ternary complexes and receptor activation remain dependent on the binding of heparan sulfate, a mandatory cofactor of paracrine FGF signalling. The structure of α-klotho is incompatible with its purported glycosidase activity. Thus, shed α-klotho functions as an on-demand non-enzymatic scaffold protein that promotes FGF23 signalling.
Journal ArticleDOI

Molecular basis for receptor tyrosine kinase A-loop tyrosine transphosphorylation

TL;DR: It is shown how quantitative differences in the stability of ligand-induced extracellular dimerization promotes formation of the intracellular A-loop-transphosphorylating asymmetric complex to varying extents, thereby modulating intrACEllular kinase activity and signaling intensity.
Journal ArticleDOI

Structural basis for FGF hormone signalling

TL;DR: In this article , the authors solved three distinct 1:2:1:1 FGF23-FGFR-αKlotho-HS quaternary complexes featuring the 'c' splice isoforms of FGFR1 (FGFR1c), FGFR3(FGFR3c), or FGFR4 as the receptor component and showed that the asymmetric mode of receptor dimerization is applicable to paracrine FGFs that signal solely in an HS-dependent fashion.