McPherson Victor A, Everingham Stephanie, Karisch Robert, Smith Julie A, Udell Christian M, Zheng Jimin, Jia Zongchao, Craig Andrew W B
Department of Biochemistry, Queen's University, Kingston, Ontario K7L 3N6, Canada.
Mol Cell Biol. 2009 Jan;29(2):389-401. doi: 10.1128/MCB.00904-08. Epub 2008 Nov 10.
This study investigates the roles of Fer-CIP4 homology (FCH)-Bin/amphiphysin/Rvs (F-BAR) and SH2 domains of Fes protein tyrosine kinase in regulating its activation and signaling downstream of the high-affinity immunoglobulin G (IgE) receptor (FcepsilonRI) in mast cells. Homology modeling of the Fes F-BAR domain revealed conservation of some basic residues implicated in phosphoinositide binding (R113/K114). The Fes F-BAR can bind phosphoinositides and induce tubulation of liposomes in vitro. Mutation of R113/K114 to uncharged residues (RK/QQ) caused a significant reduction in phosphoinositide binding in vitro and a more diffuse cytoplasmic localization in transfected COS-7 cells. RBL-2H3 mast cells expressing full-length Fes carrying the RK/QQ mutation show defects in FcepsilonRI-induced Fes tyrosine phosphorylation and degranulation compared to cells expressing wild-type Fes. This correlated with reduced localization to Lyn kinase-containing membrane fractions for the RK/QQ mutant compared to wild-type Fes in mast cells. The Fes SH2 domain also contributes to Fes signaling in mast cells, via interactions with the phosphorylated FcepsilonRI beta chain and the actin regulatory protein HS1. We show that Fes phosphorylates C-terminal tyrosine residues in HS1 implicated in actin stabilization. Thus, coordinated actions of the F-BAR and SH2 domains of Fes allow for coupling to FcepsilonRI signaling and potential regulation the actin reorganization in mast cells.
本研究调查了Fes蛋白酪氨酸激酶的Fer-CIP4同源(FCH)-Bin/发动蛋白/Rvs(F-BAR)结构域和SH2结构域在调节肥大细胞中高亲和力免疫球蛋白G(IgE)受体(FcepsilonRI)下游其激活和信号传导方面的作用。Fes F-BAR结构域的同源性建模揭示了一些与磷酸肌醇结合相关的碱性残基(R113/K114)的保守性。Fes F-BAR能够结合磷酸肌醇并在体外诱导脂质体形成微管。将R113/K114突变为不带电荷的残基(RK/QQ)导致体外磷酸肌醇结合显著减少,并且在转染的COS-7细胞中细胞质定位更加弥散。与表达野生型Fes的细胞相比,表达携带RK/QQ突变的全长Fes的RBL-2H3肥大细胞在FcepsilonRI诱导的Fes酪氨酸磷酸化和脱颗粒方面存在缺陷。这与肥大细胞中RK/QQ突变体与野生型Fes相比,定位到含Lyn激酶的膜组分减少相关。Fes SH2结构域也通过与磷酸化的FcepsilonRIβ链和肌动蛋白调节蛋白HS1相互作用,在肥大细胞的Fes信号传导中发挥作用。我们发现Fes使HS1中与肌动蛋白稳定有关的C末端酪氨酸残基磷酸化。因此,Fes的F-BAR和SH2结构域的协同作用使得能够与FcepsilonRI信号传导偶联,并可能调节肥大细胞中的肌动蛋白重组。