Jané Pau, Gógl Gergő, Kostmann Camille, Bich Goran, Girault Virginie, Caillet-Saguy Célia, Eberling Pascal, Vincentelli Renaud, Wolff Nicolas, Travé Gilles, Nominé Yves
(Equipe labelisée Ligue, 2015) Department of Integrative Structural Biology, Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), INSERM U1258/CNRS UMR 7104/Université de Strasbourg, Illkirch, France.
Unité Récepteurs-canaux, Institut Pasteur, UMR 3571/CNRS, Paris, France.
PLoS One. 2020 Dec 31;15(12):e0244613. doi: 10.1371/journal.pone.0244613. eCollection 2020.
Protein domains often recognize short linear protein motifs composed of a core conserved consensus sequence surrounded by less critical, modulatory positions. PTEN, a lipid phosphatase involved in phosphatidylinositol 3-kinase (PI3K) pathway, contains such a short motif located at the extreme C-terminus capable to recognize PDZ domains. It has been shown that the acetylation of this motif could modulate the interaction with several PDZ domains. Here we used an accurate experimental approach combining high-throughput holdup chromatographic assay and competitive fluorescence polarization technique to measure quantitative binding affinity profiles of the PDZ domain-binding motif (PBM) of PTEN. We substantially extended the previous knowledge towards the 266 known human PDZ domains, generating the full PDZome-binding profile of the PTEN PBM. We confirmed that inclusion of N-terminal flanking residues, acetylation or mutation of a lysine at a modulatory position significantly altered the PDZome-binding profile. A numerical specificity index is also introduced as an attempt to quantify the specificity of a given PBM over the complete PDZome. Our results highlight the impact of modulatory residues and post-translational modifications on PBM interactomes and their specificity.
蛋白质结构域常常识别由核心保守共有序列组成的短线性蛋白质基序,该共有序列周围是不太关键的调节性位点。PTEN是一种参与磷脂酰肌醇3激酶(PI3K)途径的脂质磷酸酶,在其极端C末端含有这样一个能够识别PDZ结构域的短基序。研究表明,该基序的乙酰化可调节与多个PDZ结构域的相互作用。在这里,我们使用了一种精确的实验方法,结合高通量滞留色谱分析和竞争性荧光偏振技术,来测量PTEN的PDZ结构域结合基序(PBM)的定量结合亲和力谱。我们极大地扩展了之前关于266个已知人类PDZ结构域的知识,生成了PTEN PBM的完整PDZome结合谱。我们证实,包含N末端侧翼残基、调节性位点处赖氨酸的乙酰化或突变会显著改变PDZome结合谱。还引入了一个数值特异性指数,试图量化给定PBM在整个PDZome上的特异性。我们的结果突出了调节性残基和翻译后修饰对PBM相互作用组及其特异性的影响。