ArreSTick motif controls β-arrestin-binding stability and extends phosphorylation-dependent β-arrestin interactions to non-receptor proteins

ArreSTick 基序控制 β-arrestin 结合稳定性,并将磷酸化依赖性 β-arrestin 相互作用延伸至非受体蛋白

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作者:András Dávid Tóth, Eszter Soltész-Katona, Katalin Kis, Viktor Guti, Sharon Gilzer, Susanne Prokop, Roxána Boros, Ádám Misák, András Balla, Péter Várnai, Lilla Turiák, András Ács, László Drahos, Asuka Inoue, László Hunyady, Gábor Turu

Abstract

The binding and function of β-arrestins are regulated by specific phosphorylation motifs present in G protein-coupled receptors (GPCRs). However, the exact arrangement of phosphorylated amino acids responsible for establishing a stable interaction remains unclear. We employ a 1D sequence convolution model trained on GPCRs with established β-arrestin-binding properties. With this approach, amino acid motifs characteristic of GPCRs that form stable interactions with β-arrestins can be identified, a pattern that we name "arreSTick." Intriguingly, the arreSTick pattern is also present in numerous non-receptor proteins. Using proximity biotinylation assay and mass spectrometry analysis, we demonstrate that the arreSTick motif controls the interaction between many non-receptor proteins and β-arrestin2. The HIV-1 Tat-specific factor 1 (HTSF1 or HTATSF1), a nuclear transcription factor, contains the arreSTick pattern, and its subcellular localization is influenced by β-arrestin2. Our findings unveil a broader role for β-arrestins in phosphorylation-dependent interactions, extending beyond GPCRs to encompass non-receptor proteins as well.

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