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Panigrahi, B.

Publications and source records attributed to Panigrahi, B..

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Allosteric modulation of GPCR-induced β-arrestin trafficking and signaling by a synthetic intrabody

Agonist-induced phosphorylation of G protein-coupled receptors (GPCRs) is a primary determinant of {beta}-arrestin ({beta}arr) recruitment and trafficking. For several GPCRs, such as the vasopressin type II receptor (V2R), which exhibit high affinity for {beta}arrs, agonist-stimulation first drives the translocation of {beta}arrs to the plasma membrane, followed by endosomal trafficking. We previously found that mutation of a single phosphorylation site in V2R (i.e., V2RT360A) results in near-complete loss of {beta}arr translocation to endosomes although {beta}arrs are robustly recruited to the plasma membrane. Here, we show that a synthetic intrabody referred to as intrabody30 (Ib30), which selectively recognizes an active-like {beta}arr1 conformation, rescues endosomal translocation of {beta}arr1 for V2RT360A. In addition, Ib30 also rescues agonist-induced ERK1/2 MAP kinase activation for V2RT360A to levels similar to that of the wild-type V2R. Molecular dynamics simulations reveal that Ib30 binding promotes active-like conformation in {beta}arr1 with respect to the inter-domain rotation. Interestingly, we also observe that Ib30 enhances the interaction of {beta}arr1 with {beta}2-adaptin, which provides a mechanistic basis for the ability of Ib30 to promote endosomal trafficking of {beta}arr1. Taken together, our data provide a novel mechanism to positively modulate the receptor-transducer-effector axis for GPCRs using intrabodies, which can potentially be integrated in the current paradigm of GPCR-targeted drug discovery. SignificanceThe interaction of G protein-coupled receptors (GPCRs) with {beta}-arrestins ({beta}arrs) is a critical step in their regulatory and signaling paradigms. While intrabodies that bind to GPCRs, G proteins and {beta}arrs have been utilized as biosensors and regulators of functional outcomes, allosteric targeting of receptor-transducer complexes to encode gain of function has not been documented so far. Here, we discover that a conformation-specific synthetic intrabody recognizing GPCR-bound {beta}arr1 can allosterically enhance endosomal trafficking of {beta}arr1 and agonist-induced ERK1/2 MAP kinase activation. This intrabody promotes an active-like {beta}arr1 conformation and enhances the interaction of {beta}2-adaptin with {beta}arr1. Our findings establish a conceptual framework to allosterically modulate protein-protein interactions in GPCR signaling cascade to modulate their trafficking and signaling responses.

biochemistry↗