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Bailey, R. C.

Publications and source records attributed to Bailey, R. C..

2 recordsLinked to original sources

Established Sulfopeptide Tandem Mass Spectrometry Behavior and Sulfotransferase Assays Refute Tyrosine Sulfation as a Histone Mark

Tyrosylprotein sulfotransferases (TPST1 and TPST2) are only known to exist in the Golgi1. Thus, Yu et al.s findings that histone H3 sulfation occurs in the cytosol are surprising. Cytosolic sulfotransferase SULT1B1, which sulfates phenolic small molecules, was proposed to catalyze H3Y99 sulfation with 3'-phosphoadenosine 5'-phosphosulfate (PAPS) as SO3 donor. Bottom-up liquid chromatography-tandem mass spectrometry (LC-MS/MS)-based proteomic analyses were key to this conclusion. Such experiments appear to have been mainly performed following standard protocols, including reduction (reagent unknown), alkylation with iodoacetamide (IAA), and proteolytic digestion prior to nanoflow LC (nanoLC) separation of proteolytic peptides and data-dependent higher energy collision dissociation (HCD) to generate sequence-informative peptide fragments. However, the published HCD MS/MS spectra do not match established sulfopeptide fragmentation behavior. We present reannotation of these spectra and additional experiments that found a lack of evidence to support H3Y99 sulfation.

biochemistry↗

An accessible and generalizable in vitro luminescence assay for detecting GPCR activation

G-protein coupled receptors (GPCRs) serve critical physiological roles as the most abundant family of receptors. Here we describe the design of a generalizable and accessible In vitro GPCR split NanoLuc ligand Triggered Reporter (IGNiTR), having broad and diverse applications. IGNiTR leverages the interaction between a conformationspecific binder and agonist-activated GPCR to reconstitute a split nanoluciferase. We have demonstrated IGNiTR with three Gs-coupled GPCRs and a Gi-coupled GPCR with three classes of conformation-specific binders: nanobodies, miniG proteins, and G-protein peptidomimetics. IGNiTR demonstrated binding efficacy and potency values of various Dopamine Receptor D1 (DRD1) ligands that agree well with reported values. IGNiTR also allows the use of a synthetic G protein peptidomimetic, providing easily standardized reagents for characterizing GPCRs and ligands. We demonstrated three applications of IGNiTR: 1) characterizing GPCR functionality during Nanodisc-based reconstitution process; 2) highthroughput screening of ligands against DRD1; 3) detection of opioids for in the field applications. Due to its convenience, accessibility and consistency, IGNiTR will find extensive applications in GPCR ligand detection, screening and GPCR characterization.

biochemistry↗