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1.
J Pept Sci ; 30(6): e3565, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38232955

ABSTRACT

Bicyclic peptides are important chemical tools that can function, for example, as bioactive ligands switching on/off signaling pathways mediated by guanine nucleotide-binding proteins as bicycles are more broadly applicable. Despite their relevance in medicinal chemistry, the synthesis of such peptides is challenging, and the final yield is highly dependent on the chemical composition and physicochemical properties of the scaffold. We recently discovered novel, state-specific peptide modulators targeting the Gαi protein, namely, GPM-2/GPM-3, by screening a one-bead-two-compound combinatorial library. A more detailed analysis, including sequence alignments and computer-assisted conformational studies based on the hit compounds, revealed the new peptide 10 as a potential macrobicyclic Gαi ligand sharing high sequence similarity to the known Gαi modulators. The Gαs protein was included in this study for comparison and to unravel the criteria for the specificity of modulator binding to Gαi versus Gαs. This work provides in-depth computer-assisted experimental studies for the analysis of novel macrobicyclic, library-derived Gαi protein ligands. The sequence and structural comparison of 10 with the lead compounds GPM-2 and GPM-3 reveals the importance of the size and amino acid composition of one ring of the bicyclic system and suggests features enhancing the binding affinity of the peptides to the Gαi protein.


Subject(s)
Drug Design , Peptides, Cyclic , Peptides, Cyclic/chemistry , Peptides, Cyclic/chemical synthesis , Peptides, Cyclic/pharmacology , Ligands , Amino Acid Sequence , Humans , Models, Molecular , Protein Binding
2.
Anal Chem ; 94(41): 14410-14418, 2022 10 18.
Article in English | MEDLINE | ID: mdl-36206384

ABSTRACT

Gα proteins as part of heterotrimeric G proteins are molecular switches essential for G protein-coupled receptor- mediated intracellular signaling. The role of the Gα subunits has been examined for decades with various guanine nucleotides to elucidate the activation mechanism and Gα protein-dependent signal transduction. Several approaches describe fluorescent ligands mimicking the GTP function, yet lack the efficient estimation of the proteins' GTP binding activity and the fraction of active protein. Herein, we report the development of a reliable fluorescence anisotropy-based method to determine the affinity of ligands at the GTP-binding site and to quantify the fraction of active Gαi1 protein. An advanced bacterial expression protocol was applied to produce active human Gαi1 protein, whose GTP binding capability was determined with novel fluorescently labeled guanine nucleotides acting as high-affinity Gαi1 binders compared to the commonly used BODIPY FL GTPγS. This study thus contributes a new method for future investigations of the characterization of Gαi and other Gα protein subunits, exploring their corresponding signal transduction systems and potential for biomedical applications.


Subject(s)
Guanine Nucleotides , Heterotrimeric GTP-Binding Proteins , Fluorescence Polarization , Guanine Nucleotides/metabolism , Guanosine Triphosphate/metabolism , Heterotrimeric GTP-Binding Proteins/metabolism , Humans , Ligands , Protein Binding , Protein Subunits/metabolism , Receptors, G-Protein-Coupled/metabolism
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