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1.
Angew Chem Int Ed Engl ; 61(25): e202203579, 2022 06 20.
Article in English | MEDLINE | ID: mdl-35303375

ABSTRACT

Phosphotyrosine residues are essential functional switches in health and disease. Thus, phosphotyrosine biomimetics are crucial for the development of chemical tools and drug molecules. We report here the discovery and investigation of pentafluorophosphato amino acids as novel phosphotyrosine biomimetics. A mild acidic pentafluorination protocol was developed and two PF5 -amino acids were prepared and employed in peptide synthesis. Their structures, reactivities, and fluorine-specific interactions were studied by NMR and IR spectroscopy, X-ray diffraction, and in bioactivity assays. The mono-anionic PF5 motif displayed an amphiphilic character binding to hydrophobic surfaces, to water molecules, and to protein-binding sites, exploiting charge and H-F-bonding interactions. The novel motifs bind 25- to 30-fold stronger to the phosphotyrosine binding site of the protein tyrosine phosphatase PTP1B than the best current biomimetics, as rationalized by computational methods, including molecular dynamics simulations.


Subject(s)
Fluorine , Phenylalanine , Binding Sites , Biomimetics , Enzyme Inhibitors/chemistry , Fluorides , Models, Molecular , Phosphotyrosine/chemistry
2.
Org Lett ; 22(8): 2976-2980, 2020 04 17.
Article in English | MEDLINE | ID: mdl-32223201

ABSTRACT

The flexible variation of peptidomimetics is of great interest for the identification of optimized protein ligands. Here we present a general concept for introducing side-chain modifications into peptides using triarylphosphonium amino acids. Building blocks 4a and 4b are activated for amidation and incorporated into stable peptides. The obtained phosphoranylidene peptides undergo Wittig olefinations and 1,3-dipolar cycloaddition reactions, yielding peptidomimetics with vinyl ketones and 5-substituted 1,2,3-triazoles as non-native peptide side chains.


Subject(s)
Aldehydes/chemistry , Amino Acids/chemistry , Peptides/chemistry , Peptidomimetics/chemical synthesis , Phosphoranes/chemistry , Cycloaddition Reaction , Molecular Conformation , Peptidomimetics/chemistry
3.
Angew Chem Int Ed Engl ; 58(24): 8216-8220, 2019 06 11.
Article in English | MEDLINE | ID: mdl-30958917

ABSTRACT

More than 100 hydrophobicity scales have been introduced, with each being based on a distinct condensed-phase approach. However, a comparison of the hydrophobicity values gained from different techniques, and their relative ranking, is not straightforward, as the interactions between the environment and the amino acid are unique to each method. Here, we overcome this limitation by studying the properties of amino acids in the clean-room environment of the gas phase. In the gas phase, entropic contributions from the hydrophobic effect are by default absent and only the polarity of the side chain dictates the self-assembly. This allows for the derivation of a novel hydrophobicity scale, which is based solely on the interaction between individual amino acid units within the cluster and thus more accurately reflects the intrinsic nature of a side chain. This principle can be further applied to classify non-natural derivatives, as shown here for fluorinated amino acid variants.

4.
Chemistry ; 23(61): 15387-15395, 2017 Nov 02.
Article in English | MEDLINE | ID: mdl-29024172

ABSTRACT

α,α-Difluoro-benzyl phosphonates are currently the most popular class of phosphotyrosine mimetics. Structurally derived from the natural substrate phosphotyrosine, they constitute classical bioisosteres and have enabled the development of potent inhibitors of protein tyrosine phosphatases (PTP) and phosphotyrosine recognition sites such as SH2 domains. Being dianions bearing two negative charges, phosphonates, however, do not permeate membranes and thus are often inactive in cells and have not been a successful starting point toward therapeutics, yet. In this work, benzyl phosphonates were modified by replacing phosphorus-bound oxygen atoms with phosphorus-bound fluorine atoms. Surprisingly, mono-P-fluorophosphonates were fully stable under physiological conditions, thus enabling the investigation of their mode of action toward PTP. Three alternative scenarios were tested and mono-P-fluorophosphonates were identified as stable reversible PTP1B inhibitors, despite of the loss of one negative charge and the replacement of one oxygen atom as an H-bond donor by fluorine. In extending this replacement strategy, α,α-difluorobenzyl penta-P-fluorophosphates were synthesized and found to be novel phosphotyrosine mimetics with improved affinity to the phosphotyrosine binding site of PTP1B.


Subject(s)
Fluorides/chemistry , Organophosphonates/chemistry , Phosphates/chemistry , Phosphotyrosine/chemistry , Protein Tyrosine Phosphatase, Non-Receptor Type 1/metabolism , Anions/chemistry , Binding Sites , Drug Design , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Enzyme Inhibitors/metabolism , Fluorides/chemical synthesis , Fluorides/metabolism , Humans , Hydrogen Bonding , Kinetics , Magnetic Resonance Spectroscopy , Molecular Docking Simulation , Organophosphonates/chemical synthesis , Organophosphonates/metabolism , Phosphates/chemical synthesis , Phosphates/metabolism , Protein Structure, Tertiary , Protein Tyrosine Phosphatase, Non-Receptor Type 1/antagonists & inhibitors
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