Genetic Encoding of Pentafluorophosphato‐Phenylalanine Provides PF <sub>5</sub> ‐Proteins as Phosphoprotein Mimetics

A Anna Magdalena Ambros (Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany) H Haocheng Qianzhu (Research School of Chemistry) M Markus Tiemann (Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany) E Edan Habel (Research School of Chemistry) K Katrin Denzinger (Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany) H Hana Zupan (Department of Chemistry and Biochemistry Freie Universität Berlin Berlin Germany) M Matteo Accorsi (Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany) B Bettina G. Keller (Department of Biology, Chemistry, and Pharmacy) G Gerhard Wolber (Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany) T Thomas Huber (Research School of Chemistry) J Jörg Rademann (Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany)

Abstract

Abstract Protein phosphorylation is one of the most important posttranslational modifications altering the structure, stability, and activity of more than 13 000 human proteins. In this work, the phosphotyrosine mimetic pentafluorophosphato‐difluoromethyl‐phenylalanine (PF 5 CF 2 Phe) was genetically encoded and incorporated into three different proteins. Screening two libraries of orthogonal aminoacyl‐tRNA synthetases identified enzymes enabling the efficient and specific incorporation of PF 5 CF 2 Phe into red fluorescent protein (RFP) via amber stop codon suppression. Two model proteins, human ubiquitin (Ubq) and the B1 immunoglobulin‐binding domain of streptococcal protein G (GB1), were prepared with PF 5 CF 2 Phe mutations and investigated for potential interaction partners. While native GB1 showed no binding to protein tyrosine phosphatases (PTP), PF 5 ‐GB1, with PF 5 CF 2 Phe at position 17, was a strong inhibitor of the phosphatases PTP1B and SHP2. PF 5 ‐Ubq was produced and converted into the first example of a protein carrying the most prominent phosphotyrosine mimetic, phosphono‐difluoromethyl phenylalanine (PO 3 CF 2 Phe). With increasing need in the biosciences to delineate the functions of complex phosphorylation patterns, genetic encoding of PF 5 CF 2 Phe yielding phosphoprotein mimetics opens unique opportunities for precise functional studies where site‐specific and homogeneous protein modifications are required.

Article Details

Volume / Issue Vol. 65, Issue 1
Published January 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (11)

A

Anna Magdalena Ambros

Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany

H

Haocheng Qianzhu

Research School of Chemistry

M

Markus Tiemann

Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany

E

Edan Habel

Research School of Chemistry

K

Katrin Denzinger

Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany

H

Hana Zupan

Department of Chemistry and Biochemistry Freie Universität Berlin Berlin Germany

M

Matteo Accorsi

Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany

B

Bettina G. Keller

Department of Biology, Chemistry, and Pharmacy

G

Gerhard Wolber

Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany

T

Thomas Huber

Research School of Chemistry

J

Jörg Rademann

Department of Biology Chemistry, Pharmacy Institute of Pharmacy Freie Universität Berlin Königin‐Luise‐Str. 2+4 14195 Berlin Germany