| Literature DB >> 24808990 |
Brian M Zeglis1, Fabien Emmetiere1, Nagavarakishore Pillarsetty1, Ralph Weissleder2, Jason S Lewis3, Thomas Reiner1.
Abstract
The need for post-synthetic modifications and reactive prosthetic groups has long been a limiting factor in the synthesis and study of peptidic and peptidomimetic imaging agents. In this regard, the application of biologically and chemically orthogonal reactions to the design and development of novel radiotracers has the potential to have far-reaching implications in both the laboratory and the clinic. Herein, we report the synthesis and development of a series of modular and versatile building blocks for inverse electron-demand Diels-Alder copper-free click chemistry: tetrazine-functionalized artificial amino acids. Following the development of a novel peptide coupling protocol for peptide synthesis in the presence of tetrazines, we successfully demonstrated its effectiveness and applicability. This versatile methodology has the potential to have a transformational impact, opening the door for the rapid, facile, and modular synthesis of bioorthogonally reactive peptide probes.Entities:
Keywords: bioorthogonal chemistry; click chemistry; positron emission tomography (PET); solid-phase peptide synthesis; zirconium-89
Year: 2014 PMID: 24808990 PMCID: PMC4000166 DOI: 10.1002/open.201402000
Source DB: PubMed Journal: ChemistryOpen ISSN: 2191-1363 Impact factor: 2.911
Scheme 1Conceptual synthesis of tetrazine-amino acid incorporation into peptides. A) The late stage incorporation of an orthogonal reactive group, a common synthetic route for the construction of targeted peptides: peptides are synthesized using SPPS and subsequently derivatized using bifunctional prosthetic groups that react selectively or semi-selectively with biogenic amino acids. B) The incorporation of an orthogonal reactive group into peptides via tetrazine-bearing amino acids: tetrazine-bearing amino acids are employed in a manner identical to biogenic amino acids and incorporated during SPPS. After cleavage of the peptide from the solid support, the tetrazine-bearing amino acids can serve as chemically orthogonal groups that react at radiochemically relevant concentrations, yielding targeted imaging agents quickly and selectively.
Figure 1Stability of tetrazine-bearing amino acids under SPPS conditions: A) amino acid coupling conditions; B) N-Boc deprotection conditions; C) resin cleavage conditions. E) Structure of the novel tetrazine-pentapeptide VFτAG. F) HPLC trace of the pentapeptide VFτAG before and after HPLC purification.
Figure 2Chemically orthogonal synthesis of 89Zr-VFτAG (6). A) Synthesis and structure of 6, product of the chemically orthogonal reaction of VFτAG (4) with 89Zr-TCO (5); Reaction conditions: CH3CN/H2O (1:1, 0.1 % TFA), 30 min. B) Radio-HPLC trace of 5. C) Radio-HPLC trace of 6.