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1.
J Am Chem Soc ; 139(10): 3767-3773, 2017 03 15.
Article in English | MEDLINE | ID: mdl-28207247

ABSTRACT

The synthesis of complex protein-based bioconjugates has been facilitated greatly by recent developments in chemoselective methods for biomolecular modification. The oxidative coupling of o-aminophenols or catechols with aniline functional groups is chemoselective, mild, and rapid; however, the oxidatively sensitive nature of the electron-rich aromatics and the paucity of commercial sources pose some obstacles to the general use of these reactive strategies. Herein, we identify o-methoxyphenols as air-stable, commercially available derivatives that undergo efficient oxidative couplings with anilines in the presence of periodate as oxidant. Mechanistic considerations informed the development of a preoxidation protocol that can greatly reduce the amount of periodate necessary for effective coupling. The stability and versatility of these reagents was demonstrated through the synthesis of complex protein-protein bioconjugates using a site-selective heterobifunctional cross-linker comprising both o-methoxyphenol and 2-pyridinecarboxaldehyde moieties. This compound was used to link epidermal growth factor to genome-free MS2 viral capsids, affording nanoscale delivery vectors that can target a variety of cancer cell types.


Subject(s)
Aminophenols/chemistry , Biomimetic Materials/chemistry , Cross-Linking Reagents/chemistry , Aniline Compounds/chemistry , Cross-Linking Reagents/chemical synthesis , Humans , MCF-7 Cells , Molecular Structure , Oxidation-Reduction
2.
J Am Chem Soc ; 136(36): 12600-6, 2014 Sep 10.
Article in English | MEDLINE | ID: mdl-25171554

ABSTRACT

Methods for the surface patterning of small molecules and biomolecules can yield useful platforms for drug screening, synthetic biology applications, diagnostics, and the immobilization of live cells. However, new techniques are needed to achieve the ease, feature sizes, reliability, and patterning speed necessary for widespread adoption. Herein, we report an easily accessible and operationally simple photoinitiated reaction that can achieve patterned bioconjugation in a highly chemoselective manner. The reaction involves the photolysis of 2-azidophenols to generate iminoquinone intermediates that couple rapidly to aniline groups. We demonstrate the broad functional group compatibility of this reaction for the modification of proteins, polymers, oligonucleotides, peptides, and small molecules. As a specific application, the reaction was adapted for the photolithographic patterning of azidophenol DNA on aniline glass substrates. The presence of the DNA was confirmed by the ability of the surface to capture living cells bearing the sequence complement on their cell walls or cytoplasmic membranes. Compared to other light-based DNA patterning methods, this reaction offers higher speed and does not require the use of a photoresist or other blocking material.


Subject(s)
Aniline Compounds/chemistry , Azides/chemistry , Phenols/chemistry , DNA, Single-Stranded/chemistry , Molecular Structure , Photochemical Processes , Quinones/chemical synthesis , Quinones/chemistry
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