Literature DB >> 23095018

Exploring and exploiting polar-π interactions with fluorinated aromatic amino acids.

Christopher J Pace1, Jianmin Gao.   

Abstract

Fluorination has become an increasingly attractive strategy in protein engineering for both basic research and biomedical applications. Thus researchers would like to understand the consequences of fluorination to the structure, stability, and function of target proteins. Although a substantial amount of work has focused on understanding the properties of fluorinated aliphatic amino acids, much less is known about fluorinated aromatic residues. In addition, polar-π interactions, often referred to as aromatic interactions, may play a significant role in protein folding and protein-protein interactions. Fluorination of aromatic residues presents an ideal strategy for probing polar-π interactions in proteins. This Account summarizes the recent studies of the incorporation of fluorinated aromatic amino acids into proteins. Herein we discuss the effects of fluorinating aromatic residues and rationalize them in the context of polar-π interactions. The results strongly support the proposal that polar-π interactions are energetically significant to protein folding and function. For example, an edge-face interaction of a pair of phenylalanines contributes as much as -1 kcal/mol to protein stability, while cation-π interactions can be much stronger. Furthermore, this new knowledge provides guidelines for protein engineering with fluorination. Importantly, incorporating perfluorinated aromatic residues into proteins enables novel mechanisms of molecular recognition that do not exist in native proteins, such as arene-perfluoroarene stacking. Such novel mechanisms can be used for programming protein folding specificity and engineering peptide-based materials.

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Year:  2012        PMID: 23095018     DOI: 10.1021/ar300086n

Source DB:  PubMed          Journal:  Acc Chem Res        ISSN: 0001-4842            Impact factor:   22.384


  16 in total

Review 1.  Implications of aromatic-aromatic interactions: From protein structures to peptide models.

Authors:  Kamlesh Madhusudan Makwana; Radhakrishnan Mahalakshmi
Journal:  Protein Sci       Date:  2015-10-07       Impact factor: 6.725

2.  SNAr catalysis enhanced by an aromatic donor-acceptor interaction; facile access to chlorinated polyfluoroarenes.

Authors:  Sameera Senaweera; Jimmie D Weaver
Journal:  Chem Commun (Camb)       Date:  2017-07-04       Impact factor: 6.222

3.  Non-additive stabilization by halogenated amino acids reveals protein plasticity on a sub-angstrom scale.

Authors:  Azade S Hosseini; Christopher J Pace; Adam A Esposito; Jianmin Gao
Journal:  Protein Sci       Date:  2017-08-22       Impact factor: 6.725

4.  Fluorinated Aromatic Amino Acids Distinguish Cation-π Interactions from Membrane Insertion.

Authors:  Tao He; Anne Gershenson; Stephen J Eyles; Yan-Jiun Lee; Wenshe R Liu; Jiangyun Wang; Jianmin Gao; Mary F Roberts
Journal:  J Biol Chem       Date:  2015-06-19       Impact factor: 5.157

5.  A reactive peptide interface for site-selective cysteine bioconjugation.

Authors:  Suan Tuang; Diomedes Dieppa-Matos; Chi Zhang; Christopher R Shugrue; Peng Dai; Andrei Loas; Bradley L Pentelute
Journal:  Chem Commun (Camb)       Date:  2021-03-01       Impact factor: 6.222

6.  Hydrolysis, polarity, and conformational impact of C-terminal partially fluorinated ethyl esters in peptide models.

Authors:  Vladimir Kubyshkin; Nediljko Budisa
Journal:  Beilstein J Org Chem       Date:  2017-11-16       Impact factor: 2.883

7.  The Cation-π Interaction Enables a Halo-Tag Fluorogenic Probe for Fast No-Wash Live Cell Imaging and Gel-Free Protein Quantification.

Authors:  Yu Liu; Kun Miao; Noah P Dunham; Hongbin Liu; Matthew Fares; Amie K Boal; Xiaosong Li; Xin Zhang
Journal:  Biochemistry       Date:  2017-03-13       Impact factor: 3.162

Review 8.  Perfluorocarbons in Chemical Biology.

Authors:  Margeaux A Miller; Ellen M Sletten
Journal:  Chembiochem       Date:  2020-08-05       Impact factor: 3.164

9.  Organocatalyzed synthesis of fluorinated poly(aryl thioethers).

Authors:  Nathaniel H Park; Gabriel Dos Passos Gomes; Mareva Fevre; Gavin O Jones; Igor V Alabugin; James L Hedrick
Journal:  Nat Commun       Date:  2017-08-01       Impact factor: 14.919

10.  Pyridine-enabled copper-promoted cross dehydrogenative coupling of C(sp2)-H and unactivated C(sp3)-H bonds.

Authors:  Xuesong Wu; Yan Zhao; Haibo Ge
Journal:  Chem Sci       Date:  2015-07-20       Impact factor: 9.825

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