Versatile Bioconjugation Chemistries of ortho-Boronyl Aryl Ketones and Aldehydes

被引:74
作者
Cambray, Samantha [1 ]
Gao, Jianmin [1 ]
机构
[1] Boston Coll, Dept Chem, 2609 Beacon St, Chestnut Hill, MA 02467 USA
基金
美国国家卫生研究院;
关键词
AQUEOUS-SOLUTION; NEUTRAL PH; BIOORTHOGONAL CONJUGATION; DIAZABORINE FORMATION; PROTEIN MODIFICATION; CLICK CHEMISTRY; COVALENT; ACID; HYDRAZONES; FUNCTIONALIZATION;
D O I
10.1021/acs.accounts.8b00154
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
CONSPECTUS: Biocompatible and bioorthogonal conjugation reactions have proven to be powerful tools in biological research and medicine. While the advent of bioorthogonal conjugation chemistries greatly expands our capacity to interrogate specific biomolecules in situ, biocompatible reactions that target endogenous reactive groups have given rise to a number of covalent drugs as well as a battery of powerful research tools. Despite the impressive progress, limitations do exist with the current conjugation chemistries. For example, most known bioorthogonal conjugations suffer from slow reaction rates and imperfect bioorthogonality. On the other hand, covalent drugs often display high toxicity due to off-target labeling and immunogenicity. These limitations demand continued pursuit of conjugation chemistries with optimal characteristics for biological applications. A spate of papers appearing in recent literature report the conjugation chemistries of 2-formyl and 2-acetyl phenylboronic acids (abbreviated as 2-FPBA and 2-APBA, respectively). These simple reactants are found to undergo fast conjugation with various nucleophiles under physiological conditions, showing great promise for biological applications. The versatile reactivity of 2-FPBA and 2-APBA manifests in dynamic conjugation with endogenous nucleophiles as well as conjugation with designer nucleophiles in a bioorthogonal manner. 2-FPBA/APBA conjugates with amines in biomolecules, such as lysine side chains and aminophospholipids, in a highly dynamic manner to give iminoboronates. In contrast to typical imines, iminoboronates enjoy much improved thermodynamic stability, yet are kinetically labile for hydrolysis due to imine activation by the boronic acid. Dynamic conjugations as such present a novel binding mechanism analogous to hydrogen bonding and electrostatic interactions, Implementation of this covalent binding mechanism has yielded reversible covalent probes of prevalent bacterial pathogens. It has also resulted in reversible covalent inhibitors of a therapeutically important protein Mcl-1. Such covalent probes/inhibitors with 2-FPBA/APBA warheads avoid permanent modification of their biological target, potentially able to mitigate off-target labeling and immunogenicity of covalent drugs. The dynamic conjugation of 2FPBA/APBA has been recently extended to N-terminal cysteines, which can be selectively targeted via formation of a thiazolidino boronate (TzB) complex. The dynamic TzB formation expands the toolbox for site-specific protein labeling and the development of covalent drugs. On the front of bioorthogonal conjugation, 2-FPBA/APBA has been found to conjugate with alpha-nucleophiles under physiologic conditions with rate constant (k(2)) over 1000 M-1 s(-1), which overcomes the slow kinetics problems and rekindles the interest of using the conjugation of a-nucleophiles for biological studies. With fast kinetics being a shared feature, this family of conjugation chemistries gives remarkably diverse product structures depending on the choice of nucleophile. Importantly, both dynamic and irreversible conjugations have been developed, which we believe will enable a wide array of applications in biological research. In this Account, we collectively examine this rapidly expanding family of conjugation reactions, seeking to elucidate the unifying principles that would guide further development of novel conjugation reactions, as well as their applications in biology.
引用
收藏
页码:2198 / 2206
页数:9
相关论文
共 51 条
[11]   GUEST EDITORIAL A Decade of Bioorthogonal Chemistry [J].
Bertozzi, Carolyn R. .
ACCOUNTS OF CHEMICAL RESEARCH, 2011, 44 (09) :651-653
[12]  
Bradshaw JM, 2015, NAT CHEM BIOL, V11, P525, DOI [10.1038/nchembio.1817, 10.1038/NCHEMBIO.1817]
[13]   Reversible Lysine Modification on Proteins by Using Functionalized Boronic Acids [J].
Cal, Pedro M. S. D. ;
Frade, Raquel F. M. ;
Cordeiro, Carlos ;
Gois, Pedro M. P. .
CHEMISTRY-A EUROPEAN JOURNAL, 2015, 21 (22) :8182-8187
[14]   Iminoboronates: A New Strategy for Reversible Protein Modification [J].
Cal, Pedro M. S. D. ;
Vicente, Joao B. ;
Pires, Elisabete ;
Coelho, Ana V. ;
Veiros, Luis F. ;
Cordeiro, Carlos ;
Gois, Pedro M. P. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2012, 134 (24) :10299-10305
[15]   Fluorogenic diazaborine formation of semicarbazide with designed coumarin derivatives [J].
Cambray, Samantha ;
Bandyopadhyay, Anupam ;
Gao, Jianmin .
CHEMICAL COMMUNICATIONS, 2017, 53 (93) :12532-12535
[16]   Structural and Thermodynamic Analysis of a Three-Component Assembly Forming ortho-Iminophenylboronate Esters [J].
Chapin, Brette M. ;
Metola, Pedro ;
Lynch, Vincent M. ;
Stanton, John F. ;
James, Tony D. ;
Anslyn, Eric V. .
JOURNAL OF ORGANIC CHEMISTRY, 2016, 81 (18) :8319-8330
[17]   Probing Intramolecular B-N Interactions in Ortho-Aminomethyl Arylboronic Acids [J].
Collins, Byron E. ;
Sorey, Steven ;
Hargrove, Amanda E. ;
Shabbir, Shagufta H. ;
Lynch, Vincent M. ;
Anslyn, Eric V. .
JOURNAL OF ORGANIC CHEMISTRY, 2009, 74 (11) :4055-4060
[18]   Evolution of Dynamic Combinatorial Chemistry [J].
Cougnon, Fabien B. L. ;
Sanders, Jeremy K. M. .
ACCOUNTS OF CHEMICAL RESEARCH, 2012, 45 (12) :2211-2221
[19]   Glycine enolates:: The effect of formation of iminium ions to simple ketones on α-amino carbon acidity and a comparison with pyridoxal iminium ions [J].
Crugeiras, Juan ;
Rios, Ana ;
Riveiros, Enrique ;
Amyes, Tina L. ;
Richard, John P. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2008, 130 (06) :2041-2050
[20]   Rapid formation of a stable boron-nitrogen heterocycle in dilute, neutral aqueous solution for bioorthogonal coupling reactions [J].
Dilek, Ozlem ;
Lei, Zhen ;
Mukherjee, Kamalika ;
Bane, Susan .
CHEMICAL COMMUNICATIONS, 2015, 51 (95) :16992-16995