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Featured researches published by Robert E. Kyne.


ACS Chemical Biology | 2015

Rational Targeting of Active-Site Tyrosine Residues Using Sulfonyl Fluoride Probes

Erik C. Hett; Hua Xu; Kieran F. Geoghegan; Ariamala Gopalsamy; Robert E. Kyne; Carol A. Menard; Arjun Narayanan; Mihir D. Parikh; Shenping Liu; Lee R. Roberts; Ralph P. Robinson; Michael A. Tones; Lyn H. Jones

This work describes the first rational targeting of tyrosine residues in a protein binding site by small-molecule covalent probes. Specific tyrosine residues in the active site of the mRNA-decapping scavenger enzyme DcpS were modified using reactive sulfonyl fluoride covalent inhibitors. Structure-based molecular design was used to create an alkyne-tagged probe bearing the sulfonyl fluoride warhead, thus enabling the efficient capture of the protein from a complex proteome. Use of the probe in competition experiments with a diaminoquinazoline DcpS inhibitor permitted the quantification of intracellular target occupancy. As a result, diaminoquinazoline upregulators of survival motor neuron protein that are used for the treatment of spinal muscular atrophy were confirmed as inhibitors of DcpS in human primary cells. This work illustrates the utility of sulfonyl fluoride probes designed to react with specific tyrosine residues of a protein and augments the chemical biology toolkit by these probes uses in target validation and molecular pharmacology.


Organic Letters | 2015

Synthesis of Pyrazoles from 1,3-Diols via Hydrogen Transfer Catalysis

Daniel C. Schmitt; Alexandria P. Taylor; Andrew C. Flick; Robert E. Kyne

1,3-Diols engage in ruthenium-catalyzed hydrogen transfer in the presence of alkyl hydrazines to provide 1,4-disubstituted pyrazoles. Regioselective synthesis of unsymmetrical pyrazoles from β-hydroxy ketones is also described.


Journal of Medicinal Chemistry | 2017

Synthetic Approaches to the New Drugs Approved During 2015

Andrew C. Flick; Hong X. Ding; Carolyn A. Leverett; Robert E. Kyne; Kevin K.-C. Liu; Sarah J. Fink; Christopher J. O’Donnell

New drugs introduced to the market every year represent privileged structures for particular biological targets. These new chemical entities (NCEs) provide insight into molecular recognition while serving as leads for designing future new drugs. This annual review describes the most likely process-scale synthetic approaches to 29 new chemical entities (NCEs) that were approved for the first time in 2015.


Journal of Medicinal Chemistry | 2017

Design of Potent mRNA Decapping Scavenger Enzyme (DcpS) Inhibitors with Improved Physicochemical Properties To Investigate the Mechanism of Therapeutic Benefit in Spinal Muscular Atrophy (SMA)

Ariamala Gopalsamy; Arjun Narayanan; Shenping Liu; Mihir D. Parikh; Robert E. Kyne; Olugbeminiyi O. Fadeyi; Michael A. Tones; Jonathan J. Cherry; Joseph F. Nabhan; Gregory J. LaRosa; Donna N. Petersen; Carol A. Menard; Timothy L. Foley; Stephen Noell; Yong Ren; Paula M. Loria; Jodi Maglich-Goodwin; Haojing Rong; Lyn H. Jones

The C-5 substituted 2,4-diaminoquinazoline RG3039 (compound 1), a member of a chemical series that was identified and optimized using an SMN2 promoter screen, prolongs survival and improves motor function in a mouse model of spinal muscular atrophy (SMA). It is a potent inhibitor of the mRNA decapping scavenger enzyme (DcpS), but the mechanism whereby DcpS inhibition leads to therapeutic benefit is unclear. Compound 1 is a dibasic lipophilic molecule that is predicted to accumulate in lysosomes. To understand if the in vivo efficacy is due to DcpS inhibition or other effects resulting from the physicochemical properties of the chemotype, we undertook structure based molecular design to identify DcpS inhibitors with improved physicochemical properties. Herein we describe the design, synthesis, and in vitro pharmacological characterization of these DcpS inhibitors along with the in vivo mouse CNS PK profile of PF-DcpSi (compound 24), one of the analogs found to be efficacious in SMA mouse model.


ChemBioChem | 2016

Chemoselective Preparation of Clickable Aryl Sulfonyl Fluoride Monomers: A Toolbox of Highly Functionalized Intermediates for Chemical Biology Probe Synthesis.

Olugbeminiyi O. Fadeyi; Mihir D. Parikh; Ming Z. Chen; Robert E. Kyne; Alexandria P. Taylor; Inish O'Doherty; Stephen E. Kaiser; Sabrina Barbas; Sherry Niessen; Manli Shi; Scott Weinrich; John Charles Kath; Lyn H. Jones; Ralph P. Robinson

Sulfonyl fluoride (SF)‐based activity probes have become important tools in chemical biology. Herein, exploiting the relative chemical stability of SF to carry out a number of unprecedented SF‐sparing functional group manipulations, we report the chemoselective synthesis of a toolbox of highly functionalized aryl SF monomers that we used to quickly prepare SF chemical biology probes. In addition to SF, the monomers bear an embedded click handle (a terminal alkyne that can perform copper(I)‐mediated azide–alkyne cycloaddition). The monomers can be used either as fragments to prepare clickable SF analogues of drugs (biologically active compounds) bearing an aryl ring or, alternatively, attached to drugs as minimalist clickable aryl SF substituents.


ACS Chemical Biology | 2017

Covalent Enzyme Inhibition through Fluorosulfate Modification of a Noncatalytic Serine Residue

Olugbeminiyi O. Fadeyi; Lise R. Hoth; Chulho Choi; Xidong Feng; Ariamala Gopalsamy; Erik C. Hett; Robert E. Kyne; Ralph P. Robinson; Lyn H. Jones


Organic and Biomolecular Chemistry | 2016

Cellular thermal shift and clickable chemical probe assays for the determination of drug-target engagement in live cells

Hua Xu; Ariamala Gopalsamy; Erik C. Hett; Shores Salter; Ann Aulabaugh; Robert E. Kyne; Betsy S. Pierce; Lyn H. Jones


Molecular BioSystems | 2015

A library approach to rapidly discover photoaffinity probes of the mRNA decapping scavenger enzyme DcpS

Hua Xu; Erik C. Hett; Ariamala Gopalsamy; Mihir D. Parikh; Kieran F. Geoghegan; Robert E. Kyne; Carol A. Menard; Arjun Narayanan; Ralph P. Robinson; Douglas S. Johnson; Michael A. Tones; Lyn H. Jones


ACS Combinatorial Science | 2016

Selectivity Determination of a Small Molecule Chemical Probe Using Protein Microarray and Affinity Capture Techniques

Erik C. Hett; Robert E. Kyne; Ariamala Gopalsamy; Michael A. Tones; Hua Xu; Guene L. Thio; Edward Nolan; Lyn H. Jones


Journal of Medicinal Chemistry | 2018

Discovery of 3-Cyano-N-(3-(1-isobutyrylpiperidin-4-yl)-1-methyl-4-(trifluoromethyl)-1H-pyrrolo[2,3-b]pyridin-5-yl)benzamide. A Potent, Selective, and Orally Bioavailable Retinoic Acid Receptor-Related Orphan Receptor C2 (RORC2) Inverse Agonist.

Mark E. Schnute; Mattias Wennerstål; Jennifer Alley; Martin Bengtsson; James Robert Blinn; Charles W. Bolten; Timothy Braden; Tomas Bonn; Bo Carlsson; Nicole Caspers; Ming Z. Chen; Chulho Choi; Leon P. Collis; Kimberly Crouse; Mathias Färnegårdh; Kimberly F. Fennell; Susan Fish; Andrew C. Flick; Annika Goos-Nilsson; Hjalmar Gullberg; Peter K. Harris; Steven E. Heasley; Martin Hegen; Alexander E. Hromockyj; Xiao Hu; Bolette Husman; Tomasz Janosik; Peter G. Jones; Neelu Kaila; Elisabet Kallin

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