4-(4-(4-fluorophenyl)-5-(pyridin-4-yl)-2H-imidazol-2-yl)phenol

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CAS: 152121-30-7
MF: C20H14N3OF
MW: 331.34306
Synonyms: 4-(4-(4-fluorophenyl)-5-(pyridin-4-yl)-2H-imidazol-2-yl)phenol

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Kevan M. Shokat

University of California
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Annaliese K. Franz

University of California
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Shahriar Mobashery

University of Notre Dame
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Indraneel Ghosh

University of Arizona
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Lyle Isaacs

University of Maryland
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Joshua LaBaer

Arizona State University
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Co-reporter: Wenbin Liang, Shaopeng Wang, Fernanda Festa, Peter Wiktor, Wei Wang, Mitchell Magee, Joshua LaBaer, and Nongjian Tao
pp: 9860
Publication Date(Web):August 25, 2014
DOI: 10.1021/ac5024556
We report on a quantitative study of small molecule binding kinetics on protein microarrays with plasmonic-based electrochemical impedance microscopy (P-EIM). P-EIM measures electrical impedance optically with high spatial resolution by converting a surface charge change to a surface plasmon resonance (SPR) image intensity change, and the signal is not scaled to the mass of the analyte. Using P-EIM, we measured binding kinetics and affinity between small molecule drugs (imatinib and SB202190) and their target proteins (kinases Abl1 and p38-α). The measured affinity values are consistent with reported values measured by an indirect competitive binding assay. We also found that SB202190 has weak bindings to ABL1 with KD > 10 μM, which is not reported in the literature. Furthermore, we found that P-EIM is less prone to nonspecific binding, a long-standing issue in SPR. Our results show that P-EIM is a novel method for high-throughput measurement of small molecule binding kinetics and affinity, which is critical to the understanding of small molecules in biological systems and discovery of small molecule drugs.

Andreas Bender

University of Cambridge
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Robert C. Glen

Unilever Centre for Molecular Science Informatics
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Tao Xie

Zhejiang University
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Yang Li

Tianjin University
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