Title of article
Juxtaposition of Chemical and Mutation-Induced Developmental Defects in Zebrafish Reveal a Copper-Chelating Activity for Kalihinol F Original Research Article
Author/Authors
Imelda T. Sandoval، نويسنده , , Elizabeth J. Manos، نويسنده , , Ryan M. Van Wagoner and Jon Clardy، نويسنده , , Richard Glenn C. Delacruz، نويسنده , , Kornelia Edes، نويسنده , , Dennis R. Winge، نويسنده , , Chris M. Ireland، نويسنده , , David A. Jones، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2013
Pages
11
From page
753
To page
763
Abstract
A major hurdle in using complex systems for drug screening is the difficulty of defining the mechanistic targets of small molecules. The zebrafish provides an excellent model system for juxtaposing developmental phenotypes with mechanism discovery using organism genetics. We carried out a phenotype-based screen of uncharacterized small molecules in zebrafish that produced a variety of chemically induced phenotypes with potential genetic parallels. Specifically, kalihinol F caused an undulated notochord, defects in pigment formation, hematopoiesis, and neural development. These phenotypes were strikingly similar to the zebrafish mutant, calamity, an established model of copper deficiency. Further studies into the mechanism of action of kalihinol F revealed a copper-chelating activity. Our data support this mechanism of action for kalihinol F and the utility of zebrafish as an effective system for identifying therapeutic and target pathways.
Journal title
Chemistry and Biology
Serial Year
2013
Journal title
Chemistry and Biology
Record number
1160454
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