A novel small molecule target in human airway smooth muscle for potential treatment of obstructive lung diseases: a staged high-throughput biophysical screening

被引:23
作者
An, Steven S. [1 ]
Askovich, Peter S. [2 ]
Zarembinski, Thomas I. [2 ]
Ahn, Kwangmi [3 ]
Peltier, John M. [2 ]
von Rechenberg, Moritz [2 ]
Sahasrabudhe, Sudhir [2 ]
Fredberg, Jeffrey J. [4 ]
机构
[1] Johns Hopkins Bloomberg Sch Publ Hlth, Div Physiol, Dept Environm Hlth Sci, Baltimore, MD 21205 USA
[2] Prolexys Pharmaceut Inc, Salt Lake City, UT 84116 USA
[3] Penn State Coll Med, Div Biostat, Dept Publ Hlth Sci, Hershey, PA 17033 USA
[4] Harvard Univ, Program Mol & Integrat Physiol Sci, Sch Publ Hlth, Boston, MA 02115 USA
关键词
SHOCK-RELATED PROTEIN; NUCLEOTIDE-DEPENDENT RELAXATION; INHALED BETA-AGONIST; LIVING CELL; HSP20; ASTHMA; PHOSPHORYLATION; TRANSDUCTION; STIFFNESS; DYNAMICS;
D O I
10.1186/1465-9921-12-8
中图分类号
R56 [呼吸系及胸部疾病];
学科分类号
摘要
Background: A newly identified mechanism of smooth muscle relaxation is the interaction between the small heat shock protein 20 (HSP20) and 14-3-3 proteins. Focusing upon this class of interactions, we describe here a novel drug target screening approach for treating airflow obstruction in asthma. Methods: Using a high-throughput fluorescence polarization (FP) assay, we screened a library of compounds that could act as small molecule modulators of HSP20 signals. We then applied two quantitative, cell-based biophysical methods to assess the functional efficacy of these molecules and rank-ordered their abilities to relax isolated human airway smooth muscle (ASM). Scaling up to the level of an intact tissue, we confirmed in a concentration-responsive manner the potency of the cell-based hit compounds. Results: Among 58,019 compound tested, 268 compounds caused 20% or more reduction of the polarized emission in the FP assay. A small subset of these primary screen hits, belonging to two scaffolds, caused relaxation of isolated ASM cell in vitro and attenuated active force development of intact tissue ex vivo. Conclusions: This staged biophysical screening paradigm provides proof-of-principle for high-throughput and cost-effective discovery of new small molecule therapeutic agents for obstructive lung diseases.
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页数:9
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