3.9 Article

A High-Throughput Cell-Based Gaussia Luciferase Reporter Assay for Identifying Modulators of Fibulin-3 Secretion

期刊

JOURNAL OF BIOMOLECULAR SCREENING
卷 18, 期 6, 页码 647-658

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/1087057112469405

关键词

fibulin-3; Gaussia luciferase; Malattia Leventinese; high-throughput chemical screening; LOPAC; fibulin-3-dependent gliomas

资金

  1. Lita Annenberg Hazen Foundation
  2. Skaggs Institute for Chemical Biology
  3. Scripps Translational Science Institute [UL1 RR025774]
  4. National Institutes of Health [AG018917, U54 MH0845121]

向作者/读者索取更多资源

An R345W mutation in fibulin-3 causes its inefficient secretion, increased intracellular steady-state levels, and the macular dystrophy, Malattia Leventinese (ML), a disease similar to age-related macular degeneration. It is unknown whether R345W causes ML through increased intracellular levels, by the secretion of a potentially aggregation-prone protein, or both. To identify small molecules that alter the secretion of fibulin-3, we developed ARPE19 retinal cell lines that inducibly express wild-type (WT) or R345W fibulin-3 fused to an enhanced Gaussia luciferase (eGLuc2). Screening of the Library of Pharmacologically Active Compounds demonstrated that these cell lines and the GLuc assay are suitable for high-throughput chemical screening. Two estrogen-related compounds enhanced fibulin-3 secretion, whereas a diverse series of small molecules reduced fibulin-3 secretion. A counterscreen identified compounds that did not substantially alter the secretion of unfused eGLuc2, demonstrating at least partial selectivity for fibulin-3. A secondary assay using untagged fibulin-3 confirmed that the top three inhibitory compounds reduced R345W fibulin-3 secretion. Interestingly, in untagged fibulin-3 studies, one compound, phorbol 12-myristate 13-acetate, reduced R345W fibulin-3 secretion while minimally enhancing WT fibulin-3 secretion, the desired activity and selectivity we sought for ML. The identified compounds could serve as tools for probing the etiology of fibulin-3-related diseases.

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