BRITER: A BMP Responsive Osteoblast Reporter Cell Line
Author(s) -
Prem Swaroop Yadav,
Paritosh Prashar,
Amitabha Bandyopadhyay
Publication year - 2012
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0037134
Subject(s) - bone morphogenetic protein 2 , bone morphogenetic protein , microbiology and biotechnology , osteoblast , signal transduction , cell culture , biology , bmpr2 , cell signaling , endogeny , genetics , biochemistry , in vitro , gene
Background BMP signaling pathway is critical for vertebrate development and tissue homeostasis. High-throughput molecular genetic screening may reveal novel players regulating BMP signaling response while chemical genetic screening of BMP signaling modifiers may have clinical significance. It is therefore important to generate a cell-based tool to execute such screens. Methodology/Principal Findings We have established a BMP responsive reporter cell line by stably integrating a BMP responsive dual luciferase reporter construct in the immortalized calvarial osteoblast cells isolated from tamoxifen inducible Bmp2 ; Bmp4 double conditional knockout mouse strain. This cell line, named BRITER ( B MP R esponsive I mmortalized Repor ter cell line), responds robustly, promptly and specifically to exogenously added BMP2 protein. The sensitivity to added BMP may be further increased by depleting the endogenous BMP2 and BMP4 proteins. Conclusion As the dynamic range of the assay (for BMP responsiveness) is very high for BRITER and as it responds specifically and promptly to exogenously added BMP2 protein, BRITER may be used effectively for chemical or molecular genetic screening for BMP signaling modifiers. Identification of novel molecular players capable of influencing BMP signaling pathway may have clinical significance.
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