BCAS2 regulates delta-notch signaling activity through Delta Pre-mRNA splicing in Drosophila wing development

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Abstract

Previously, we showed that BCAS2 is essential for Drosophila viability and functions in premRNA splicing. In this study, we provide strong evidence that BCAS2 regulates the activity of Delta-Notch signaling via Delta pre-mRNA splicing. Depletion of dBCAS2 reduces Delta mRNA expression and leads to accumulation of Delta pre-mRNA, resulting in diminished transcriptions of Delta-Notch signaling target genes, such as cut and E(spl)m8. Furthermore, ectopic expression of human BCAS2 (hBCAS2) and Drosophila BCAS2 (dBCAS2) in a dBCAS2-deprived fly can rescue dBCAS2 depletion-induced wing damage to the normal phenotypes. These rescued phenotypes are correlated with the restoration of Delta premRNA splicing, which affects Delta-Notch signaling activity. Additionally, overexpression of Delta can rescue the wing deformation by deprivation of dBCAS2; and the depletion of dBCAS2 can restore the aberrant eye associated with Delta-overexpressing retinas; providing supporting evidence for the regulation of Delta-Notch signaling by dBCAS2. Taken together, dBCAS2 participates in Delta pre-mRNA splicing that affects the regulation of Delta-Notch signaling in Drosophila wing development. Copyright:

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Chou, M. H., Hsieh, Y. C., Huang, C. W., Chen, P. H., Chan, S. P., Tsao, Y. P., … Chen, S. L. (2015). BCAS2 regulates delta-notch signaling activity through Delta Pre-mRNA splicing in Drosophila wing development. PLoS ONE, 10(6). https://doi.org/10.1371/journal.pone.0130706

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