Kommagani Ramakrishna, Leonard Mary K, Lewis Stefanie, Romano Rose-Anne, Sinha Satrajit, Kadakia Madhavi P
Department of Biochemistry and Molecular Biology, Boonshoft School of Medicine, Wright State University, Dayton, OH, USA.
J Cell Sci. 2009 Aug 15;122(Pt 16):2828-35. doi: 10.1242/jcs.049619. Epub 2009 Jul 21.
The p63 transcription factor has a pivotal role in epithelial morphogenesis. Multiple transcripts of the TP63 gene are generated because of alternative promoter usage and splicing. DeltaNp63alpha is the predominant isoform of p63 observed during epithelial morphogenesis and in human cancers. Loss of DeltaNp63alpha expression has been shown to promote invasiveness in a subset of human cancer cell lines. Here, we studied whether the regulation of VDR by DeltaNp63alpha controls the invasiveness of an epidermoid cancer cell line. We demonstrate that VDR expression is induced by all p63 isoforms, including DeltaNp63alpha. Endogenous DeltaNp63alpha protein was observed to bind to the VDR promoter, and silencing of endogenous DeltaNp63alpha resulted in diminished VDR expression. Although silencing of p63 inhibits VDR expression leading to an increase in cell migration, overexpression of p63 or VDR results in reduced cell migration as a result of increased VDR expression. Therefore, it is conceivable that p63 inhibits cell invasion by regulating VDR expression. Finally, we observed that expression of p63 and VDR overlaps in the wild-type mouse skin, but a reduced or complete absence of VDR expression was observed in skin from p63-null mice and in p63-null mouse embryonic fibroblasts. In conclusion, we demonstrate a direct transcriptional regulation of VDR by DeltaNp63alpha. Our results highlight a crucial role for VDR in p63-mediated biological functions.
p63转录因子在上皮细胞形态发生中起关键作用。由于启动子使用和剪接方式的不同,TP63基因产生多种转录本。DeltaNp63alpha是上皮细胞形态发生过程以及人类癌症中观察到的p63的主要异构体。已表明DeltaNp63alpha表达缺失会促进一部分人类癌细胞系的侵袭性。在此,我们研究了DeltaNp63alpha对维生素D受体(VDR)的调控是否控制表皮癌细胞系的侵袭性。我们证明所有p63异构体,包括DeltaNp63alpha,均可诱导VDR表达。观察到内源性DeltaNp63alpha蛋白与VDR启动子结合,内源性DeltaNp63alpha沉默导致VDR表达减少。虽然p63沉默会抑制VDR表达,导致细胞迁移增加,但p63或VDR过表达会因VDR表达增加而导致细胞迁移减少。因此,可以推测p63通过调节VDR表达来抑制细胞侵袭。最后,我们观察到p63和VDR在野生型小鼠皮肤中的表达有重叠,但在p63基因敲除小鼠的皮肤以及p63基因敲除的小鼠胚胎成纤维细胞中观察到VDR表达减少或完全缺失。总之,我们证明了DeltaNp63alpha对VDR的直接转录调控。我们的结果突出了VDR在p63介导的生物学功能中的关键作用。