胆汁酸对原代大鼠肝细胞中细胞周期蛋白D1和细胞死亡的差异调节
Differential regulation of cyclin D1 and cell death by bile acids in primary rat hepatocytes.
作者信息
Castro Rui E, Amaral Joana D, Solá Susana, Kren Betsy T, Steer Clifford J, Rodrigues Cecília M P
机构信息
Centro de Patogénese Molecular, Faculty of Pharmacy, University of Lisbon, Av. das Forças Armadas, 1600-083 Lisbon, Portugal.
出版信息
Am J Physiol Gastrointest Liver Physiol. 2007 Jul;293(1):G327-34. doi: 10.1152/ajpgi.00093.2007. Epub 2007 Apr 12.
Ursodeoxycholic (UDCA) and tauroursodeoxycholic (TUDCA) acids modulate apoptosis and regulate cell-cycle effectors, including cyclin D1. In contrast, deoxycholic acid (DCA) induces cell death and cyclin D1. In this study, we explored the role of cyclin D1 in DCA-induced toxicity and further elucidated the antiapoptotic function of UDCA and TUDCA in primary rat hepatocytes. Cells were incubated with DCA and with or without UDCA or TUDCA for 8-30 h. In addition, hepatocytes were transfected with either an adenovirus expressing cyclin D1 or with a cyclin D1 reporter plasmid with or without bile acids. Finally, cells were cotransfected with short interfering RNA targeting p53. Unlike DCA, both UDCA and TUDCA reduced cyclin D1 expression and transcriptional activation, confirming our previous DNA microarray data. Furthermore, UDCA and TUDCA prevented DCA-induced cyclin D1 and cell death. Cyclin D1 overexpression increased DCA-induced Bax translocation, cytochrome c release, and apoptosis. However, UDCA and TUDCA were less efficient at decreasing cyclin D1 levels as well as DCA-induced changes with overexpression. Finally, after p53 silencing, the effects of cyclin D1 overexpression were almost completely abrogated, whereas UDCA and TUDCA cytoprotective potential was reestablished. In conclusion, cyclin D1 is a relevant player in modulating apoptosis by bile acids, in part through a p53-dependent mechanism.
熊去氧胆酸(UDCA)和牛磺熊去氧胆酸(TUDCA)可调节细胞凋亡并调控细胞周期效应因子,包括细胞周期蛋白D1。相比之下,脱氧胆酸(DCA)可诱导细胞死亡并增加细胞周期蛋白D1的表达。在本研究中,我们探讨了细胞周期蛋白D1在DCA诱导的毒性中的作用,并进一步阐明了UDCA和TUDCA在原代大鼠肝细胞中的抗凋亡功能。将细胞与DCA一起孵育,并添加或不添加UDCA或TUDCA,持续8 - 30小时。此外,用表达细胞周期蛋白D1的腺病毒或细胞周期蛋白D1报告质粒转染肝细胞,同时添加或不添加胆汁酸。最后,将细胞与靶向p53的小干扰RNA共转染。与DCA不同,UDCA和TUDCA均降低了细胞周期蛋白D1的表达和转录激活,这证实了我们之前的DNA微阵列数据。此外,UDCA和TUDCA可预防DCA诱导的细胞周期蛋白D1表达增加和细胞死亡。细胞周期蛋白D1的过表达增加了DCA诱导的Bax易位、细胞色素c释放和细胞凋亡。然而,UDCA和TUDCA在降低细胞周期蛋白D1水平以及DCA诱导的过表达变化方面效果较差。最后,在p53沉默后,细胞周期蛋白D1过表达的影响几乎完全消除,而UDCA和TUDCA的细胞保护潜能得以恢复。总之,细胞周期蛋白D1是胆汁酸调节细胞凋亡的相关因子,部分通过p53依赖机制发挥作用。