Discovery Biology Research, Pfizer Global Research and Development Nagoya Laboratories, Pfizer Japan Inc., Aichi, Japan.
Liver Int. 2010 Jan;30(1):42-54. doi: 10.1111/j.1478-3231.2009.02120.x. Epub 2009 Sep 28.
Myofibroblast-like cells derived from transdifferentiated hepatic stellate cells (HSC) play a central role in scar formation that leads to liver fibrosis. The molecular mechanisms underlying this process are not fully understood.
Our aim was to identify genes that are differentially regulated by HSC activation and to explore their function.
Using oligonucleotide microarrays, we performed transcriptional analysis of the human HSC cell line, LI90, cultured on Matrigel. Microarray data were validated by quantitative real-time polymerase chain reaction and Western blotting. The function of myocardin was assessed by myocardin RNAi and overexpression.
Examination of Matrigel-induced deactivation of LI90 cells revealed marked downregulation of myocardin, an important transcriptional regulator in smooth and cardiac muscle development. Small interfering RNA-mediated suppression of myocardin expression in both activated LI90 and rat activated HSC resulted in loss of the phenotypic characteristics of myofibroblasts and significantly impaired the production of activated HSC markers, such as alpha-smooth muscle actin and extracellular matrix proteins like type I collagen. Overexpression of myocardin led to the upregulation of these marker genes. Myocardin was upregulated in rat primary HSC during in vitro activation and in the fibrotic liver of a dimethylnitrosamine-induced fibrosis rat model.
This study demonstrates that myocardin is involved in the activation of HSC; myocardin may serve as a novel therapeutic target in the treatment of liver fibrosis.
源自转分化的肝星状细胞 (HSC) 的成肌纤维细胞样细胞在导致肝纤维化的瘢痕形成中起核心作用。这一过程的分子机制尚不完全清楚。
我们的目的是鉴定受 HSC 激活差异调控的基因,并探索其功能。
我们使用寡核苷酸微阵列对在 Matrigel 上培养的人 HSC 细胞系 LI90 进行转录分析。通过实时定量聚合酶链反应和 Western blot 验证微阵列数据。通过心肌营养素 RNAi 和过表达来评估心肌营养素的功能。
检查 LI90 细胞在 Matrigel 诱导下的去激活,发现重要的转录调节剂心肌营养素明显下调,在激活的 LI90 和大鼠激活的 HSC 中,小干扰 RNA 介导的心肌营养素表达抑制导致成肌纤维细胞的表型特征丧失,并显著损害激活的 HSC 标志物的产生,如α-平滑肌肌动蛋白和细胞外基质蛋白如 I 型胶原。心肌营养素的过表达导致这些标记基因的上调。在体外激活的大鼠原代 HSC 中和二甲基亚硝胺诱导的纤维化大鼠模型的纤维化肝脏中,心肌营养素上调。
本研究表明,心肌营养素参与 HSC 的激活;心肌营养素可能成为治疗肝纤维化的新的治疗靶点。