Hypoxia induced HIF-1/HIF-2 activity alters trophoblast transcriptional regulation and promotes invasion
EUROPEAN JOURNAL OF CELL BIOLOGY
Authors: Highet, Amanda R.; Khoda, Sultana M.; Buckberry, Sam; Leemaqz, Shalem; Bianco-Miotto, Tina; Harrington, Elaine; Ricciardelli, Carmela; Roberts, Claire T.
Abstract
Reduced or absent cytotrophoblast invasion of the maternal uterine spiral arterioles is a common clinical finding in studies of pregnancies complicated by preeclampsia, suggesting that the mechanisms mediating invasion of these cells is perturbed. The placenta initially develops in a low oxygen environment of 1-2% oxygen until after the 10th week of pregnancy. During this time oxygen concentration exerts a major influence over trophoblast activity and, hypoxia inducible factors are proposed to be one of many key regulators of first trimester trophoblast behaviour. We used a global gene expression microarray approach to identify signalling pathways and hypoxia-responsive genes of interest involved in invasion of the first trimester trophoblast cell line HTR8/SVneo under hypoxic conditions where HIF-1 was active. Additionally, first trimester placental samples from different gestational age groups were labelled with anti HIF-1 alpha and HIF-2 alpha to evaluate whether HIFs are differentially expressed and localised across two periods of placental development: (1) early first trimester characterised by hypoxia (6-8 weeks) and (2) late first trimester after initiation of maternal blood flow into the placenta (10-12 weeks). Invasion of HTR8/SVneo was assessed in real-time and was significantly increased in 1% compared with 5% and 21% oxygen and did not differ between 5% and 21% oxygen treatments. Eighty-eight genes were differentially expressed between cells cultured in 1% oxygen (where HIF-1 alpha protein was localised to the nucleus) and 5% oxygen (where HIP-1 alpha was mainly cytoplasmic). 65% of the genes were predicted to contain HIF-1 alpha:HIF-1 beta transcription factor binding sites. While HIF-2 alpha staining intensity in trophoblasts of late first trimester placenta was higher than early first trimester (+57%) the percentage of positively stained trophoblast nuclei did not differ between the two time points. There was no difference in the expression level of any of the hypoxia responsive genes of interest, IGEBP3, P4HA1, P4HA2, ANGPTL4 and MMP1 between early and late first trimester placenta. While HIF-1 alpha and its downstream targets are clearly induced in HTR8/SVneo during in vitro hypoxic conditions, it appears that hypoxia inducible factors and genes are not altered throughout the first 7-12 weeks of placental development, during which the onset of maternal blood flow to the intervillous space takes place. (C) 2015 Elsevier GmbH. All rights reserved.
Inositol-Requiring Enzyme 1 Alpha Endoribonuclease Specific Inhibitor STF-083010 Alleviates Carbon Tetrachloride Induced Liver Injury and Liver Fibrosis in Mice
FRONTIERS IN PHARMACOLOGY
Authors: Chen, Qian-Qian; Zhang, Cheng; Qin, Ming-Qiang; Li, Jian; Wang, Hua; Xu, De-Xiang; Wang, Jian-Qing
Abstract
Accumulating data demonstrated that hepatic endoplasmic reticulum (ER) stress was involved in the pathogenesis of liver fibrosis. Long-term chronic hepatocyte death contributed to liver fibrosis initiation and progression. Previous researches reported that ER stress sensor inositol-requiring enzyme 1 alpha (IRE1 alpha) was first activated in the process of liver fibrosis. STF-083010 was an IRE1 alpha RNase specific inhibitor. This study aimed to explore the effects of STF-083010 on carbon tetrachloride (CCl4)-induced liver injury and subsequent liver fibrosis. Mice were intraperitoneally (i.p.) injected with CCl4 (0.15 ml/kg) for 8 weeks. In STF-083010+CCl4 group, mice were injected with STF083010 (30 mg/kg, i.p.), twice a week, beginning from the 6th week after CCl4 injection. CCl4 treatment markedly enhanced the levels of serum ALT, TBIL, DBIL and TBA, and STF-083010 had obviously extenuated CCl4-induced exaltation of ALT, DBIL, and TBA levels. CCl4-induced hepatic hydroxyproline and collagen I, major indicators of liver fibrosis, were alleviated by STF-083010. Additionally, CCl4-induced alpha-smooth muscle actin, a marker for hepatic stellate cells activation, was obviously attenuated in STF-083010-treated mice. Moreover, CCl4-induced upregulation of inflammatory cytokines was suppressed by STF-083010. Mechanistic exploration found that hepatic miR-122 was downregulated in CCl4-treated mice. Hepatic MCP1, CTGF, P4HA1, Col1 alpha 1, and Mmp9, target genes of miR-122, were upregulated in CCl4-treated mice. Interestingly, STF-083010 reversed CCl4-induced hepatic miR-122 downregulation. Correspondingly, STF-083010 inhibited CCl4-induced upregulation of miR-122 target genes. This study provides partial evidence that STF-083010 alleviated CCl4-induced liver injury and thus protected against liver fibrosis associated with hepatic miR-122.