scholarly journals Chicken ovalbumin upstream promoter-transcription factor II protects against cisplatin-induced acute kidney injury

2020 ◽  
Vol 67 (3) ◽  
pp. 283-293 ◽  
Author(s):  
Sumiyasu Ishii ◽  
Masanobu Yamada ◽  
Noriyuki Koibuchi
2020 ◽  
Vol 48 (4) ◽  
pp. 030006052091923
Author(s):  
Seong-Hoon Yun ◽  
Joo-In Park

Chicken ovalbumin upstream promoter-transcription factor II (COUP-TFII) is an orphan receptor that regulates the expression of genes involved in development and homeostasis. COUP-TFII is also dysregulated in cancer, where it plays important roles in oncogenesis and malignant progression. Recent studies have also investigated altered microRNA-mediated regulation of COUP-TFII in cancer. Although many investigators have studied the expression and clinical significance of COUP-TFII in several cancer types, there remain many controversies regarding its role in these diseases. In this review, we will describe the functions and underlying molecular mechanisms of COUP-TFII in several cancers, especially colorectal, gastric, breast, and prostate cancer; additionally, we will briefly summarize what is known about microRNA-mediated regulation of COUP-TFII.


2006 ◽  
Vol 66 (20) ◽  
pp. 10188-10198 ◽  
Author(s):  
Krista A. Riggs ◽  
Nalinie S. Wickramasinghe ◽  
Renate K. Cochrum ◽  
Mary Beth Watts ◽  
Carolyn M. Klinge

2011 ◽  
Vol 43 (4) ◽  
pp. 213-227 ◽  
Author(s):  
Lisa M. Crowther ◽  
Shu-Ching Mary Wang ◽  
Natalie A. Eriksson ◽  
Stephen A. Myers ◽  
Lauren A. Murray ◽  
...  

We demonstrate that chicken ovalbumin upstream promoter-transcription factor II (COUP-TFII) mRNA is more abundantly expressed (than COUP-TFI mRNA) in skeletal muscle C2C12 cells and in (type I and II) skeletal muscle tissue from C57BL/10 mice. Consequently, we have utilized the ABI TaqMan Low Density Array (TLDA) platform to analyze gene expression changes specifically attributable to ectopic COUP-TFII (relative to vector only) expression in muscle cells. Utilizing a TLDA-based platform and 5 internal controls, we analyze the entire NR superfamily, 96 critical metabolic genes, and 48 important myogenic regulatory genes on the TLDA platform utilizing 5 internal controls. The low density arrays were analyzed by rigorous statistical analysis (with Genorm normalization, Bioconductor R, and the Empirical Bayes statistic) using the (integromics) statminer software. In addition, we validated the differentially expressed patho-physiologically relevant gene (identified on the TLDA platform) glucose transporter type 4 (Glut4). We demonstrated that COUP-TFII expression increased the steady state levels of Glut4 mRNA and protein, while ectopic expression of truncated COUP-TFII lacking helix 12 (COUP-TFΔH12) reduced Glut4 mRNA expression in C2C12 cells. Moreover, COUP-TFII expression trans-activated the Glut4 promoter (−997/+3), and ChIP analysis identified selective recruitment of COUP-TFII to a region encompassing a highly conserved SP1 binding site (in mouse, rat, and human) at nt positions −131/−118. Mutation of the SpI site ablated COUP-TFII mediated trans-activation of the Glut4 promoter. In conclusion, this study demonstrates that in skeletal muscle cells, COUP-TFII regulates several nuclear hormone receptors, and critical metabolic and muscle specific genes.


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