## Abstract The neurotrophin (NTR) receptor (p75^NTR^) is a cell‐surface glycoprotein that binds to the neurotrophin family of growth factors, of which the prototypic member is nerve growth factor (NGF). This receptor was previously shown to retard cell‐cycle progression by inducing accumulation of
Inactivation of the p19ARF tumor suppressor affects intestinal epithelial cell proliferation and integrity
✍ Scribed by Tiffany E. Farmer; Christopher S. Williams; M. Kay Washington; Scott W. Hiebert
- Book ID
- 102875984
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 986 KB
- Volume
- 104
- Category
- Article
- ISSN
- 0730-2312
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
p19^ARF^ is a tumor suppressor that is frequently deleted in human cancer. It lies at chromosome 9p21 and shares exons 2 and 3 with p16^ink4a^, which is also inactivated by these cancer‐associated deletions. The “canonical pathway” by which p19^ARF^ is thought to suppress tumorigenesis through activation of the p53 tumor suppressor. In response to hyperproliferative signals, such as expression of oncogenes, p19^ARF^ is induced and binds to the MDM2 ubiquitin ligase, sequestering it in the nucleolus to allow the accumulation of p53. However, p19^ARF^ also has MDM2 and p53 independent functions. In human colon cancer, p19^ARF^ is only rarely deleted, but it is more frequently silenced by DNA promoter methylation. Here we show that inactivation of p19^ARF^ in mice increases the number of cycling cells in the crypts of the colonic epithelium. Moreover, inactivation of p19^ARF^ exacerbated the ulceration of the colonic epithelium caused by dextran sodium sulfate (DSS). These effects were similar to those observed in mice lacking myeloid translocation gene‐related‐1 (Mtgr1), and mice lacking both of these genes showed an even greater sensitivity to DSS. Surprisingly, inactivation of p19^ARF^ restored the loss of the secretory lineage in mice deficient in Mtgr1, suggesting an additional role for p19^ARF^ in the small intestinal epithelium. J. Cell. Biochem. 104: 2228–2240, 2008. © 2008 Wiley‐Liss, Inc.
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