| Literature DB >> 19706364 |
Robert M Lavker1, David G Ryan.
Abstract
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Year: 2009 PMID: 19706364 PMCID: PMC3525195 DOI: 10.1186/1479-7364-3-4-332
Source DB: PubMed Journal: Hum Genomics ISSN: 1473-9542 Impact factor: 4.639
Figure 1Paraffin sections of the eyes of Le-Cre, Dic. Areas within solid boxes in (A) and (B) are shown in higher magnification in (C) and (D), respectively. The epithelium in (C) resembles the conjunctiva (conj), as evidenced by prominent goblet cells (arrows), and the stroma is vascularised (arrowheads); whereas the same region in the wild-type (D) clearly consists of a corneal epithelium (Co) and a stroma devoid of vessels and filled with keratocytes (arrows). Note the prominent lens (le) in the wild-type (B, D) that is conspicuously missing in the Le-Cre, Dicflox/flox animals (A, C). Areas within the small-dashed rectangles in (A) and (B) are shown in higher magnification in (E) and (F), respectively. Epithelium in (E) and (F) is conjunctival, as evidence by the presence of goblet cells (arrows). Areas within the lagged-dashed squares in (A) and (B) are shown in higher magnification in (G) and (H), respectively. The mucocutaneous junctional epithelium of the eye lid (mcj) appears similar in the Le-Cre, Dicflox/flox (G) and wild-type (H), except that the wild-type appears more heavily melanised. Portions of the meibomian gland (mg) and hair follicles (hf) are noted in this region from both mice.
Figure 2Proposed regulatory effects of miR-205 and miR-184 on SHIP2 levels in various epithelial contexts. (a) Epidermal keratinocytes. Decreasing miR-205 via antagomir-205 increases SHIP2 levels, resulting in the dampening of Akt signalling and an increase in apoptosis and cell death. (b) Corneal keratinocytes. Decreasing miR-184 via antagomir-184 'releases' miR-205 to reduce SHIP2 levels, augmenting the Akt pathway, with increased cell survival and angiogenesis as possible outcomes. Since miR-184 does not inhibit SHIP2, decreasing miR-205 via antagomir-205 disturbs the normal balance between SHIP2 and miR-184/205. (c) Squamous cell carcinoma (SCC). Ectopic expression of miR-184 or treatment with an antagomir to miR-205 represents potential therapeutic modalities for the treatment of SCCs by increasing SHIP2 levels, which might act as a tumour suppressor in these neoplasias. Reprinted from Yu et al. [110]