Literature DB >> 8221692

Increased expression of high mobility group protein I(Y) in high grade prostatic cancer determined by in situ hybridization.

Y Tamimi1, H G van der Poel, M M Denyn, R Umbas, H F Karthaus, F M Debruyne, J A Schalken.   

Abstract

In a previous study using the Dunning rat prostate cancer model, we found high mobility group protein I-(Y) [HMG-I(Y)] to be overexpressed in metastatic tumor lines when compared to nonmetastatic lines. Hence, overexpression of this 12-kDa non-histone chromosomal protein may be associated with tumor progression. Firstly, by Northern analysis we showed that HMG-I(Y) expression increases in high grade prostate tumors. These studies, however, required fresh material, and clinical follow-up was limited. To overcome this problem paraffin-embedded material must be made amenable for determination of HMG-I(Y) expression in retrospective studies. RNA in situ hybridization enables the evaluation of mRNA levels in such material. We studied tumors from 71 patients with prostate cancer. The microscopic analysis of each sample included: (a) hybridization on sections with sense HMG-I(Y) and (b) 28S rRNA probes (nonspecific signal); (c) hybridization with antisense 28S rRNA (RNA preservation); (d) hybridization with an antisense HMG-I(Y) probe [quantification of HMG-I(Y) mRNA in the expressing areas]. Data were quantified using an image analysis system. High expression of HMG-I(Y) was observed in regions with high Gleason grade (4 and 5); whereas in lesions of Gleason grade 3, both weak and no expression was observed. In areas of grade 1 and 2, as well as in normal glands, low or no expression was found. We conclude that HMG-I(Y) expression assessed by RNA in situ hybridization is related to tumor differentiation in prostate cancer. These findings indicate that HMG-I(Y) expression may be a marker in prostate cancer diagnosis, and the possible clinical implication of expression of this gene in malignancy is discussed in this report.

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Year:  1993        PMID: 8221692

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  38 in total

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9.  Tumor suppressive miR-124 targets androgen receptor and inhibits proliferation of prostate cancer cells.

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10.  Human papilloma virus-dependent HMGA1 expression is a relevant step in cervical carcinogenesis.

Authors:  Massimiliano Mellone; Christian Rinaldi; Isabella Massimi; Marialaura Petroni; Veronica Veschi; Claudio Talora; Silvia Truffa; Helena Stabile; Luigi Frati; Isabella Screpanti; Alberto Gulino; Giuseppe Giannini
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