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The Soft Agar Colony Formation Assay
Published on: October 27, 2014
Sox7 Is an independent checkpoint for beta-catenin function in prostate and colon epithelial cells
Lizheng Guo1, Diansheng Zhong, Stephen Lau
1Department of Hematology and Oncology, The Winship Cancer Institute, Atlanta VA Medical Center, Atlanta, George, USA.
Abstract:
The presence of somatic beta-catenin mutations in some prostate cancers implies that aberrant WNT signaling is involved in the cancer development. Although beta-catenin stability is regulated by a multicomponent destruction complex, mutational alterations of beta-catenin or other components of the destruction complexes are rare in prostate tumors. Therefore, beta-catenin may be regulated by another protein in the prostate. In fact, recent linkage and somatic deletion analyses in prostate cancers reveal a 1.4-Mb candidate tumor suppressor locus on 8p23.1, which includes the Sox7 gene. Here we show that Sox7 protein expression was indeed down-regulated in 47% (15 of 32) of prostate adenocarcinomas. In addition, Sox7 mRNA was down-regulated in 60% of snap-frozen tumors. This down-regulation was found to be due to tumor-specific promoter hypermethylation, which was present in 48% (10 of 21) of primary prostate tumors and 44% (11 of 25) of prostate cancer cell lines/xenografts. We discovered that Sox7 protein physically interacts with beta-catenin and suppresses beta-catenin-mediated transcription by depleting active beta-catenin. Furthermore, in HCT116 colorectal cancer cell lines with Sox7 inactivation, ectopic Sox7 expression suppressed cell proliferation and inhibited transcription that was activated by an endogenous mutant beta-catenin. Although nearly all colorectal cancers contain mutations in beta-catenin or adenomatous polyposis coli/axin, epigenetic silencing of Sox7 was still observed. These data suggest that Sox7 is a tumor suppressor that functions as an independent checkpoint for beta-catenin transcriptional activity. Inactivation of Sox7 could promote the development of a majority of colorectal tumors and approximately half of prostate tumors.
Insights
Sox7, a tumor suppressor, is frequently down-regulated in prostate and colorectal cancers due to promoter hypermethylation. It interacts with beta-catenin, suppressing WNT signaling and acting as a crucial checkpoint in cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Aberrant WNT signaling, indicated by beta-catenin mutations, plays a role in prostate cancer development.
- Mutations in beta-catenin destruction complex components are rare in prostate tumors, suggesting alternative regulatory mechanisms.
- A candidate tumor suppressor locus on 8p23.1, including the Sox7 gene, was identified in prostate cancers.
Purpose of the Study:
- To investigate the role of Sox7 in prostate and colorectal cancer development.
- To determine the mechanism of Sox7 down-regulation in these cancers.
- To elucidate Sox7's functional interaction with beta-catenin.
Main Methods:
- Analysis of Sox7 protein and mRNA expression in prostate tumors and cell lines.
- Assessment of Sox7 promoter hypermethylation.
- Co-immunoprecipitation to study Sox7-beta-catenin interaction.
- Functional assays in colorectal cancer cell lines with Sox7 inactivation.
Main Results:
- Sox7 protein and mRNA were down-regulated in a significant proportion of prostate adenocarcinomas.
- Tumor-specific promoter hypermethylation was identified as the primary mechanism for Sox7 silencing.
- Sox7 physically interacts with beta-catenin and suppresses its transcriptional activity.
- Ectopic Sox7 expression inhibited proliferation and beta-catenin-mediated transcription in colorectal cancer cells.
Conclusions:
- Sox7 acts as a tumor suppressor by regulating beta-catenin transcriptional activity.
- Epigenetic silencing of Sox7 contributes to the development of both prostate and colorectal cancers.
- Sox7 functions as an independent checkpoint for WNT signaling in tumorigenesis.
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