TY - JOUR
T1 - Human colon cancer profiles show differential microRNA expression depending on mismatch repair status and are characteristic of undifferentiated proliferative states
AU - Sarver, Aaron L.
AU - French, Amy J.
AU - Borralho, Pedro M.
AU - Thayanithy, Venugopal
AU - Oberg, Ann L.
AU - Silverstein, Kevin A.T.
AU - Morlan, Bruce W.
AU - Riska, Shaun M.
AU - Boardman, Lisa A.
AU - Cunningham, Julie M.
AU - Subramanian, Subbaya
AU - Wang, Liang
AU - Smyrk, Tom C.
AU - Rodrigues, Cecilia M.P.
AU - Thibodeau, Stephen N.
AU - Steer, Clifford J.
N1 - Funding Information:
This work was supported by a grant from the Minnesota Partnership for Biotechnology and Medical Genomics [Medica Foundation 2006-100412].
Funding Information:
Funding Supported in part by grant PTDC/SAU-GMG/099161/2008 from Fundação para a Ciência e a Tecnologia (FCT), Lisbon, Portugal (to C.M.P.R.), and by Ph.D. fellowship SFRH/BD/24165/2005 (to P.M.B.).
PY - 2009/11/18
Y1 - 2009/11/18
N2 - Background: Colon cancer arises from the accumulation of multiple genetic and epigenetic alterations to normal colonic tissue. microRNAs (miRNAs) are small, non-coding regulatory RNAs that post-transcriptionally regulate gene expression. Differential miRNA expression in cancer versus normal tissue is a common event and may be pivotal for tumor onset and progression. Methods: To identify miRNAs that are differentially expressed in tumors and tumor subtypes, we carried out highly sensitive expression profiling of 735 miRNAs on samples obtained from a statistically powerful set of tumors (n = 80) and normal colon tissue (n = 28) and validated a subset of this data by qRT-PCR. Results: Tumor specimens showed highly significant and large fold change differential expression of the levels of 39 miRNAs including miR-135b, miR-96, miR-182, miR-183, miR-1, and miR-133a, relative to normal colon tissue. Significant differences were also seen in 6 miRNAs including miR-31 and miR-592, in the direct comparison of tumors that were deficient or proficient for mismatch repair. Examination of the genomic regions containing differentially expressed miRNAs revealed that they were also differentially methylated in colon cancer at a far greater rate than would be expected by chance. A network of interactions between these miRNAs and genes associated with colon cancer provided evidence for the role of these miRNAs as oncogenes by attenuation of tumor suppressor genes. Conclusion: Colon tumors show differential expression of miRNAs depending on mismatch repair status. miRNA expression in colon tumors has an epigenetic component and altered expression that may reflect a reversion to regulatory programs characteristic of undifferentiated proliferative developmental states.
AB - Background: Colon cancer arises from the accumulation of multiple genetic and epigenetic alterations to normal colonic tissue. microRNAs (miRNAs) are small, non-coding regulatory RNAs that post-transcriptionally regulate gene expression. Differential miRNA expression in cancer versus normal tissue is a common event and may be pivotal for tumor onset and progression. Methods: To identify miRNAs that are differentially expressed in tumors and tumor subtypes, we carried out highly sensitive expression profiling of 735 miRNAs on samples obtained from a statistically powerful set of tumors (n = 80) and normal colon tissue (n = 28) and validated a subset of this data by qRT-PCR. Results: Tumor specimens showed highly significant and large fold change differential expression of the levels of 39 miRNAs including miR-135b, miR-96, miR-182, miR-183, miR-1, and miR-133a, relative to normal colon tissue. Significant differences were also seen in 6 miRNAs including miR-31 and miR-592, in the direct comparison of tumors that were deficient or proficient for mismatch repair. Examination of the genomic regions containing differentially expressed miRNAs revealed that they were also differentially methylated in colon cancer at a far greater rate than would be expected by chance. A network of interactions between these miRNAs and genes associated with colon cancer provided evidence for the role of these miRNAs as oncogenes by attenuation of tumor suppressor genes. Conclusion: Colon tumors show differential expression of miRNAs depending on mismatch repair status. miRNA expression in colon tumors has an epigenetic component and altered expression that may reflect a reversion to regulatory programs characteristic of undifferentiated proliferative developmental states.
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U2 - 10.1186/1471-2407-9-401
DO - 10.1186/1471-2407-9-401
M3 - Article
C2 - 19922656
AN - SCOPUS:71549125896
SN - 1471-2407
VL - 9
JO - BMC Cancer
JF - BMC Cancer
M1 - 401
ER -