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Gene information | Literature | Expression | lncRNA | Mutation | Homolog

Basic Information

Gene ID

442917

Name

MIR372

Synonymous

microRNA 372;MIR372;microRNA 372

Definition

-

Position

19q13.42

Gene type

ncRNA

Title

Abstract

A genetic screen implicates miRNA-372 and miRNA-373 as oncogenes in testicular germ cell tumors.

Endogenous small RNAs (miRNAs) regulate gene expression by mechanisms conserved across metazoans. While the number of verified human miRNAs is still expanding, only few have been functionally annotated. To perform genetic screens for novel functions of miRNAs, we developed a library of vectors expressing the majority of cloned human miRNAs and created corresponding DNA barcode arrays. In a screen for miRNAs that cooperate with oncogenes in cellular transformation, we identified miR-372 and miR-373, each permitting proliferation and tumorigenesis of primary human cells that harbor both oncogenic RAS and active wild-type p53. These miRNAs neutralize p53-mediated CDK inhibition, possibly through direct inhibition of the expression of the tumorsuppressor LATS2. We provide evidence that these miRNAs are potential novel oncogenes participating in the development of human testicular germ cell tumors by numbing the p53 pathway, thus allowing tumorigenic growth in the presence of wild-type p53.

miR-372 regulates cell cycle and apoptosis of ags human gastric cancer cell line through direct regulation of LATS2.

Previously, we have reported tissue- and stage-specific expression of miR-372 in human embryonic stem cells and so far, not many reports speculate the function of this microRNA (miRNA). In this study, we screened various human cancer cell lines including gastric cancer cell lines and found first time that miR-372 is expressed only in AGS human gastric adenocarcinoma cell line. Inhibition of miR-372 using antisense miR-372 oligonucleotide (AS-miR-372) suppressed proliferation, arrested the cell cycle at G2/M phase, and increased apoptosis of AGS cells. Furthermore, AS-miR-372 treatment increased expression of LATS2, while over-expression of miR-372 decreased luciferase reporter activity driven by the 3 untranslated region (3 UTR) of LATS2 mRNA. Over-expression of LATS2 induced changes in AGS cells similar to those in AGS cells treated with AS-miR-372. Taken together, these findings demonstrate an oncogenic role for miR-372 in controlling cell growth, cell cycle, and apoptosis through down-regulation of a tumor suppressor gene, LATS2.

MicroRNA-372 is associated with poor prognosis in colorectal cancer.

OBJECTIVE: MicroRNA-372 (miR-372) is reportedly shown to be an oncogene in human testicular germ cell tumors and gastric cancers, but its expression in colorectal cancer (CRC) is not yet determined. This study investigated the clinical significance of miR-372 expression in CRC. METHODS: qRT-PCR was used to evaluate miR-372 in 144 CRC patients, and large tumor suppressor 2 (LATS2) expression was also examined as the likely target gene of miR-372. In vitroassays were performed to evaluate the biological function of miR-372. RESULTS: Multivariate analysis indicated that high miR-372 expression was an independent prognostic factor (p = 0.006). High miR-372 expression was associated with synchronous liver metastasis (p = 0.035). We found an inverse relationship between miR-372 and LATS2 by qRT-PCR (p = 0.007) and immunohistochemistry (p = 0.042) using CRC tissue samples. Furthermore, pre-miR-372 led to a decrease in the LATS2 protein and an increase in proliferative activity of LoVo cells. We also found a significant association between low LATS2 expression and liver metastasis (p = 0.042). CONCLUSIONS: This study suggested that miR-372 was a novel independent prognostic factor in CRC. Our data suggest that LATS2 may serve as one of the target genes of miR-372 in clinical CRC tissues.

microRNA-372 maintains oncogene characteristics by targeting TNFAIP1 and affects NFkappaB signaling in human gastric carcinoma cells.

Aberrant microRNA (miRNA) expression has been investigated in gastric cancer, which is one of the most common malignancies. However, the roles of miRNAs in gastric cancer remain largely unknown. In the present study, we found that microRNA-372 (miR-372) directly targets tumor necrosis factor, alpha-induced protein 1 (TNFAIP1), and is involved in the regulation of the NFkappaB signaling pathway. Furthermore, overexpression of TNFAIP1 induced changes in AGS cells similar to those in AGS cells treated with miR-372-ASO. Collectively, these findings demonstrate an oncogenic role for miR-372 in controlling cell growth and apoptosis through downregulation of TNFAIP1. This novel molecular basis provides new insights into the etiology of gastric cancer.

miR-372 down-regulates the oncogene ATAD2 to influence hepatocellular carcinoma proliferation and metastasis.

BACKGROUND: ATAD2 is associated with many cellular processes, such as cell growth, migration and invasion. However, no studies have been conducted on the molecular biological function of the ATAD2 gene in hepatocellular carcinoma (HCC). METHODS: The protein and mRNA level expression of ATAD2 was examined in tissues and cell lines. Prognostic significance was analyzed by the Kaplan-Meier survival method and Cox regression. ATAD2 knockdown was used to analyze cell proliferation and invasion. The upstream and downstream of ATAD2 was analyzed by RT2 Profiler PCR array and luciferasex fluorescence system. RESULTS: ATAD2 was highly expressed in liver cancer samples and correlated with poor survival. High ATAD2 expression was positively correlated with metastasis (P = 0.005) and was an independent prognostic factor in HCC (P = 0.001). ATAD2 depletion by RNA interference reduced their capacity for invasion and proliferation and led to a G1 phase arrest in vitro. Further study revealed that miR-372 was an upstream target of ATAD2 as miR-372 was bound directly to its 3 untranslated region (3 UTR). In addition, ATAD2 knockdown was found to extremely up-regulate APC expression and down-regulate CTNNA1 at the mRNA level. CONCLUSIONS: The findings demonstrated that miR-372 suppressed the expression of ATAD2, which was highly expressed in HCC and exerted a proto-oncogene effect in hepatic carcinogenesis. In conclusion, ATAD2 may promote HCC progression.