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Cyclin D1 is a major target of miR-206 in cell differentiation and transformation
被引:54
作者:
Alteri, Alessandra
[1
]
De Vito, Francesca
[1
]
Messina, Graziella
[2
]
Pompili, Monica
[1
]
Calconi, Attilio
[1
]
Visca, Paolo
[3
]
Mottolese, Marcella
[3
]
Presutti, Carlo
[1
]
Grossi, Milena
[1
]
机构:
[1] Univ Roma La Sapienza, Dipartimento Biol & Biotecnol C Darwin, I-00185 Rome, Italy
[2] Univ Milan, Dipartimento Biosci, Milan, Italy
[3] Ist Nazl Tumori Regina Elena, Rome, Italy
来源:
关键词:
miR-206;
cyclin D1;
myogenic differentiation;
cell proliferation;
cell transformation;
HUMAN BREAST-CANCER;
SKELETAL-MUSCLE;
DOWN-REGULATION;
MYOBLAST DIFFERENTIATION;
IN-VITRO;
ER-ALPHA;
EXPRESSION;
MICRORNA-206;
PROLIFERATION;
TRANSCRIPTION;
D O I:
10.4161/cc.26674
中图分类号:
Q2 [细胞生物学];
学科分类号:
071009 ;
090102 ;
摘要:
miR-206, a member of the so-called myomiR family, is largely acknowledged as a specific, positive regulator of skeletal muscle differentiation. A growing body of evidence also suggests a tumor suppressor function for miR-206, as it is frequently downregulated in various types of cancers. In this study, we show that miR-206 directly targets cyclin D1 and contributes to the regulation of CCND1 gene expression in both myogenic and non-muscle, transformed cells. We demonstrate that miR-206, either exogenous or endogenous, reduces cyclin D1 levels and proliferation rate in C2C12 cells without promoting differentiation, and that miR-206 knockdown in terminally differentiated C2C12 cells leads to cyclin D1 accumulation in myotubes, indicating that miR-206 might be involved in the maintenance of the post-mitotic state. targeting of cyclin D1 might also account, at least in part, for the tumor-suppressor activity suggested for miR-206 in previous studies. Accordingly, the analysis of neoplastic and matched normal lung tissues reveals that miR-206 downregulation in lung tumors correlates, in most cases, with higher cyclin D1 levels. Moreover, gain-of-function experiments with cancer-derived cell lines and with in vitro transformed cells indicate that miR-206-mediated cyclin D1 repression is directly coupled to growth inhibition. Altogether, our data highlight a novel activity for miR-206 in skeletal muscle differentiation and identify cyclin D1 as a major target that further strengthens the tumor suppressor function proposed for miR-206.
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页码:3781 / 3790
页数:10
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