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A novel antisense long noncoding RNA within the IGF1R gene locus is imprinted in hematopoietic malignancies.


ABSTRACT: Dysregulation of the insulin-like growth factor type I receptor (IGF1R) has been implicated in the progression and therapeutic resistance of malignancies. In acute myeloid leukemia (AML) cells, IGF1R is one of the most abundantly phosphorylated receptor tyrosine kinases, promoting cell growth through the PI3K/Akt signaling pathway. However, little is known regarding the molecular mechanisms underlying IGF1R gene dysregulation in cancer. We discovered a novel intragenic long noncoding RNA (lncRNA) within the IGF1R locus, named IRAIN, which is transcribed in an antisense direction from an intronic promoter. The IRAIN lncRNA was expressed exclusively from the paternal allele, with the maternal counterpart being silenced. Using both reverse transcription-associated trap and chromatin conformation capture assays, we demonstrate that this lncRNA interacts with chromatin DNA and is involved in the formation of an intrachromosomal enhancer/promoter loop. Knockdown of IRAIN lncRNA with shRNA abolishes this intrachromosomal interaction. In addition, IRAIN was downregulated both in leukemia cell lines and in blood obtained from high-risk AML patients. These data identify IRAIN as a new imprinted lncRNA that is involved in long-range DNA interactions.

SUBMITTER: Sun J 

PROVIDER: S-EPMC4150754 | biostudies-literature | 2014 Sep

REPOSITORIES: biostudies-literature

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A novel antisense long noncoding RNA within the IGF1R gene locus is imprinted in hematopoietic malignancies.

Sun Jingnan J   Li Wei W   Sun Yunpeng Y   Yu Dehai D   Wen Xue X   Wang Hong H   Cui Jiuwei J   Wang Guanjun G   Hoffman Andrew R AR   Hu Ji-Fan JF  

Nucleic acids research 20140804 15


Dysregulation of the insulin-like growth factor type I receptor (IGF1R) has been implicated in the progression and therapeutic resistance of malignancies. In acute myeloid leukemia (AML) cells, IGF1R is one of the most abundantly phosphorylated receptor tyrosine kinases, promoting cell growth through the PI3K/Akt signaling pathway. However, little is known regarding the molecular mechanisms underlying IGF1R gene dysregulation in cancer. We discovered a novel intragenic long noncoding RNA (lncRNA  ...[more]

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