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1.
Chongqing Medicine ; (36): 3671-3673, 2017.
Article in Chinese | WPRIM | ID: wpr-661925

ABSTRACT

Objective To investigate the mmu-miR-3475-3P possible participating in biology process and signal pathway.Methods The expression of mmu-miR-3475-3P in the mature mouse heart and in the embryonic mouse heart was measured by qRT-PCR.The target genes were predicted through comprehensively using the common microRNA on-line databases such as TargetScan,miRDB and miRanda,and then the obtained targeted genes were performed the gene function annotation and signal pathway analysis.Results There was significant difference between the expression of mmu-miR-3475-3P in the embryonic mouse heart and the expression in the mature heart.Bioinformatics analysis by using TargetScan,miRDB and MiRanda on miR3475-3P revealed that microRNA was likely to regulate 441 target genes.Conclusion mmu-miR-3475-3P is highly expressed in the embryonic mouse heart.The target genes predicted by mmu-miR-3475-3P are enriched in multiple signal pathways and cellular biological processes.

2.
Chongqing Medicine ; (36): 3671-3673, 2017.
Article in Chinese | WPRIM | ID: wpr-659038

ABSTRACT

Objective To investigate the mmu-miR-3475-3P possible participating in biology process and signal pathway.Methods The expression of mmu-miR-3475-3P in the mature mouse heart and in the embryonic mouse heart was measured by qRT-PCR.The target genes were predicted through comprehensively using the common microRNA on-line databases such as TargetScan,miRDB and miRanda,and then the obtained targeted genes were performed the gene function annotation and signal pathway analysis.Results There was significant difference between the expression of mmu-miR-3475-3P in the embryonic mouse heart and the expression in the mature heart.Bioinformatics analysis by using TargetScan,miRDB and MiRanda on miR3475-3P revealed that microRNA was likely to regulate 441 target genes.Conclusion mmu-miR-3475-3P is highly expressed in the embryonic mouse heart.The target genes predicted by mmu-miR-3475-3P are enriched in multiple signal pathways and cellular biological processes.

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