Transgenic microRNA inhibition with spatiotemporal specificity in intact organisms

CM Loya, CS Lu, D Van Vactor, TA Fulga - Nature methods, 2009 - nature.com
CM Loya, CS Lu, D Van Vactor, TA Fulga
Nature methods, 2009nature.com
MicroRNAs are important regulators of gene expression, yet the functional outputs of most
microRNA-target interactions remain elusive. Here we introduce the Drosophila
melanogaster microRNA sponge (miR-SP) as a powerful transgenic technology to dissect
the function of every microRNA with precise spatiotemporal resolution. miR-SPs can be
used to characterize tissue-specific microRNA loss-of-function phenotypes, define the
spatial regulation of their effectors and uncover interactions between microRNAs and other …
Abstract
MicroRNAs are important regulators of gene expression, yet the functional outputs of most microRNA-target interactions remain elusive. Here we introduce the Drosophila melanogaster microRNA sponge (miR-SP) as a powerful transgenic technology to dissect the function of every microRNA with precise spatiotemporal resolution. miR-SPs can be used to characterize tissue-specific microRNA loss-of-function phenotypes, define the spatial regulation of their effectors and uncover interactions between microRNAs and other genes. Using themiR-SP system, we identified an essential role of the conserved microRNA miR-8, in neuromuscular junction formation. Tissue-specific silencing revealed that postsynaptic activity of miR-8 is important for normal neuromuscular junction morphogenesis. Given that miR-SPs rely on a bipartite modular expression system, they could be used to elucidate the endogenous function of microRNAs in any species in which conditional expression can be achieved.
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