Literature DB >> 25848814

Rationally Designed MicroRNA-Based Genetic Classifiers Target Specific Neurons in the Brain.

Marianna K Sayeg1, Benjamin H Weinberg1, Susie S Cha1, Michael Goodloe1, Wilson W Wong1, Xue Han1.   

Abstract

Targeting transgene expression to specific cell types in vivo has proven instrumental in characterizing the functional role of defined cell populations. Genetic classifiers, synthetic transgene constructs designed to restrict expression to particular classes of cells, commonly rely on transcriptional promoters to define cellular specificity. However, the large size of many natural promoters complicates their use in viral vectors, an important mode of transgene delivery in the brain and in human gene therapy. Here, we expanded upon an emerging classifier platform, orthogonal to promoter-based strategies, that exploits endogenous microRNA regulation to target gene expression. Such classifiers have been extensively explored in other tissues; however, their use in the nervous system has thus far been limited to targeting gene expression between neurons and supporting cells. Here, we tested the possibility of using combinatory microRNA regulation to specify gene targeting between neuronal subtypes, and successfully targeted inhibitory cells in the neocortex. These classifiers demonstrate the feasibility of designing a new generation of microRNA-based neuron-type- and brain-region-specific gene expression targeting neurotechnologies.

Entities:  

Keywords:  gene therapy; genetic classifier; inhibitory neurons; microRNA; neuroengeineering; synthetic biology

Mesh:

Substances:

Year:  2015        PMID: 25848814      PMCID: PMC4547530          DOI: 10.1021/acssynbio.5b00040

Source DB:  PubMed          Journal:  ACS Synth Biol        ISSN: 2161-5063            Impact factor:   5.110


  34 in total

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  12 in total

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Review 4.  Viral vectors for neuronal cell type-specific visualization and manipulations.

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5.  A MicroRNA-Based Gene-Targeting Tool for Virally Labeling Interneurons in the Rodent Cortex.

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Review 6.  Cell-Specific Targeting of Genetically Encoded Tools for Neuroscience.

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8.  An integrative approach for analyzing hundreds of neurons in task performing mice using wide-field calcium imaging.

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9.  Model-guided combinatorial optimization of complex synthetic gene networks.

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10.  Computing Mathematical Functions using DNA via Fractional Coding.

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