Synthetic microRNA (miRNA) minigenes (SMIGs) have a major potential for molecular therapy; however, their optimal architecture still needs to be determined. We have previously optimized the stem structure of miRNA hairpins for efficient gene knockdown. Here, we investigate the overall architecture of SMIGs driven by polymerase II-dependent promoters. When miRNA hairpins were placed directly behind the promoter, gene knockdown was inefficient as compared with constructs containing an intercalated sequence ("spacer"). Spacer sequence was relevant for knockdown efficiency and concatenation potential: GFP-based sequences (even when truncated or including stop codons) were particularly efficient. In contrast, a spacer of similar length based on ...
Various technical tools have been developed to probe the functions of microRNAs (miRNAs), yet their ...
Short hairpin RNA (shRNA) technology enables stable and regulated gene repression. For establishing ...
RNA interference (RNAi) technology using short hairpin RNAs (shRNAs) expressed via RNA polymerase (p...
Synthetic microRNA (miRNA) minigenes (SMIGs) have a major potential for molecular therapy; however, ...
Synthetic microRNA (miRNA) minigenes (SMIGs) have a major potential for molecular therapy; however, ...
Synthetic microRNA (miRNA) minigenes (SMIGs) have a major potential for molecular therapy; however, ...
Gene knockdown using micro RNA (miRNA)-based vector constructs is likely to become a prominent gene ...
Gene knockdown using micro RNA (miRNA)-based vector constructs is likely to become a prominent gene ...
SummaryShort hairpin RNA (shRNA) technology enables stable and regulated gene repression. For establ...
Abstract Background Controlling and limiting the expression of short hairpin RNA (shRNA) by using co...
The characterization of RNA interference and the accompanying microRNAs (miRs), together with the ex...
Background: Effective and stable knockdown of multiple gene targets by RNA interference is often nec...
The advent of RNA interference has led to the ability to interfere with gene expression and greatly ...
Genome editing with site-specific endonucleases has implications for basic biomedical research as we...
Niemeier S, Alves jun. L, Merkle T. Improvement of the design and generation of highly specific plan...
Various technical tools have been developed to probe the functions of microRNAs (miRNAs), yet their ...
Short hairpin RNA (shRNA) technology enables stable and regulated gene repression. For establishing ...
RNA interference (RNAi) technology using short hairpin RNAs (shRNAs) expressed via RNA polymerase (p...
Synthetic microRNA (miRNA) minigenes (SMIGs) have a major potential for molecular therapy; however, ...
Synthetic microRNA (miRNA) minigenes (SMIGs) have a major potential for molecular therapy; however, ...
Synthetic microRNA (miRNA) minigenes (SMIGs) have a major potential for molecular therapy; however, ...
Gene knockdown using micro RNA (miRNA)-based vector constructs is likely to become a prominent gene ...
Gene knockdown using micro RNA (miRNA)-based vector constructs is likely to become a prominent gene ...
SummaryShort hairpin RNA (shRNA) technology enables stable and regulated gene repression. For establ...
Abstract Background Controlling and limiting the expression of short hairpin RNA (shRNA) by using co...
The characterization of RNA interference and the accompanying microRNAs (miRs), together with the ex...
Background: Effective and stable knockdown of multiple gene targets by RNA interference is often nec...
The advent of RNA interference has led to the ability to interfere with gene expression and greatly ...
Genome editing with site-specific endonucleases has implications for basic biomedical research as we...
Niemeier S, Alves jun. L, Merkle T. Improvement of the design and generation of highly specific plan...
Various technical tools have been developed to probe the functions of microRNAs (miRNAs), yet their ...
Short hairpin RNA (shRNA) technology enables stable and regulated gene repression. For establishing ...
RNA interference (RNAi) technology using short hairpin RNAs (shRNAs) expressed via RNA polymerase (p...