Scientific Reports · 2016 · 13 citations · 21 references
Transcription activator-like effectors (TALEs) contain modular programmable DNA binding domains. Fusing TALEs with effector domains creates synthetic transcription factors (TALE-TFs) or nucleases (TALENs), enabling precise gene manipulations. The construction of TALEs remains challenging due to their repetitive sequences. Here we report a simple TALE assembly reaction (STAR) that enables individual laboratories to generate multiple TALEs in a facile manner. STAR uses an isothermal assembly ('Gibson assembly') that is labour- and cost-effective, accessible, rapid and scalable. A small 68-part fragment library is employed, and the specific TALE repeat sequence is generated within ~8 hours. Sequence-verified TALENs or TALE-TF plasmids targeting 17 bp target sequences can be produced within three days, without the need for stepwise intermediate plasmid production. We demonstrate the utility of STAR through production of functional TALE-TFs capable of activating human SOX2 expression. STAR addresses some of the shortcomings of existing Golden Gate or solid-phase assembly protocols and enables routine production of TALE-TFs that will complement emerging CRISPR/Cas9-based reagents across diverse applications in mammalian stem cell and synthetic biology.
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Enzymatic assembly of DNA molecules up to several hundred kilobases
Daniel G. Gibson, Lei Young, Ray-Yuan Chuang et al. · Nature Methods · 2009 · 10.6K citations
Breaking the Code of DNA Binding Specificity of TAL-Type III Effectors
Jens Boch, Heidi Scholze, Sebastián Schornack et al. · Science · 2009 · 2.6K citations
Engineering, Genetics, Dna Analysis +21
A TALE nuclease architecture for efficient genome editing
Jeffrey C. Miller, Siyuan Tan, Guijuan Qiao et al. · Nature Biotechnology · 2010 · 2.1K citations
FLASH assembly of TALENs for high-throughput genome editing
Deepak Reyon, Shengdar Q. Tsai, Cyd Khayter et al. · Nature Biotechnology · 2012 · 1.2K citations · Full text