First-Stage Plasmid (Transcriptional Unit) AssemblyOnce you have all your desired part plasmids built you can assemble them into Transcriptional units (TU). Typically these plasmids will be assembled with part plasmids for promoter + RBS, coding sequence, terminator, and TU specific connectors; variations on this basic strategy are easily managed though as long as the requisite overhangs are present (Described here). | |||||||||||||
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> > | Protocol source: NEB (https://www.neb.com/protocols/2018/10/02/golden-gate-assembly-protocol-for-using-neb-golden-gate-assembly-mix-e1601) | ||||||||||||
Assembly reactionAccess the old non-kit golden gate assembly protocols here | |||||||||||||
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< < | Total volume will be 20 μL; you will need 10 fmol of each part plasmid for this assembly. Typically the pYTK095 Type 6-8 plasmid (ColE1 origin, sfGFP dropout) is used as the backbone for this assembly. If toxicity issues may be a factor, lower copy number vectors can easily be used in its place. | ||||||||||||
> > | Total volume will be 20 μL; you will need 50 fmol of each part plasmid for this assembly. Typically the pYTK095 Type 6-8 plasmid (ColE1 origin, sfGFP dropout) is used as the backbone for this assembly. If toxicity issues may be a factor, lower copy number vectors can easily be used in its place. | ||||||||||||
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< < | ** Promega T4 Ligase buffer has been shown to offer the highest activity for BsaI enzyme. Other T4 ligase enzymes will work, but Promega enzyme with Promega buffer is highest efficiency. | ||||||||||||
Mix samples well by pipetting, then run the reaction on the thermocycler under the following conditions:
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Transform 2 μL of the assembly reaction and plate on an appropriate antibiotic (Amp/Carb if using pYTK095).
Tips from New England Biolabs on ways to change the reaction conditions for difficult assemblies involving many parts:
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