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T7 mmessage mmachine high yield capped rna transcription kit

Manufactured by Thermo Fisher Scientific

The T7 mMESSAGE mMACHINE™ High Yield Capped RNA Transcription Kit is a laboratory product designed for the in vitro synthesis of capped, high-yield RNA transcripts. The kit utilizes the T7 RNA polymerase system to produce these transcripts from DNA templates.

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2 protocols using t7 mmessage mmachine high yield capped rna transcription kit

1

Synthesis of Mutant nAChR Subunits

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The cDNA sequences for human wild type α4 (NCBI Reference Sequence: NM_000744.5), wild type β2 (NCBI Reference Sequence: NM_000748.2), α4(R336H) (Chen et al., 2009 (link)) and β2(V337G) (Liu et al., 2011 (link)) were used to synthesize full-length cDNA for each subunit (Life Technologies, Grand Island, NY). All constructs were fully sequenced and confirmed to be identical to the published sequences for each subunit. Each nAChR subunit cDNA was removed from the pMA shuttle vector using Not I and Xba I restriction enzymes (New England Biolabs, Ipswich, MA) and ligated into the pCI mammalian expression vector (Promega Madison, WI) using T4 DNA ligase (Promega, Madison, WI). The constructs were transformed into NEB 5-α competent E. coli cells (New England Biolabs, Ipswich, MA) for larger-scale production of cDNA. DNA was isolated using QIAprep Spin Miniprep kits (Qiagen, Valencia, CA). To prepare for cRNA synthesis, cDNA clones of the α4, α4(R336H), β2 and β2(V337G) subunits were linearized with the restriction enzyme Swa I and treated with proteinase K (30min at 50°C), then purified using Qiagen’s PCR clean-up kit. cRNAs were transcribed using the T7 mMESSAGE mMACHINE™ High Yield Capped RNA Transcription Kit (Ambion, Austin, TX). cRNA purity was confirmed on a 1% agarose gel and the final product was sub-aliquoted and stored at −80°C.
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2

Mutational Analysis of Voltage-Gated Ion Channel

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The variants at position 1784 include negatively charged, positively charged, neutral, and aromatic residues. The E1784E and the E1784K constructs in pPol1 were used in a previous study from our laboratory. The E1784A point mutant was made by Ziwei Ding (Simon Fraser University). The other mutants at positions 1784, 1641, and 1493 were introduced into the pPol1 construct using a QuikChange Lightning kit. The K1492E/E1784K and K1500E/E1784K mutants were made by Applied Biological Materials. The C373F mutant was included in all plasmids to increase the tetrodotoxin (TTX) sensitivity of the channels and facilitate gating current recordings (Satin et al., 1992 (link)).
All DNA constructs were cloned in 10β Escherichia coli cells (New England Biolabs), purified using a Qiagen Midi-prep kit, and sequenced by either Eurofin MWG Operon sequencing service or Genewiz sequencing service. We used NotI to linearize all constructs. Transcription was performed using a T7 mMESSAGE mMACHINE high-yield capped RNA transcription kit (Ambion).
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