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pUC19 DNA/MspI (HpaII) Marker

Store at room temperature

Marker for sizing and approximate quantification of small linear double-stranded DNA fragments in agarose and non-denaturing polyacrylamide gels.
  
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pUC19 DNA/Mspl (HpaII) Marker, 23

0.5µg/lane, 8cm length gel, 1X TBE, 5V/cm, 1.5h. Bands visible: 501, 489, 404, 331, 242, 190, 147, 111, 110, 67, 34 and 34 bp.

Thermo Scientific pUC19 DNA/MspI (HpaII) Marker is recommended for sizing and approximate quantification of small linear double-stranded DNA fragments in agarose and non-denaturing polyacrylamide gels. pUC19 DNA is digested to completion with the appropriate Thermo Scientific restriction enzyme, then purified and dissolved in storage buffer. The DNA fragments contain blunt or sticky ends, depending on the restriction enzyme used for the markers preparation.

pUC19 DNA/MspI (HpaII) Marker, ready-to-use, is premixed with 6X DNA Loading Dye for direct loading onto agarose and polyacrylamide gels.

Highlights

  • Sizing and approximate quantification of small DNA fragments
  • Sharp bands 
  • Supplied with loading dye for sample DNA 

Note

Bands indicated ** form an anomalous pattern on polyacrylamide gels. The shortest fragments (oblique) are not visible in standard electrophoresis. Fragment lengths are predicted by computer analysis of the respective DNA sequences.

  
Storage Condition-20 C
HazardousNo
6X DNA Loading Dye10mM Tris-HCl (pH7.6), 0.03%bromophenol blue, 0.03%xylene cyanol FF, 60%glycerol, and 60mM EDTA.
Quality Control
  • Well-defined bands are formed during agarose gel electrophoresis.
  • The DNA concentration is determined spectrophotometrically.
  • The absence of nucleases is confirmed by a direct nuclease activity assay.
Storage and Loading Buffer (for ready-to-use markers)10mM Tris-HCl (pH7.6), 10mM EDTA, 0.005% bromophenol blue, 0.005%xylene cyanol FF, and 10%glycerol.
Storage Buffer (TE buffer)10mM Tris-HCl (pH7.6) and 1mM EDTA.
Storage NotesStore at room temperature or at 4°C for up to 6months. For longer periods, store at -20°C.