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16-661 Magna ChIP™ Protein A Magnetic Beads

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      Achieve first time ChIP success with EZ-ChIP Assays
      Catalogue Number16-661
      Trade Name
      • Magna ChIP
      DescriptionMagna ChIP™ Protein A Magnetic Beads
      OverviewRecombinant protein A covalently bound to magnetic beads. These beads provide users a rapid, reproducible and efficient reagent for collecting immunocomplexes for chromatin immunoprecipitations (ChIP) assays. Compared with conventional protein A agarose beads, protein A magnetic beads significantly reduce the handling time and mechanical stress on target immunocomplexes.
      Alternate Names
      • ChIP magnetic beads
      • ChIP magnetic A beads
      Product Information
      PresentationLiquid suspension. Supplied as magnetic bead slurry in phosphate buffered saline, pH 7.4, containing 0.01% Tween®-20 and 0.09% sodium azide.
      Quality LevelMQ100
      ApplicationRecombinant Protein A covalently bound to magnetic beads for use in chromatin immunoprecipitations (ChIP assays). These protein A beads provide users a more rapid, reproducible & efficient reagent for collecting immunocomplexes vs. agarose beads.
      Application NotesUse 20 µL of bead suspension per ChIP application. Includes sufficient reagents for 50 precipitation reactions. Disperse beads thoroughly before pipetting by rapid vortex.
      Biological Information
      Analytes Available
      • Protein A
      Physicochemical Information
      Particle Size~3 µm
      Volume1 mL
      Materials Information
      Toxicological Information
      Safety Information according to GHS
      Safety Information
      Product Usage Statements
      Quality AssuranceRoutinely evaluated by Chromatin immunoprecipitation (ChIP) using HeLa nuclear extracts and the Magna ChIP™ A Kit (Cat. #17-610).
      Usage Statement
      • Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
      Storage and Shipping Information
      Storage ConditionsStable for 1 year at 2-8°C from date of shipment. Do Not Freeze.
      Storage Temperature2 to 8 °C (Do not freeze)
      Packaging Information
      Material Size50 reactions
      Transport Information
      Supplemental Information
      Global Trade Item Number
      Catalogue Number GTIN
      16-661 04053252471063


      Required Licenses


      Magna ChIP™ Protein A Magnetic Beads SDS


      Safety Data Sheet (SDS) 

      Magna ChIP™ Protein A Magnetic Beads Certificates of Analysis

      TitleLot Number
      Magna ChIP Protein A Magnetic Beads - 2118052 2118052
      Magna ChIP Protein A Magnetic Beads - 2142717 2142717
      Magna ChIP Protein A Magnetic Beads -
      Magna ChIP Protein A Magnetic Beads - 1959257 1959257
      Magna ChIP Protein A Magnetic Beads - 1997492 1997492
      Magna ChIP Protein A Magnetic Beads - 2055308 2055308
      Magna ChIP Protein A Magnetic Beads - 2197315 2197315
      Magna ChIP Protein A Magnetic Beads - NG1650719 NG1650719
      Magna ChIP Protein A Magnetic Beads - NG1715097 NG1715097
      Magna ChIP Protein A Magnetic Beads - NG1725460 NG1725460


      Reference overviewPub Med ID
      The tumor suppressor p53 and histone deacetylase 1 are antagonistic regulators of the cyclin-dependent kinase inhibitor p21/WAF1/CIP1 gene.
      Lagger, Gerda, et al.
      Mol. Cell. Biol., 23: 2669-79 (2003)  2003

      Show Abstract
      12665570 12665570
      Distinct roles for Sp1 and E2F sites in the growth/cell cycle regulation of the DHFR promoter.
      Jensen, D E, et al.
      J. Cell. Biochem., 67: 24-31 (1997)  1997

      9328836 9328836


      Shaping Epigenetics Discovery - Epigenetics Product Selection Brochure

      Technical Info

      Getting started with ChIP-seq: experimental design to data analysis
      White Paper - The Message in the Marks: Deciphering Cancer Epigenetics