DNA-RNA Hybrid Antikörper
Kurzübersicht für DNA-RNA Hybrid Antikörper (ABIN7880638)
Target
Reaktivität
Wirt
Klonalität
Konjugat
Applikation
Klon
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Verwendungszweck
- DNA-RNA Hybrid Antibody
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Aufreinigung
- Protein G affinity
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Immunogen
- A DNA-RNA heteropolymer duplex prepared by transcription of phi X174 single-stranded DNA with DNA-dependent RNA polymerase was used as the immunogen for the DNA-RNA Hybrid antibody.
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Isotyp
- IgG2a, kappa
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Applikationshinweise
- Optimal dilution of the DNA-RNA Hybrid antibody should be determined by the researcher.
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Beschränkungen
- Nur für Forschungszwecke einsetzbar
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Format
- Liquid
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Konzentration
- 0.2 mg/mL
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Buffer
- 0.2 mg/mL in 1X PBS with 0.1 mg/mL BSA (US sourced), 0.05 % sodium azide
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Konservierungsmittel
- Sodium azide
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Vorsichtsmaßnahmen
- This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
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Lagerung
- -20 °C
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Informationen zur Lagerung
- Aliquot the DNA-RNA Hybrid antibody and store frozen at -20oC or colder. Avoid repeated freeze-thaw cycles.
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- DNA-RNA Hybrid
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Hintergrund
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We have not tested this antibody in-house in Immunofluorescence, CHIP, Immunocytochemistry, Immunoprecipitation or Flow Cytometry. All application recommendations come from publications using this clone.
DNA-RNA hybrids are a natural occurrence within eukaryotic cells and their level are high at sites of high transcriptional activity. They are non-canonical nucleic acid structures with transcriptional regulatory functions. Their presence is reported to predispose a locus to chromosomal breakage. A locus forming an DNA:RNA creates a double-stranded A/B intermediate conformation, with a second target for single-stranded nucleic acid binding proteins on the complementary, displaced DNA strand. They are shown to be resistant to the activity of DNA methyltransferases. The formation of DNA:RNA hybrids has been associated with a number of neurological diseases. Mutations in the DNA:RNA helicase senataxin (SETX) are implicated in the dominant juvenile form of amyotrophic lateral sclerosis type 4 and a recessive form of ataxia oculomotor apraxia type 2. Clone S9.6 bound the DNA-RNA heteropolymer and poly(I)-poly(dC) equally, but 100-fold higher levels of poly(A)-poly(dT) were required to achieve a similar degree of binding. Single-stranded DNA, double-stranded DNA and RNA, and ribosomal RNA were not bound by clone S9.6 (Boguslawski, S.J., et al. (1986). J. Immunol Methods. 89(1):123-130).
Target
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