Human HIST2H2BE (Histone H2B type 2-E) ELISA Kit

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Product specifications
Category | ELISA Kits |
Reactivity | Human |
Detection Method | Colorimetric |
Assay Data | 4 hours |
Assay Type | Sandwich ELISA, Double Antibody |
Test Range | 0.313-20ng/ml |
Sensitivity | 0.188ng/ml |
Size 1 | 96T |
Tested Applications | ELISA |
Sample Type | Serum, Plasma, Cell Culture Supernatant, cell or tissue lysate, Other liquid samples |
Availability | Shipped within 10-14 working days. |
Storage | 2-8 °C for 12 months |
UniProt ID | Q16778 |
Alias | Histone H2B type 2-E, H2B-clustered histone 21, Histone H2B-GL105, Histone H2B.q, H2B/q, H2BC21, H2BFQ, HIST2H2BE |
Background | Elisa kits for HIST2H2BE |
Status | RUO |
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Histone H2B Type 2-E (HIST2H2BE) Antibody
HIST2H2BE Antibody is a Rabbit Polyclonal antibody against HIST2H2BE. Histones are basic nuclear proteins that are responsible for the nucleosome structure of the chromosomal fiber in eukaryotes. Two molecules of each of the four core histones (H2A, H2B, H3, and H4) form an octamer, around which approximately 146 bp of DNA is wrapped in repeating units, called nucleosomes. The linker histone, H1, interacts with linker DNA between nucleosomes and functions in the compaction of chromatin into higher order structures. This gene encodes a member of the histone H2B family, and generates two transcripts through the use of the conserved stem-loop termination motif, and the polyA addition motif.
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Histone H2B Type 2-E (HIST2H2BE) Antibody
Histones are basic nuclear proteins that are responsible for the nucleosome structure of the chromosomal fiber in eukaryotes. Two molecules of each of the four core histones (H2A, H2B, H3, and H4) form an octamer, around which approximately 146 bp of DNA is wrapped in repeating units, called nucleosomes. The linker histone, H1, interacts with linker DNA between nucleosomes and functions in the compaction of chromatin into higher order structures. This gene encodes a member of the histone H2B family, and generates two transcripts through the use of the conserved stem-loop termination motif, and the polyA addition motif.
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