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Invitrogen™ H3K9me3 Recombinant Superclonal™ Antibody (23HCLC), ChIP-Verified

Rabbit Recombinant Superclonal Antibody

$189.00 - $526.00

Specifications

Antigen H3K9me3
Clone 23HCLC
Concentration 0.5 mg/mL
Content And Storage Store at 4°C short term. For long term storage, store at -20°C, avoiding freeze/thaw cycles.
Applications Peptide Array, ChIP Assay, Western Blot, Immunocytochemistry
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Products 2
Catalog Number Mfr. No. Quantity Price Quantity & Availability  
Catalog Number Mfr. No. Quantity Price Quantity & Availability  
71-300-8
Encompass_Preferred
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Invitrogen™
713008
100 μg
Each for $526.00
Only null left
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71300820UG
Encompass_Preferred
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Invitrogen™
71300820UG
20 μg
Each for $189.00
Only null left
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Description

Description

Recombinant rabbit Superclonal™ antibodies are unique offerings from Thermo Fisher Scientific. They are comprised of a selection of multiple different recombinant monoclonal antibodies, providing the best of both worlds - the sensitivity of polyclonal antibodies with the specificity of monoclonal antibodies - all delivered with the consistency only found in a recombinant antibody. While functionally the same as a polyclonal antibody - recognizing multiple epitope sites on the target and producing higher detection sensitivity for low abundance targets - a recombinant rabbit Superclonal™ antibody has a known mixture of light and heavy chains. The exact population can be produced in every lot, circumventing the biological variability typically associated with polyclonal antibody production. This antibody is predicted to react with Rat and Bovine. Note: Formerly called Recombinant polyclonal antibody, this product is now rebranded as Recombinant Superclonal™ antibody. The physical product and the performance remain unchanged.

Histone H3 is one of the DNA-binding proteins found in the chromatin of all eukaryotic cells. H3 along with four core histone proteins binds to DNA forming the structure of the nucleosome. Histones play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. Post translationally, histones are modified in a variety of ways to either directly change the chromatin structure or allow for the binding of specific transcription factors. The N-terminal tail of histone H3 protrudes from the globular nucleosome core and can undergo several different types of post-translational modification that influence cellular processes. These modifications include the covalent attachment of methyl or acetyl groups to lysine and arginine amino acids and the phosphorylation of serine or threonine.
Specifications

Specifications

H3K9me3
0.5 mg/mL
Peptide Array, ChIP Assay, Western Blot, Immunocytochemistry
Unconjugated
Rabbit
RUO
PBS with 0.09% sodium azide; pH 7.4
P68431, P68433, P84228, Q71DI3
126961, 260423, 319150, 319152, 333932, 360198, 8350, 8356, 8357, 8358, 8968, 97114
Peptide corresponding to human H3K9me3 [aa5-aa12].
Antibody
23HCLC
Store at 4°C short term. For long term storage, store at -20°C, avoiding freeze/thaw cycles.
Recombinant Superclonal
Liquid
IgG
Human, Mouse
H3C15
B0035.7; CELE_T10C6.12; F07B7.10; F07B7.3; F08G2.2; F17E9.13; F35H10.1; F45F2.4; F54E12.5; F55G1.10; H02I12.7; H3; H3 histone; H3 histone family, member A; H3 histone family, member I; H3 histone family, member K; H3 histone family, member L; H3 histone family, member M; H3 histone, family 2; H3 histone, family 3A; H3 histone, family 3B; H3 histone, family 3B (H3.3B); H3 histone, family 3B.1; H3 histone, family 3C; H3 K9; H3.1-221; H3.1-291; H3.1-I; H3.2; H3.2-221; H3.2-614; H3.2-615; H3.2-616; H3.3A; H3.3B; H3.5; H3/A; H3/b; H3/d; H3/f; H3/i; H3/j; H3/k; H3/l; H3/M; H3/n; H3/o; H3-143; H3-291; H3-3A; H3-3B; h3-5; H3-53; H3-614; H3a; H3b; H3-B; H3c1; H3c10; H3C11; H3C12; H3C2; H3C3; H3C4; H3C6; H3C7; H3C8; H3f; H3-F; H3F1K; H3F2; H3F3; h3f3a; H3F3B; h3f3b.1; h3f3c; h3f3d; H3FA; H3FB; H3FC HIST1H3C; H3FD; H3FF; H3FH; H3FI; H3FJ; H3FK; H3FL; H3FM; H3FN; H3g; H3h; H3i; H3K9; H3Lys9me3; his-12; his-16; his-19; his-21; his-3; his-30; his-33; his-43; his-47; his-51; his-53; his-57; his-61; his-65; his-68; his-7; Hist1; Hist1h3a; HIST1H3B; Hist1h3c; Hist1h3d; HIST1H3E; Hist1h3f; HIST1H3G; Hist1h3h; HIST1H3I; HIST1H3J; HIST2H3A; Hist2h3b; HIST2H3C; Hist2h3c1; Hist2h3c2; Hist2h3c2-ps; Hist2h3ca1; Hist2h3ca2; HIST2H3D; histone 1, H3a; histone 1, H3b; histone 1, H3f; histone 1, H3h; histone 2, H3a; histone 2, H3c; histone 2, H3c2; histone 2, H3ca2; Histone 3; histone cluster 1, H3a; histone cluster 1, H3b; histone cluster 1, H3f; histone cluster 1, H3h; histone cluster 2, H3a; histone cluster 2, H3c; histone cluster 2, H3c2; histone cluster 2, H3c2, pseudogene; histone gene complex 1; Histone H2A; histone H3; histone H3.1; Histone H3.2; histone H3.3; Histone H3.3C; histone H3.5; Histone H3/a; Histone H3/b; Histone H3/c; Histone H3/d; Histone H3/f; Histone H3/h; Histone H3/i; Histone H3/j; Histone H3/k; histone H3/l; Histone H3/m; histone H3/o; Histone H3K9me3; histone variant H3.5; hypothetical protein LOC550262; K06C4.11; K06C4.3; M32461; methyl Histone 3; methyl Histone H3; PP781; T10C6.12; T23D8.6; Trimethyl H3; Tri-methyl H3; Trimethyl Histone H3; Tri-methyl Histone H3; Tri-Methyl-H3 K9; Tri-Methyl-H3 Lys9; Tri-Methyl-Histone H3 K9; Tri-Methyl-Histone H3 Lys9; wu:fa25h06; wu:fa96g06; wu:fb07a08; wu:fb36f01; zgc:110292; zgc:174300; zgc:56193; zgc:56418; zgc:64222; zgc:86731; ZK131.10; ZK131.6
H3C1, H3C10, H3C12, H3C14, H3C15, H3C2, H3C7
Primary
Protein A
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