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Invitrogen™ Phospho-Histone H3 (Ser10) Polyclonal Antibody

Description
Phospho-Histone H3 (Ser10) Antibody detects endogenous levels of histone H3 only when phosphorylated at Ser10; however, this antibody does not detect phosphorylated Ser10 when Lys9 is acetylated or methylated. This antibody does not cross-react with histone H3 phosphorylated at Ser28. This antibody is not cross-reactive with other phosphorylated histones or with acetylated histones.
Specifications
Specifications
| Antigen | Phospho-Histone H3 (Ser10) |
| Applications | Peptide Array, Flow Cytometry, Immunohistochemistry (Frozen), Immunohistochemistry (Paraffin), Western Blot, Immunocytochemistry |
| Classification | Polyclonal |
| Conjugate | Unconjugated |
| Formulation | 0.01M HEPES with 50% glycerol, 100μg/mL BSA, 0.15M NaCl and no preservative; pH 7.5 |
| Gene | H3C1 |
| Gene Accession No. | P68431, P68433, P84228, Q71DI3 |
| Gene Alias | BUR5; CG31613; CG31613-PA; CG33803; CG33806; CG33809; CG33812; CG33815; CG33818; CG33821; CG33824; CG33827; CG33830; CG33833; CG33836; CG33839; CG33842; CG33845; CG33848; CG33851; CG33854; CG33857; CG33860; CG33863; CG33866; CG5825; CG5825-PA; CG5825-PC; CG5825-PD; CG8989; dH3.3A; Dmel\CG31613; Dmel\CG5825; Dmel_CG31613; Dmel_CG5825; fb58e10; 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; H3.1-221; H3.1-291; H3.1-I; H3.2; H3.2-221; H3.2-614; H3.2-615; H3.2-616; h3.2a; H3.3; H3.3 histone A; H3.3 histone B; H3.3a; H3.3B; H3.5; H3.5 histone; H3.A; H3.B; 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; H3F3A protein; H3f3b; h3f3b.1; H3F3C; h3f3d; H3FA; H3FB; H3FC HIST1H3C; H3FD; H3FF; H3FH; H3FI; H3FJ; H3FK; H3FL; H3FM; H3FN; H3g; H3h; H3i; H3L-like histone; h3r; H3S10ph; H4 clustered histone 16; H4 clustered histone 19; H4C16; H4C19; HHT1; HHT2; His3; His3.3; His3.3A; His-3.3A; His3.3A-PA; His3.3A-PC; His3.3A-PD; His3.3B; His3:CG31613; His3:CG31613-PA; His3:CG33803; His3:CG33806; His3:CG33809; His3:CG33812; His3:CG33815; His3:CG33818; His3:CG33821; His3:CG33824; His3:CG33827; His3:CG33830; His3:CG33833; His3:CG33836; His3:CG33839; His3:CG33842; His3:CG33845; His3:CG33848; His3:CG33851; His3:CG33854; His3:CG33857; His3:CG33860; His3:CG33863; His3:CG33866; Hist1; Hist1h2ai; Hist1h2ail; Hist1h2ail1; HIST1H3A; HIST1H3B; Hist1h3c; HIST1H3D; Hist1h3e; Hist1h3f; Hist1h3g; hist1h3g.L; HIST1H3H; HIST1H3I; HIST1H3J; hist2h3; HIST2H3A; Hist2h3b; HIST2H3C; Hist2h3c1; Hist2h3c2; Hist2h3c2-ps; Hist2h3ca1; Hist2h3ca2; HIST2H3D; histone; histone 1, H2ai; 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 H3 family member a; histone cluster 1, H2ai; histone cluster 1, H2ai-like; histone cluster 1, H2ai-like1; histone cluster 1, H3a; histone cluster 1, H3b; histone cluster 1, H3f; histone cluster 1, H3g protein L homeolog; histone cluster 1, H3h; Histone Cluster 2 H3a; histone cluster 2, H3a; histone cluster 2, H3c; histone cluster 2, H3c2; histone cluster 2, H3c2, pseudogene; histone cluster 3, H3; histone gene complex 1; histone H3; Histone H3 containing protein; histone H3.1; Histone H3.2; histone H3.2-like; histone H3.3; Histone H3.3A; Histone H3.3B; Histone H3.3C; histone H3.3C-like; histone H3.3-like protein; 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 H3-like; histone H4; histone variant H3.5; hypothetical protein LOC406269; hypothetical protein LOC550262; I79_014844; lamprey; lpy; M32461; N2749; PH3; PP781; similar to H3 histone, family 3A; SIN2; Unknown (protein for MGC:128166); wu:fa25h06; wu:fa96g06; wu:fb07a08; wu:fb36f01; wu:fb58e10; XELAEV_18028537mg; YBR010W; YBR0201; YNL031C; zgc:110292; zgc:174300; zgc:56193; zgc:56418; zgc:64222; zgc:86731 |
| Gene Symbols | H3C1, H3C10, H3C12, H3C14, H3C15, H3C2, H3C7, h3c8.S, His3:CG31613, HIST1H3A |
| Host Species | Rabbit |
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Frequently Asked Questions (FAQs)
We recommend that hydrophobic residues comprise 50% or less of all the residues in your sequence. Make sure there is at least one charged residue for every five amino acids: this is generally known to enhance the solubility of the peptide. Peptides (compared to polypeptides, which fold and bury the hydrophobic amino acids) are too small to fold, so just a few hydrophobic amino acids may leave them insoluble.
Other guidelines include:
Peptides containing multiple Cys, Met, and Trp can be hard to synthesize.
Some sequences are problematic in solid-phase peptide synthesis or cleavage and are best avoided; these include Asp-Pro sequences or stretches of amino acids that require bulky protecting groups on their side chains during synthesis.
Glycine is often good for antigenicity as it has only a hydrogen side chain; this allows for complete rotation.
Please note that we offer a Custom Antibody Production service (https://www.thermofisher.com/us/en/home/life-science/antibodies/custom-antibodies/custom-antibody-production.html) that includes the use of our proprietary Antigen Profiler and Antigen Preparation tool (https://www.thermofisher.com/us/en/home/life-science/antibodies/custom-antibodies/custom-antibody-production/antigen-profiler-antigen-preparation.html).
Most peptide antigens range in length from 12 to 16 residues and are relatively easy to synthesize. Peptides of 9 residues or shorter have been effective antigens for antibody production, but peptides longer than 16 amino acids may contain several epitopes and form secondary structures. Peptides in excess of 18 residues begin to present more synthetic challenges. Before you synthesize your peptide, we recommend doing a BLASTP search using your peptide sequence. This is to make sure that the peptide is not homologous or identical to a sequence in a completely unrelated protein in the host animal.
Please note that we offer a Custom Antibody Production service (https://www.thermofisher.com/us/en/home/life-science/antibodies/custom-antibodies/custom-antibody-production.html) that includes the use of our proprietary Antigen Profiler and Antigen Preparation tool (https://www.thermofisher.com/us/en/home/life-science/antibodies/custom-antibodies/custom-antibody-production/antigen-profiler-antigen-preparation.html).
Improper storage of antibodies can lead to:
- Degradation: Loss of activity and specificity
- Aggregation: Formation of precipitates or clumps
- Reduced performance: Poor results in assays or experiments
Antibody pair kits contain capture antibody, detection antibody, recombinant standard and HRP conjugate. Each contains enough reagents to process forty 96-well plates. A list of Antibody Pair Kits (https://www.thermofisher.com/us/en/home/life-science/protein-biology/protein-assays-analysis/elisa/antibody-pair-kits.html) is available by target.
Reagent Sets contain Capture Antibody, Detection Antibody, Recombinant Standard, HRP Conjugate, TMB Substrate and Stop Solution. Each contains enough reagents to process five 96-well plates. Reagent Sets are included in the main list of ELISA (https://www.thermofisher.com/us/en/home/life-science/protein-biology/protein-assays-analysis/elisa/antibody-pair-kits.html) kits (search by Reagent Set).
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