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Invitrogen™ HSP70 Monoclonal Antibody (5A5)

Description
MA3-007 detects several members of the heat shock protein 70 kDa (HSP70) gene family including HSP70, HSC70, GRP78, and following heat shock, HSP72 from yeast, rat, Drosophila, fish, mouse, avian, amphibian and human samples. MA3-007 has been successfully used in Western blot, immunofluorescence, gel shift, immunohistochemistry (frozen), and immunoprecipitation procedures. By Western blot, this antibody detects proteins from ~70 kDa to ~78 kDa representing different members of the HSP70 family. 2-dimensional gel electrophoresis is required to resolve the heat induced form of these proteins from their constitutively expressed counterparts. Immunofluorescence staining of HSP70 in heat shocked HeLa cells with MA3-007 results in cytoplasmic staining. The MA3-007 antigen is recombinant human HSP70 over-expressed in E. coli. Epitope mapping with a panel of HSP70 deletion mutants suggests that the epitope recognized is located between amino acids 122-264 of human HSP70, a region that has been shown to be involved in ATP binding. This is the first monoclonal antibody reported to react with: 1) the ATP binding region of HSP70, 2) an epitope in the amino terminus of HSP70.
Specifications
Specifications
| Antigen | HSP70 |
| Applications | Gel Shift, Immunohistochemistry (Frozen), Immunohistochemistry (Paraffin), Immunoprecipitation, Western Blot, Immunocytochemistry |
| Classification | Monoclonal |
| Clone | 5A5 |
| Concentration | 1.0 mg/mL |
| Conjugate | Unconjugated |
| Formulation | PBS with 1mg/mL BSA and 0.05% sodium azide |
| Gene | HSPA1B |
| Gene Accession No. | O88600, P0DMV8, P0DMV9, P0DMW0, P0DMW1, P14659, P16627, P17156, P17879, P34931, P34932, P54652, P55063, P82910, Q2TFN9, Q61316, Q61696, Q7YQC6, Q9BIS2 |
| Gene Alias | 68 kDa heat shock protein; 70 kda heat shock protein-2; 70 kilodalton heat shock protein; 87A; 87A locus; 87C locus; Bb; CG18743; CG31359; CG31359-PA; CG31366; CG31366-PA; CG31449; CG6489; chaperone; dHSP70; dhsp70Aa; Dmel\CG31359; Dmel\CG31366; Dmel_CG31359; Dmel_CG31366; Dm-hsp70; DmHSP70AA; DMHSP7D1; dnaK-type molecular chaperone HSP70-1; epididymis secretory protein Li 103; Hcp70.1; heat shock 10kDa protein 1-like; heat shock 70; heat shock 70 kD protein 1; heat shock 70 kD protein 2; heat shock 70 kDa protein 1; heat shock 70 kDa protein 1/2; heat shock 70 kDa protein 1A; heat shock 70 kDa protein 1A/1B; heat shock 70 kDa protein 1B; Heat shock 70 kDa protein 1-Hom; Heat shock 70 kDa protein 1L; heat shock 70 kDa protein 1-like; heat shock 70 kDa protein 2; Heat shock 70 kDa protein 3; heat shock 70 kDa-like protein 1; heat shock 70kD protein 1A; heat shock 70kD protein 1B; heat shock 70kD protein 1B (mapped); heat shock 70kD protein-like 1; heat shock 70kDa protein 1A; heat shock 70kDa protein 1B; heat shock 70kDa protein 1-like; heat shock cognate 70-kd protein, tandem duplicate 2; Heat shock protein; heat shock protein 1A; heat shock protein 1B; heat shock protein 1-like; heat shock protein 70; heat shock protein 70.1; heat shock protein 70.2; heat shock protein 70-1; Heat shock protein 70-1l; Heat shock protein 70Aa; Heat shock protein 70Ab; Heat shock protein 70Ba; Heat shock protein 70Bb; Heat shock protein 70Bc; heat shock protein cognate 70, testis; heat shock protein family A (Hsp70) member 1 like; heat shock protein family A (Hsp70) member 1A; heat shock protein family A (Hsp70) member 1B; heat shock protein, 70 kDa 1; heat shock protein, 70 kDa 3; heat shock protein-70; heat shock-induced protein; heat shock-related protein hsc70t; heat-shock 70-kilodalton protein 1A; heat-shock 70-kilodalton protein 1B; heat-shock protein 70; Heat-shock-protein-70Aa; Heat-shock-protein-70Bb; HEL S 103; HEL-S-103; hs70; Hsc70t; HSP; Hsp 70; hsp68; Hsp70; Hsp-70; HSP70 1; HSP70 1B; HSP70 2; hsp70 87A; hsp70 87C; hsp70 Aa; HSP70 AceyltK77; hsp70(87A); Hsp70(87C); HSP70.1; HSP70.1/2; HSP70.1/HSP70.2; HSP70.2; Hsp70.3; HSP70-1; HSP70-1/HSP70-2; HSP70-1A; HSP70-1B; HSP70-1L; HSP70-2; Hsp70-3; HSP70-87A7; HSP70-87C1; hsp70a; hsp70A1; Hsp70A7d; Hsp70Aa; Hsp-70Aa; Hsp70Aa-PA; Hsp70Ab; Hsp70B; Hsp70Ba; Hsp70Bb; Hsp70Bbc; Hsp70Bb-PA; Hsp70Bc; HSP70-HOM; HSP70I; HSP70T; HSP72; Hspa1; Hspa1a; HSPA1B; Hspa1l; Hspa2; HSPA4; Hspa70; HSX70; hum70t; inducible heat shock protein 70; LP05203p; LP05233p; LP08776p; Major heat shock 70 kDa protein Aa; Major heat shock 70 kDa protein Ab; Major heat shock 70 kDa protein Ba; Major heat shock 70 kDa protein Bb; Major heat shock 70 kDa protein Bc; Msh5; protein 70; si:ch73-46h18.6; si:dkeyp-69e1.1; Spermatid-specific heat shock protein 70; zgc:174006 |
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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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