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Questions? Please consult our answers to frequently asked questions at http://www.ebioscience.com/faq. DescriptionMouse IgG TrueBlotTM ULTRA is a unique horseradish peroxidase conjugated anti-mouse IgG immunoblotting (second step) reagent. Mouse IgG TrueBlotTM ULTRA enables detection of immunoblotted target protein bands, without hindrance by interfering immunoprecipitating immunoglobulin heavy and light chains. It is easy to generate publication-quality IP/WB data with Mouse IgG TrueBlotTM ULTRA, simply substitute the conventional HRP anti-mouse IgG blotting reagent with Mouse IgG TrueBlotTM ULTRA and follow the prescribed protocol for sample preparation and immunoblotting. Note that there are three key procedural considerations: 1. Protein A or G beads may be used with the mouse, goat and sheep TrueBlot secondaries but not with the rabbit TrueBlot secondary. Use of protein A or G beads with the rabbit TrueBlot will result in contaminating bands. 2. Immunoprecipitate should be completely reduced. 3. Milk should be used as the blocking protein for the immunoblot. Components:
Applications ReportedFor research use only, not for diagnostic or therapeutic use. Applications TestedMouse IgG TrueBlot™ ULTRA is ideal for use in protocols involving immunoblotting of immunoprecipitated proteins. TrueBlot™ preferentially detects the non-reduced form of mouse IgG over the reduced, SDS-denatured form of IgG. When the immunoprecipitate is fully reduced immediately prior to SDS-gel electrophoresis, reactivity of Mouse IgG TrueBlot™ ULTRA with the 55 kDa heavy chains and the 23 kDa light chains of the immunoprecipitating antibody is minimized thereby eliminating interference by the heavy and light chains of the immunoprecipitating antibody in IP/immunoblotting applications. Applications include studies examining post-translational modification (e.g., phosphorylation or acetylation) or protein-protein interactions. Special Notes
Upon initial use of the IP beads, we recommend that the vial be inverted several times to get the beads into suspension. We recommend to use a large bore pipet to pipet up the liquid for use. For storage of the opened vial of beads, we recommend that the vial cap be sealed with parafilm to help prevent evaporation of the buffer. References
Kong, D., L. Xu, Y. Yu, W. Zhu, D.W. Andrews, Y. Yoon, and T.H. Kuo. 2005. Regulation of Ca2+-induced permeability transition by BCL-2 is antagonized by Drp1 and hFis1. Molecular and Cellular Biochemistry. 272: 187-199. (Rabbit IgG TrueBlot, PubMed) DiPerna, G., J. Stack, A.G. Bowie, A. Boyd, G. Kotwal, Z. Zhang, S. Arvikar, E. Latz, K.A. Fitzgerald, and W.L. Marshall. 2004. Poxvirus protein N1L targets the I-κB Kinase complex, inhibits signaling to NF-κB by the Tumor Necrosis Factor superfamily of receptors, and inhibits NF-κB and IRF3 signaling by Toll-like Receptors. J. Biol. Chem. 279: 36570-36578. (Rabbit IgG TrueBlot, PubMed) Zhang, X., Y. Ozawa, H. Lee, Y. Wen, T. Tan, B. Wadzinski, and E. Seto. 2005. Histone deacetylase 3 (HDAC3) activity is regulated by interaction with protein serine/threonine phosphatase 4. Genes & Development. 19: 827-839. (Rabbit IgG TrueBlot, PubMed) Lehtonen, S., E. Lehtonen, K. Kudlicka, H. Holthöfer, and M.G. Farquhar. 2004. Nephrin Forms a Complex with Adherens Junction Proteins and CASK in Podocytes and in Madin-Darby Canine Kidney Cells Expressing Nephrin. Am J Pathol. 165:923-936. (Rabbit IgG TrueBlot, PubMed) Tyagi A, Agarwal C, Harrison G, Glode LM, Agarwal R. 2004. Silibinin causes cell cycle arrest and apoptosis in human bladder transitional cell carcinoma cells by regulating CDKI-CDK-cyclin cascade, and caspase 3 and PARP cleavages. Carcinogenesis. 25: 1711-20. (Mouse IgG TrueBlot, PubMed) Okoshi Y, Tahara-Hanaoka S, Nakahashi C, Honda S, Miyamoto A, Kojima H, Nagasawa T, Shibuya K, Shibuya A. 2005. Requirement of the tyrosines at residues 258 and 270 of MAIR-I in inhibitory effect on degranulation from basophilic leukemia RBL-2H3. Int Immunol. 17(1):65-72. (Mouse IgG TrueBlot, PubMed) Murray, J., M.F. Marusich, R.A. Capaldi, and R. Aggeler. 2004. Focused proteomics: Monoclonal antibody-based isolation of the oxidative phosphorylation machinery and detection of phosphoproteins using a fluorescent phosphoprotein gel stain. Electrophoresis. 25:2520-2525. (Mouse IgG TrueBlot, PubMed) Hamdane, M., A. Bretteville, A. Sambo, K. Schindowski, S. Begard, A. Delacourte, P. Bertrand, and L. Buee. 2005. p25/Cdk5-mediated retinoblastoma phosphorylation is an early event in neuronal cell death. Journal of Cell Science. 118: 1291-1298. (Rabbit and Mouse IgG TrueBlot, PubMed) Related ProductsCat. 88-1488 Goat TrueBlot™ Set (includes 2.5 ml IP Beads, binds 1.0mg Ig/ml beads) Cat. 88-1688 Rabbit TrueBlot™ Set (includes 2.5 ml IP Beads, binds 2.5mg Ig/ml beads) Cat. 00-8811 TrueBlot™ anti-Mouse Ig IP Beads (Binds 0.4mg Ig/ml beads) Cat. 18-8814 Goat TrueBlot™: Horseradish Peroxidase (HRP) anti-goat IgG Cat. 18-8816 Rabbit TrueBlot™: Horseradish Peroxidase (HRP) anti-rabbit IgG Cat. 18-8817 Mouse TrueBlot™ ULTRA: Horseradish Peroxidase (HRP) anti-mouse IgG Experimental ProceduresProcedure: Preparation of Immunoprecipitated Sample for SDS-PAGE
Procedure: Immunoblotting (Western Blotting, WB)
Other Procedural Notes1. Titration of primary IP antibody. Titration of the immunoprecipitating antibody is recommended (e.g., 1-5 µg / 107 cells / 1 ml lysate). Typically, 2 µg is a sufficient amount of antibody to maximally immunoprecipitate most antigens in 1 ml of extract from 1 x 107 cells. Using as little IP antibody as possible minimizes potential contamination of SDS reduced sample with nonreduced immunoprecipitating antibody light chain. 5 µg of immunoprecipitating antibody per ml of extract from 0.5 x 107 - 1.0 x 107 cells yields sample loads of 0.5-1.5 µg immunoprecipitating antibody and precipitates from1 x 106- 3 x 106 cells. Mouse IgG TrueBlot™ will not improve the specificity of immunoblotting antibody. If the immunoblotting antibody cross-reacts with proteins other than the target, the bound immunoblotting antibody will be detected by TrueBlot™. 2. Blocking the immunoblot. Mouse IgG TrueBlot™ has been extensively tested in blotting conditions that employ 5% (w/v) nonfat milk powder for blocking, 5% (w/v) nonfat milk powder for immunoblotting with primary antibody, and 5% (w/v) nonfat milk powder for incubation with TrueBlot™. Blocking solution is made from 25 mM Tris, pH 7.3, 0.15 M NaCl, and 0.1% Tween-20. Always readjust pH to 7.3 after addition of nonfat milk powder, which acidifies the buffer. Use of other proteins for blocking and incubation with immunoblotting antibody and TrueBlot™ is not recommended. The use of BSA for blocking is specifically not recommended. 3. Positive control. Mouse IgG TrueBlot™ will detect SDS-denatured, non-reduced mouse IgG. A 20 ng sample of non-reduced, immunoprecipitating antibody can be included in the immunoblot as a positive control to ensure positive performance of TrueBlot™. 4. Negative control. Sample containing 0.5-2.0 µg of reduced mouse IgG (prepared and run immediately as described in Sample Preparation) can be included as a negative control to ensure that TrueBlot™ does not detect the heavy and light chain of the immunoprecipitating antibody. Other potential controls include omitting the cell extract during the IP, omitting the IP antibody during the IP, or omitting the immunoblotting antibody. 5. SDS-PAGE. Mouse IgG TrueBlot™ has been tested in procedures that employed anti-oxidant in the running buffer, staining of the membrane with Ponceau S Solution (Sigma) followed by destaining with 20% acetic acid/30% methanol, and air drying the membrane for 1 hour at room temperature after transfer and then rewetting in methanol and equilibration in Buffer A (described in Immunoblotting Protocol) before blocking. These modifications of the protocol gave results identical to the Immunoblotting Protocol. The Immunoblotting Protocol has not included these variations. Additional information: For updated information on this product. Experimental Example
Caspase-7 was immunoprecipitated from 5x106 Jurkat cells using 5 µg mouse anti-caspase-7 (Cat. No. 14-6697) and 50 µl of packed protein-G beads (Amersham). Immunoprecipitate was solubilized in 100 µl NuPAGE LDS sample buffer (Invitrogen) containing NuPAGE samples reducing agent (dithiothreitol) (Invitrogen). Beads were pelleted and 10 µl, corresponding to antigen immunoprecipitated from 5x105 cells and 0.5 µg immunoprecipitating antibody, were electrophoresed on 4-12% minigels (Invitrogen) and transferred to Immobilon-P membranes (Millipore). Membranes were blocked with 5% lowfat dry milk in Buffer A (25 mM Tris, pH 7.3, 0.15 M NaCl, 0.1% Tween-20) for 1 hour at room temperature. Caspase-7 was immunoblotted with 2 µg anti-caspase-7 per ml in 10 ml of Buffer A containing 2% milk for 2 hours at room temperature. After washing with Buffer A the membranes were incubated with Mouse IgG TrueBlot™ at a dilution of 1:1,000 in Buffer A containing 2% milk for 1 hour at room temperature. Membranes were washed with Buffer A and developed with ECL reagent (Amersham) and exposed to film. Troubleshooting
TrueBlot™ is a Trademark of eBioscience - Patent Pending |
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Copyright © 2000-2008 eBioscience, Inc. Product For Research Use Only: Not for further distribution without written consent. |