A Strategy for the Rapid Identification of
Phosphorylation Sites in the
Phosphoproteome. MacDonald et al., Molecular & Cellular Proteomics. 2002. - [Read A Strategy for the Rapid Identification of]
Protocol is based on methods for the resolution of GLUT4
containing vesicles and the identification of phosphoinositide kinase containing vesicles in 3T3-L1 adipocytes. They may have a wider application to any low-medium density membranes. Protocol incorporates the strategy of using a low density microsome fraction as the gradient input, commonly
used in GLUT 4 studies that may have a wider application to other investigations. - [Read Analysis of Membrane Trafficking and Intracellular Signaling in Self-Generated Iodixanol Gradients]
Antigen Design and Sera Purification. Custom antisera. Sigma Aldrich. Peptide Selection and Design, Coupling Strategy
# Selecting the Protein Carrier, Multiple Antigenic Peptides (MAPs), Choice of Host, Adjuvant, Immunization, & Sera Collection, Antisera Purification, Ammonium Sulfate Precipitation, Protein A/G, Immunoaffinity Purification. - [Read Antigen Design and Sera Purification]
The protocol presented in this Application Sheet uses an alternative strategy to sedimentation on to a density barrier, that is to adjust the density of whole blood to a value just greater than the cells of interest and allow them to float to the surface. - [Read C8 Isolation of bovine peripheral blood mononuclear cells by flotation.]
Protocol for dealing with carryover contamination in PCR- enzymatic strategy. Repeated use of PCR and manipulation of its products cause aerosols that can contaminate neighboring samples and work areas. Such "carryover contamination" can be prevented by including dUTP in place of dTTP for all amplification reactions. - [Read Dealing with Carryover Contamination in PCR: An Enzymatic Strategy Protocol]
Novel strategy of immunizing a phosphorylated peptide or a synthetic phosphopeptide, which corresponds to the protein phosphorylated at a targeted residue. Method has been applied to the production of antibodies that can specifically recognize the other types of site-specific protein modification, such as acetylation, methylation, and proteolysis. - [Read Functional Analyses for Site-Specific Phosphorylation of a Target Protein in Cells]
Isolation of Infectious HIV-1 Protocol- http://www.miltenyibiotec.com/skripte/pdf.php?mm_id=516&session_id=2fcdee70b1da5252291e83a27e1c76a9&ip=222.165.176.129
Protocol for the isolation of infectious HIV-1. Includes: HIV-1 capture strategy; Protocol for the isolation of HIV-1 virions; Magnetic labeling; Magnetic separation; Elution option A for virion lysate; Elution option B for intact virions. - [Read Isolation of Infectious HIV-1 Protocol]
Describes the isolation of resting B lymphocytes (B cells) from mouse spleens by using negative selection with anti-CD43 and anti-Mac-1/CD11b monoclonal antibodies coupled to magnetic microbeads. This strategy depletes non-B cells from a mixed population of splenocytes and relies on the fact that most mature leukocytes, with the exception of resting splenic B cells, express CD43. - [Read Isolation of Resting B Lymphocytes from One or More Groups of Four Mouse Spleens Protocol]
Protocol describes the isolation of resting B lymphocytes (B cells) from mouse spleens by using negative selection with anti-CD43 and anti-Mac-1/CD11b monoclonal antibodies coupled to magnetic microbeads. This strategy depletes non-B cells from a mixed population of splenocytes and relies on the fact that most mature leukocytes, with the exception of resting splenic B cells, express CD43. - [Read Isolation of Resting B Lymphocytes from Sixteen Mouse Spleens Protocol]
Describes the isolation of resting B lymphocytes (B cells) from mouse spleens by using negative selection with anti-CD43 and anti-Mac-1/CD11b monoclonal antibodies coupled to magnetic microbeads. This strategy depletes non-B cells from a mixed population of splenocytes and relies on the fact that most mature leukocytes, with the exception of resting splenic B cells, express CD43. - [Read Isolation of Resting B Lymphocytes from Sixteen Mouse Spleens Protocol]
This procedure describes the isolation of resting B lymphocytes (B cells) from mouse spleens by using negative selection with anti-CD43 and anti-Mac-1/CD11b monoclonal antibodies coupled to magnetic microbeads. This strategy depletes non-B cells from a mixed population of splenocytes and relies on the fact that most mature leukocytes, with the exception of resting splenic B cells, express CD43. - [Read Isolation of Resting B Lymphocytes Protocol]
This protocol describes the preparation of polyethylenimine (PEI)/DNA nanoparticles for targeted gene delivery. This delivery strategy improves the efficiency of gene transfer by enhancing the entry of gene vectors into the desired cells and reducing uptake by nontarget cells. We describe here methods for the conjugation of targeting peptides to PEIs, formation of DNA complexes using the conjugated PEIs or nonconjugated PEIs together with targeting peptides, and cell transfection. - [Read PEI Nanoparticles for Targeted Gene Delivery Protocol]
Peptide Handling Guides. Storage Guidelines for Lyophilized Peptides, Strategy for Dissolving Single Peptides, Determining Solubility Characteristics of peptides, Dissolving Approach for Charged Peptides, Dissolving Approach for Hydrophobic/Uncharged Peptides, Guidelines for Dissolving Several Peptides, Peptide Stability and Potential Degradation Pathways, and storage of peptides. Sigma Aldrich. PDF. - [Read Peptide Handling Guides]
Protocol describes a split luciferase complementation assay used to study the interaction of proteins in cells. In the split protein strategy, a single reporter protein/enzyme (firefly luciferase [Fluc]) is cleaved into amino-terminal and carboxy-terminal halves; each half is fused to one of two interacting proteins, X & Y. Physical interactions between the two proteins reconstitute the functional reporter protein, leading to enzymatic activities that can be measured by in vitro or in vivo assay - [Read Split Luciferase Complementation Assay for Studying Interaction of Proteins X and Y in Cells]