DNA digestion protocol & hints. Procedure and tips for restriction digestion. Doering laboratory, Department Molecular Microbiology, Washington University Medical School. - [Read DNA digestion protocol & hints PDF]
This protocol assays inhibition of in vivo binding of [3H]-cAMP to cAR1 by GTPγS. Dictyostelium discoideum respond to extracellular cAMP through the cAMP chemoattractant receptor (cAR1). Binding of cAMP to the G protein-coupled cAR1 is inhibited by the GTP analog GTPγS. Protocol includes information on: Solutions used, BioReagents and Chemicals and Protocol Hints. - [Read GTPγS-Induced Inhibition of cAMP Binding to the cAMP Receptor (cAR1) in Dictyostelium Discoideum]
Hints and precautions for the care, feeding and breeding of Neurospora. Includes: Crossing; Tips on handling ascospoes
General Laboratory Practices; Stockkeeping; Mutagenesis and enrichment; Tips for encouraging colonial growth; Solutions and media; Handling Heterokaryons. - [Read Hints and Precautions for the Care, Feeding and Breeding of Neurospora]
This protocol describes assaying kinase activity of a putative kinase using Histone H1 as the substrate. Histone H1 is the canonical kinase substrate in this type of assay. Phosphorylation of Histone H1 is assessed by SDS-Polyacrylamide gel electrophoresis followed by autoradiography. Includes information: H1 Kinase Assay on Individual Xenopus Oocytes; H1 Kinase Assay on Xenopus Egg Extract Samples; H1 Kinase Assay on Tissue Culture Cells; Helpful protocol hints. - [Read Histone H1 Kinase Activity Assay]
Protocol for in vitro transcription and translation using the coupled reticulocyte lysate system. This protocol is designed to test random samples on a protein gel. Scale up the reactions accordingly. Protocol includes: Procedure, Solutions, BioReagents and Chemicals and protocol hints. - [Read In Vitro Transcription and Translation Using the Coupled Reticulocyte Lysate System]
Protocol describes how to assay for kinase activity within a polyacrylamide gel, rather than in solution. The advantages to an in-gel assay are that an apparent molecular weight can be assigned to the kinase activity and that multiple kinase activities can be distinguished. Includes protocol hints. - [Read In-Gel Kinase Assay]
Protocol describes how tagged Mos kinase is translated in vitro, immunopurified, and used in a kinase assay. Protocol includes: Translation of Xenopus Mos Kinase; Antibody to Antigen Binding; Protein A Sepharose to Antibody Binding; Kinase Reactions on Immunoprecipitated Material; Polyacrylamide Gel Analysis of Immunoprecipitates. Includes protocol hints. - [Read Kinase Assay Using In Vitro Translated Xenopus Mos Kinase]
Protocol for preparation of KC nuclear extract for in vitro splicing. Protocol makes 3.4 ml of extract for every 4 liter of cells (depending on initial cell concentration). Protocol includes: Procedure, Solutions, BioReagents and Chemicals and protocol hints. - [Read Preparation of KC Nuclear Extract for In Vitro Splicing]
This protocol uses mitogen-activated protein/ERK kinase (MEK) to activate the extracellular-signal-regulated (Erk) mitogen-activated protein (MAP) kinases upon agonist binding to receptors. Protocol includes information about: Harvest, Immunoprecipitation and Kinase Reaction. Also includes following solutions: Laemmli Sample Buffer (1X), ATP Mix, Kinase Buffer (10X), Lysis Buffer. Helpful protocol hints are also included. - [Read Raf-1 Kinase Assay]
Tips and hints for the storage of antibodies. Includes: Storage of lyophilized antibodies; Monoclonal antibodies; Rabbit antisera; Polyclonal affinity purified antibodies. - [Read Tips and Hints for the Storage of Antibodies]
A Single Stranded Plasmid DNA Isolation Protocol describing the production and isolation of single-stranded DNA (ssDNA) using bacteriophagemid-containing bacteria and helper phage. Infection of the host cells with helper phage allows for packaging of ssDNA into bacteriophage. The ssDNA can then be isolated from phage particles.
This Microarray Protocol Preparation of Fluorescent DNA Probes from Human mRNA protocol describes the production of probes labeled with the fluorescent dyes, Cy3 and Cy5, following the synthesis of cDNA from human mRNA and the hybridization of the probes to DNA microarrays.
The DNA Ligation protocol described here contains the steps required to join together using ligase enzyme both plasmid DNA and insert DNA fragments in order to create a new plasmid. This new ligated plasmid can be transformed after into competent bacteria to produce DNA for mini, midi or maxi-prep isolation.