Topo Cloning procedure for cloning of small amounts DNA fragments by PCR. Cloning the PCR fragment into the TOPO vector, transforming E. Coli cells, and using blue/white selection to determine transformants. Culture inoculation, Qiagen Plasmid Prep protocol for plasmid isolation of the plasmid containing the cloned copies. Preuss Lab, Univ. Chicago. - [Read Topo Cloning Procedure]
Simple method for growing Neurospora and for isolation of DNA that may be performed in two days from start to finish. The growth of mycelia in Petri plates eliminates the need for large numbers of flasks when growing many cultures for DNA isolation. - [Read Ultra-Fast Method of DNA Extraction from Neurospora Protocol]
Procedure describes how it denatures most of the modification and degradation proteins immediately giving the most accurate read out of the true levels of protein at the time of harvest. However, in cases where detection is a problem, a limited purification (e.g. isolation of nuclear extract for the detection of transcription factors) might be required to allow analysis. - [Read Western Blot Analysis of Endogenous Gene Expression Protocol]
Protocol describes large-scale yeast RNA isolation. It is designed to yield more than 10 mg of total nucleic acid and 300-400 µg of poly(A)-selected mRNA from each 500-ml culture. - [Read Yeast RNA Isolation: Large-Scale Protocol]
Protocol describes rapid, small-scale yeast RNA isolation. It is based on the work of Schmitt et al. (1990). Note that all containers should be washed in Rnase Away (Invitrogen) or dry baked for 24 hours at 160°C. - [Read Yeast RNA Isolation: Small-Scale Protocol]
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.
A single step RNA isolation protocol using Phenol Chloroform Extraction and Acid Guanidinium Thiocyanate. This RNA isolation method uses the fact that guanidinium thiocyanate can simultaneously lyse the cells and inactive cellular RNAses during the initial RNA isolation step allow a single step in the method.
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.
This protocol describes the electroporation of the BMH 81-17 mut S strain that is recommended for tranformation of the site directed mutagenesis of dsDNA (See Protocol on Site-Directed Mutagenesis on Double Stranded DNA). BMH 81-17 mut S are a mismatch repair defective (mut S) Escherichia coli strain. The probability that the two mutations will cosegregate during the first round of DNA replication is increased in this strain.