This unit provides two protocols for extraction of RNA from yeast that differ primarily in the method for lysing the yeast cells. The first protocol isolates RNA directly from intact yeast cells by extraction with hot acidic phenol. This yields RNA that is relatively free of contaminating DNA, is convenient to perform with multiple samples, and gives little or no sample-to-sample variation. In contrast, an alternate protocol relies upon disruption of cells by vigorous mixing with glass beads and denaturing agents. Although this procedure results in efficient breaking of the cells, the product is associated with residual DNA, and the procedure itself is troublesome when one is working with multiple samples. A second alternate protocol descri...
Since its introduction, the 'single-step' method has become widely used for isolating total RNA from...
A method for isolation of large, translationally active RNA species is presented. The procedure invo...
Yield and quality are fundamental features for any researchers during nucleic acid extraction. Here,...
This unit provides two protocols for extraction of RNA from yeast that differ primarily in the metho...
Most methods for isolation of RNA from yeast require tedious vortexing with glass beads, and give lo...
Most methods for isolation of RNA from yeast require tedious vortexing with glass beads, and give lo...
Most procedures for isolating RNA from eukaryotic cells involve lysing and denaturing cells to liber...
Current methods for isolating RNA from budding yeast require lengthy and laborious steps such as fre...
This procedure is a modification of the original method published by Chirgwin et al. (1). The follow...
A new method of total RNA isolation by a single extraction with an acid guanidinium thiocyanate-phen...
Good quality ribonucleic acid (RNA) needs to be obtained in order to study gene expression. Differen...
Purification of RNA polymerase (Pol) I is essential for functional as well as for structural studies...
Good quality RNA needs to be obtained in order to study gene expression. Different RNA extraction me...
The protocol described in this unit is a fast and streamlined procedure for preparing total cytoplas...
Abstract Background Obtaining sufficient RNA yield and quality for comprehensive transcriptomic stud...
Since its introduction, the 'single-step' method has become widely used for isolating total RNA from...
A method for isolation of large, translationally active RNA species is presented. The procedure invo...
Yield and quality are fundamental features for any researchers during nucleic acid extraction. Here,...
This unit provides two protocols for extraction of RNA from yeast that differ primarily in the metho...
Most methods for isolation of RNA from yeast require tedious vortexing with glass beads, and give lo...
Most methods for isolation of RNA from yeast require tedious vortexing with glass beads, and give lo...
Most procedures for isolating RNA from eukaryotic cells involve lysing and denaturing cells to liber...
Current methods for isolating RNA from budding yeast require lengthy and laborious steps such as fre...
This procedure is a modification of the original method published by Chirgwin et al. (1). The follow...
A new method of total RNA isolation by a single extraction with an acid guanidinium thiocyanate-phen...
Good quality ribonucleic acid (RNA) needs to be obtained in order to study gene expression. Differen...
Purification of RNA polymerase (Pol) I is essential for functional as well as for structural studies...
Good quality RNA needs to be obtained in order to study gene expression. Different RNA extraction me...
The protocol described in this unit is a fast and streamlined procedure for preparing total cytoplas...
Abstract Background Obtaining sufficient RNA yield and quality for comprehensive transcriptomic stud...
Since its introduction, the 'single-step' method has become widely used for isolating total RNA from...
A method for isolation of large, translationally active RNA species is presented. The procedure invo...
Yield and quality are fundamental features for any researchers during nucleic acid extraction. Here,...