The Sir4 H-BRCT domain interacts with phospho-proteins to sequester and repress yeast heterochromatin

Ishan Deshpande1,2, Jeremy J Keusch1, Kiran Challa1

  • 1Friedrich Miescher Institute for Biomedical Research, Basel, Switzerland.

The EMBO Journal
|September 14, 2019
PubMed

Related Concept Videos

Gene-targeted Random Mutagenesis to Select Heterochromatin-destabilizing Proteasome Mutants in Fission Yeast07:18

Gene-targeted Random Mutagenesis to Select Heterochromatin-destabilizing Proteasome Mutants in Fission Yeast

This article describes a detailed methodology for random mutagenesis of a target gene in fission yeast. As an example, we target rpt4+, which encodes a subunit of the 19S proteasome, and screen for mutations that destabilize heterochromatin.
11.1K
A Yeast 2-Hybrid Screen in Batch to Compare Protein Interactions14:23

A Yeast 2-Hybrid Screen in Batch to Compare Protein Interactions

Batch processing of yeast 2-hybrid screens allows for direct comparison of the interaction profiles of multiple bait proteins with a highly complex set of prey fusion proteins. Here, we describe refined methods, new reagents, and how to implement their use for such...
14.1K
Conservation of Protein Domains Over Different Proteins02:26

Conservation of Protein Domains Over Different Proteins

Protein domains are small structurally independent units that are part of a single amino acid chain.  Although these domains are often structurally independent, they may rely on synergistic effects to perform their functions as part of a larger protein. Protein domains may be conserved within the same organism, as well as across different organisms.
A limited set of protein domains often duplicate and recombine during evolution. These domains can be organized in different combinations to...
14.1K
Yeast Two-Hybrid Assay to Determine Protein Self-Association in Yeast Cells05:20

Yeast Two-Hybrid Assay to Determine Protein Self-Association in Yeast Cells

This video demonstrates the yeast two-hybrid assay to detect specific protein self-interactions. In this assay, the protein of interest is tagged to two domains of a transcription factor that encodes the β-galactosidase enzyme. When the two proteins interact, this causes transcription and translation to form the enzyme, which is then detected using a biochemical...
4.3K
Modified Yeast-One Hybrid Assay to Detect Heteromeric Protein Complex-DNA Interactions04:12

Modified Yeast-One Hybrid Assay to Detect Heteromeric Protein Complex-DNA Interactions

In this video, we demonstrate the modified yeast one-hybrid assay, which detects multiple proteins interacting with target DNA. The transformed yeast cells contain the target DNA sequence upstream of the reporter gene. Additionally, they express transcription factor proteins. When the proteins form complexes and bind to the target DNA, the reporter gene is expressed and can be detected...
634
Budding Yeast Protein Extraction and Purification for the Study of Function, Interactions, and Post-translational Modifications09:22

Budding Yeast Protein Extraction and Purification for the Study of Function, Interactions, and Post-translational Modifications

The preparation of high quality yeast cell extracts is a necessary first step in the analysis of individual proteins or entire proteomes. Here we describe a fast, efficient, and reliable homogenization protocol for budding yeast cells that has been optimized to preserve protein functions, interactions, and post-translational...
25.8K