Establishing causative links between protein functional domains and global gene regulation is critical for advancements in genetics, biotechnology, disease treatment, and systems biology. This task is challenging for multifunctional proteins when relying on traditional approaches such as gene deletions since they remove all domains simultaneously. Here, we describe a novel approach to extract quantitative, causative links by modulating the expression of a dominant mutant allele to create a function-specific competitive inhibition. Using the yeast histone acetyltransferase Gcn5p as a case study, we demonstrate the utility of this approach and (1) find evidence that Gcn5p is more involved in cell-wide gene repression, instead of the accepted ...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
<div><p>Establishing causative links between protein functional domains and global gene regulation i...
Establishing causative links between protein functional domains and global gene regulation is critic...
Establishing causative links between protein functional domains and global gene regulation is critic...
Tup1 forms a complex with Ssn6 in yeast. Ssn6-Tup1 complex is recruited via direct interactions with...
Tup1 forms a complex with Ssn6 in yeast. Ssn6-Tup1 complex is recruited via direct interactions with...
Histone acetyltransferases (HATs) are important regulators of chromatin structure and transcriptiona...
The yeast proteins Sas3p (something about silencing 3) and Gcn5p (general control nonderepressible 5...
Transcriptional adaptor proteins are thought to regulate transcriptional activation by facilitating ...
Extensive studies have been done on the mechanism of gene activation using nonchromosomal DNA. Howev...
Extensive studies have been done on the mechanism of gene activation using nonchromosomal DNA. Howev...
Transcriptional adaptor proteins are thought to regulate transcriptional activation by facilitating ...
Acetylation is a key modulator of genome accessibility through decondensation of the chromatin struc...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
<div><p>Establishing causative links between protein functional domains and global gene regulation i...
Establishing causative links between protein functional domains and global gene regulation is critic...
Establishing causative links between protein functional domains and global gene regulation is critic...
Tup1 forms a complex with Ssn6 in yeast. Ssn6-Tup1 complex is recruited via direct interactions with...
Tup1 forms a complex with Ssn6 in yeast. Ssn6-Tup1 complex is recruited via direct interactions with...
Histone acetyltransferases (HATs) are important regulators of chromatin structure and transcriptiona...
The yeast proteins Sas3p (something about silencing 3) and Gcn5p (general control nonderepressible 5...
Transcriptional adaptor proteins are thought to regulate transcriptional activation by facilitating ...
Extensive studies have been done on the mechanism of gene activation using nonchromosomal DNA. Howev...
Extensive studies have been done on the mechanism of gene activation using nonchromosomal DNA. Howev...
Transcriptional adaptor proteins are thought to regulate transcriptional activation by facilitating ...
Acetylation is a key modulator of genome accessibility through decondensation of the chromatin struc...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...
Histone acetyltransferases are key chromatin regulators responsible for transcriptional activation a...