Chromatin organization plays a major role in gene regulation and can affect the function and evolution of new transcriptional programs. However, it can be difficult to decipher the basis of changes in chromatin organization and their functional effect on gene expression. Here, we present a large-scale comparative genomic analysis of the relationship between chromatin organization and gene expression, by measuring mRNA abundance and nucleosome positions genome-wide in 12 Hemiascomycota yeast species. We found substantial conservation of global and functional chromatin organization in all species, including prominent nucleosome-free regions (NFRs) at gene promoters, and distinct chromatin architecture in growth and stress genes. Chromatin org...
Numerous studies of chromatin structure showed that nucleosome free regions (NFRs) located at 5' gen...
Eukaryotic transcriptional regulation is mediated by the organization of chromatin in promoter regio...
Gene activity is controlled at different levels of chromatin organization, which involve genomic seq...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
To examine the role of nucleosome occupancy in the evolution of gene expression, we measured the gen...
To examine the role of nucleosome occupancy in the evolution of gene expression, we measured the gen...
Eukaryotic transcription occurs within a chromatin environment, whose organization plays an importan...
Eukaryotic transcription occurs within a chromatin environment, whose organization plays an importan...
<div><p>Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within ge...
Abstract Background Recently, a number of high-resolution genome-wide maps of nucleosome locations i...
Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within genes and ...
The fundamental repeating unit of all eukaryotic chromatin is the 147bp DNA:histone complex known as...
The fundamental repeating unit of all eukaryotic chromatin is the 147bp DNA:histone complex known as...
Numerous studies of chromatin structure showed that nucleosome free regions (NFRs) located at 5' gen...
Eukaryotic transcriptional regulation is mediated by the organization of chromatin in promoter regio...
Gene activity is controlled at different levels of chromatin organization, which involve genomic seq...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Chromatin organization plays a major role in gene regulation and can affect the function and evoluti...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
To examine the role of nucleosome occupancy in the evolution of gene expression, we measured the gen...
To examine the role of nucleosome occupancy in the evolution of gene expression, we measured the gen...
Eukaryotic transcription occurs within a chromatin environment, whose organization plays an importan...
Eukaryotic transcription occurs within a chromatin environment, whose organization plays an importan...
<div><p>Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within ge...
Abstract Background Recently, a number of high-resolution genome-wide maps of nucleosome locations i...
Nucleosomes in all eukaryotes examined to date adopt a characteristic architecture within genes and ...
The fundamental repeating unit of all eukaryotic chromatin is the 147bp DNA:histone complex known as...
The fundamental repeating unit of all eukaryotic chromatin is the 147bp DNA:histone complex known as...
Numerous studies of chromatin structure showed that nucleosome free regions (NFRs) located at 5' gen...
Eukaryotic transcriptional regulation is mediated by the organization of chromatin in promoter regio...
Gene activity is controlled at different levels of chromatin organization, which involve genomic seq...