Background: The start and end sites of messenger RNAs (TSSs and TESs) are highly regulated, often in a cell-type-specific manner. Yet the contribution of transcript diversity in regulating gene expression remains largely elusive. We perform an integrative analysis of multiple highly synchronized cell-fate transitions and quantitative genomic techniques in Saccharomyces cerevisiae to identify regulatory functions associated with transcribing alternative isoforms. Results: Cell-fate transitions feature widespread elevated expression of alternative TSS and, to a lesser degree, TES usage. These dynamically regulated alternative TSSs are located mostly upstream of canonical TSSs, but also within gene bodies possibly encoding for protein isoforms...
Identifying the nucleotides that cause gene expression variation is a critical step in dissecting th...
Background: Increasing evidence shows that whole genomes of eukaryotes are almost entirely transcrib...
Background: A key goal of systems biology is to understand how genomewide mRNA expression levels are...
One of the fundamental processes that determine cellular fate is regulation of gene transcription. U...
Cryptic transcription is widespread and generates a heterogeneous group of RNA molecules of unknown ...
AbstractGenome-wide expression analysis was used to identify genes whose expression depends on the f...
The transcriptional responses of yeast cells to diverse stresses typically include gene activation a...
In recent years, the use of genome-wide technologies has revolutionized the study of eukaryotic tran...
In recent years, the use of genome-wide technologies has revolutionized the study of eukaryotic tran...
BACKGROUND: The use of genome-wide RNA abundance profiling by microarrays and deep sequencing has sp...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
Transcriptional regulation is a complicated process controlled by numerous factors such as transcrip...
Though the outputs of regulatory circuits are conserved over long timescales, the exact mechanisms o...
BACKGROUND: Extensive transcription of non-coding RNAs has been detected in eukaryotic genomes and i...
Identifying the nucleotides that cause gene expression variation is a critical step in dissecting th...
Background: Increasing evidence shows that whole genomes of eukaryotes are almost entirely transcrib...
Background: A key goal of systems biology is to understand how genomewide mRNA expression levels are...
One of the fundamental processes that determine cellular fate is regulation of gene transcription. U...
Cryptic transcription is widespread and generates a heterogeneous group of RNA molecules of unknown ...
AbstractGenome-wide expression analysis was used to identify genes whose expression depends on the f...
The transcriptional responses of yeast cells to diverse stresses typically include gene activation a...
In recent years, the use of genome-wide technologies has revolutionized the study of eukaryotic tran...
In recent years, the use of genome-wide technologies has revolutionized the study of eukaryotic tran...
BACKGROUND: The use of genome-wide RNA abundance profiling by microarrays and deep sequencing has sp...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
A central challenge to post-genomic biology is to elucidate the cellular networks that underlie biol...
Transcriptional regulation is a complicated process controlled by numerous factors such as transcrip...
Though the outputs of regulatory circuits are conserved over long timescales, the exact mechanisms o...
BACKGROUND: Extensive transcription of non-coding RNAs has been detected in eukaryotic genomes and i...
Identifying the nucleotides that cause gene expression variation is a critical step in dissecting th...
Background: Increasing evidence shows that whole genomes of eukaryotes are almost entirely transcrib...
Background: A key goal of systems biology is to understand how genomewide mRNA expression levels are...