With recent advances in high-throughput sequencing, mapping of genome-wide transcription factor occupancy has become feasible. To advance the understanding of skeletal muscle differentiation specifically and transcriptional regulation in general, I determined the genome-wide occupancy map for myogenin in differentiating C2C12 myocyte cells. I then analyzed the myogenin map for underlying sequence content and the association between occupied elements and expression trajectories of adjacent genes. Having determined that myogenin primarily associates with expressed genes, I performed a similar analysis on occupancy maps of other transcription factors active during skeletal muscle differentiation, including an extensive analysis of co-occupa...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
Background: Despite modern technologies and novel computational approaches, decoding causal transcri...
Proper development of skeletal muscle occurs through a highly complex process where activation and r...
Background: Despite modern technologies and novel computational approaches, decoding causal transcri...
BACKGROUND:Despite modern technologies and novel computational approaches, decoding causal transcrip...
Myogenesis in skeletal muscle is a cascade of developmental events whose initiation involves the Myo...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
Despite modern technologies and novel computational approaches, decoding causal transcriptional regu...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
Despite modern technologies and novel computational approaches, decoding causal transcriptional regu...
Myogenesis in skeletal muscle is a cascade of developmental events whose initiation involves the Myo...
Skeletal muscle differentiation requires synergy between tissue-specific transcription factors, chro...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
Background: Despite modern technologies and novel computational approaches, decoding causal transcri...
Proper development of skeletal muscle occurs through a highly complex process where activation and r...
Background: Despite modern technologies and novel computational approaches, decoding causal transcri...
BACKGROUND:Despite modern technologies and novel computational approaches, decoding causal transcrip...
Myogenesis in skeletal muscle is a cascade of developmental events whose initiation involves the Myo...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
Despite modern technologies and novel computational approaches, decoding causal transcriptional regu...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
Despite modern technologies and novel computational approaches, decoding causal transcriptional regu...
Myogenesis in skeletal muscle is a cascade of developmental events whose initiation involves the Myo...
Skeletal muscle differentiation requires synergy between tissue-specific transcription factors, chro...
In higher organisms, gene regulation is controlled by the interplay of non-random combinations of mu...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
It is known that the MyoD family members (MyoD, Myf5, myogenin, and MRF4) play a pivotal role in the...