We report here genome-wide analysis of the tumor suppressor p53 binding sites in normal human cells. 743 high-confidence ChIP-seq peaks representing putative genomic binding sites were identified in normal IMR90 fibroblasts using a reference chromatin sample. More than 40% were located within 2 kb of a transcription start site (TSS), a distribution similar to that documented for individually studied, functional p53 binding sites and, to date, not observed by previous p53 genome-wide studies. Nearly half of the high-confidence binding sites in the IMR90 cells reside in CpG islands, in marked contrast to sites reported in cancer-derived cells. The distinct genomic features of the IMR90 binding sites do not reflect a distinct preference for sp...
The p53 homologs, p63 and p73, share approximately 85% amino acid identity in their DNA-binding doma...
Genome-wide prediction of transcription factor binding sites is notoriously difficult. We have devel...
Motivation: The p53 protein is a multifunctional transcription factor: it regulates cell cycle progr...
<p>The tumor suppressor protein p53 interacts with DNA in a sequence-dependent manner. Thousands of ...
The p53 ability to elicit stress specific and cell type specific responses is well recognized, but h...
The p53 ability to elicit stress specific and cell type specific responses is well recognized, but h...
The p53 tumor suppressor protein is involved in multiple central cellular processes and human cancer...
AbstractTP53 (tumor protein p53; p53) regulates its target genes under various cellular stresses. By...
The product of the tumor suppressor gene p53 binds to DNA and activates transcription from promoters...
<div><p>Cellular stresses activate the tumor suppressor p53 protein leading to selective binding to ...
Cellular stresses activate the tumor suppressor p53 protein leading to selective binding to DNA resp...
SummaryThe ability to derive a whole-genome map of transcription-factor binding sites (TFBS) is cruc...
This study identifies common methylation patterns across different cancer types in an effort to iden...
Chromatin immunoprecipitation (ChIP) followed by sequencing of immunoprecipitated DNA fragments is t...
Abstract Background The p53 tumor suppressor protein is involved in a complicated regulatory network...
The p53 homologs, p63 and p73, share approximately 85% amino acid identity in their DNA-binding doma...
Genome-wide prediction of transcription factor binding sites is notoriously difficult. We have devel...
Motivation: The p53 protein is a multifunctional transcription factor: it regulates cell cycle progr...
<p>The tumor suppressor protein p53 interacts with DNA in a sequence-dependent manner. Thousands of ...
The p53 ability to elicit stress specific and cell type specific responses is well recognized, but h...
The p53 ability to elicit stress specific and cell type specific responses is well recognized, but h...
The p53 tumor suppressor protein is involved in multiple central cellular processes and human cancer...
AbstractTP53 (tumor protein p53; p53) regulates its target genes under various cellular stresses. By...
The product of the tumor suppressor gene p53 binds to DNA and activates transcription from promoters...
<div><p>Cellular stresses activate the tumor suppressor p53 protein leading to selective binding to ...
Cellular stresses activate the tumor suppressor p53 protein leading to selective binding to DNA resp...
SummaryThe ability to derive a whole-genome map of transcription-factor binding sites (TFBS) is cruc...
This study identifies common methylation patterns across different cancer types in an effort to iden...
Chromatin immunoprecipitation (ChIP) followed by sequencing of immunoprecipitated DNA fragments is t...
Abstract Background The p53 tumor suppressor protein is involved in a complicated regulatory network...
The p53 homologs, p63 and p73, share approximately 85% amino acid identity in their DNA-binding doma...
Genome-wide prediction of transcription factor binding sites is notoriously difficult. We have devel...
Motivation: The p53 protein is a multifunctional transcription factor: it regulates cell cycle progr...