Seqanswers Leaderboard Ad

Collapse

Announcement

Collapse
No announcement yet.
X
 
  • Filter
  • Time
  • Show
Clear All
new posts

  • PubMed: Chromatin poises miRNA- and protein-coding genes for expression.

    Syndicated from PubMed RSS Feeds

    Related Articles Chromatin poises miRNA- and protein-coding genes for expression.

    Genome Res. 2009 Aug 27;

    Authors: Barski A, Jothi R, Cuddapah S, Cui K, Roh TY, Schones DE, Zhao K

    Chromatin modifications have been implicated in the regulation of gene expression. While association of certain modifications with expressed or silent genes has been established, it remains unclear how changes in chromatin environment relate to changes in gene expression. In this article, we used ChIP-seq (chromatin immunoprecipitation with massively parallel sequencing) to analyze the genome-wide changes in chromatin modifications during activation of total human CD4(+) T cells by T-cell receptor (TCR) signaling. Surprisingly, we found that the chromatin modification patterns at many induced and silenced genes are relatively stable during the short-term activation of resting T cells. Active chromatin modifications were already in place for a majority of inducible protein-coding genes, even while the genes were silent in resting cells. Similarly, genes that were silenced upon T-cell activation retained positive chromatin modifications even after being silenced. To investigate if these observations are also valid for miRNA-coding genes, we systematically identified promoters for known miRNA genes using epigenetic marks and profiled their expression patterns using deep sequencing. We found that chromatin modifications can poise miRNA-coding genes as well. Our data suggest that miRNA- and protein-coding genes share similar mechanisms of regulation by chromatin modifications, which poise inducible genes for activation in response to environmental stimuli.

    PMID: 19713549 [PubMed - as supplied by publisher]



    More...

Latest Articles

Collapse

  • seqadmin
    Recent Developments in Metagenomics
    by seqadmin





    Metagenomics has improved the way researchers study microorganisms across diverse environments. Historically, studying microorganisms relied on culturing them in the lab, a method that limits the investigation of many species since most are unculturable1. Metagenomics overcomes these issues by allowing the study of microorganisms regardless of their ability to be cultured or the environments they inhabit. Over time, the field has evolved, especially with the advent...
    09-23-2024, 06:35 AM
  • seqadmin
    Understanding Genetic Influence on Infectious Disease
    by seqadmin




    During the COVID-19 pandemic, scientists observed that while some individuals experienced severe illness when infected with SARS-CoV-2, others were barely affected. These disparities left researchers and clinicians wondering what causes the wide variations in response to viral infections and what role genetics plays.

    Jean-Laurent Casanova, M.D., Ph.D., Professor at Rockefeller University, is a leading expert in this crossover between genetics and infectious...
    09-09-2024, 10:59 AM

ad_right_rmr

Collapse

News

Collapse

Topics Statistics Last Post
Started by seqadmin, Yesterday, 12:57 PM
0 responses
8 views
0 likes
Last Post seqadmin  
Started by seqadmin, 09-25-2024, 05:35 AM
0 responses
17 views
0 likes
Last Post seqadmin  
Started by seqadmin, 09-20-2024, 06:25 AM
0 responses
52 views
0 likes
Last Post seqadmin  
Started by seqadmin, 09-19-2024, 01:02 PM
0 responses
45 views
0 likes
Last Post seqadmin  
Working...
X