30 research outputs found
Molybdenum Complexes as Catalysts for the Oxidation of Cycloalkanes with Molecular Oxygen
Field screening of water quality, bottom sediment, and biota associated with irrigation drainage in the North Platte Project area, Nebraska and Wyoming, 1995 /
Shipping list no.: 99-0168-P.Includes bibliographical references (p. 26-29).Mode of access: Internet
PD-037 The relationship of high neutrophil-to-lymphocyte ratio to disease-free survival in colorectal cancer
The spring-loaded genome: Nucleosome redistributions are widespread, transient, and DNA-directed
Catalytic Isomerization of Cyanoolefins Involved in the Adiponitrile Process. C-CN Bond Cleavage and Structure of the Nickel p-Allyl Cyanide Complex Ni(h3-1-Me-C3H4)(CN)(dppb)
The spring-loaded genome: Nucleosome redistributions are widespread, transient, and DNA-directed
Nucleosome occupancy plays a key role in regulating access to eukaryotic genomes. Although various chromatin regulatory complexes are known to regulate nucleosome occupancy, the role of DNA sequence in this regulation remains unclear, particularly in mammals. To address this problem, we measured nucleosome distribution at high temporal resolution in human cells at hundreds of genes during the reactivation of Kaposi's sarcoma-associated herpesvirus (KSHV). We show that nucleosome redistribution peaks at 24 h post-KSHV reactivation and that the nucleosomal redistributions are widespread and transient. To clarify the role of DNA sequence in these nucleosomal redistributions, we compared the genes with altered nucleosome distribution to a sequence-based computer model and in vitro-assembled nucleosomes. We demonstrate that both the predicted model and the assembled nucleosome distributions are concordant with the majority of nucleosome redistributions at 24 h post-KSHV reactivation. We suggest a model in which loci are held in an unfavorable chromatin architecture and 'spring' to a transient intermediate state directed by DNA sequence information. We propose that DNA sequence plays a more considerable role in the regulation of nucleosome positions than was previously appreciated. The surprising findings that nucleosome redistributions are widespread, transient, and DNA-directed shift the current perspective regarding regulation of nucleosome distribution in humans. 2014 Hansen et a