All living organisms face the challenge of packaging their DNA into the small space within the cell while still allowing access to the genetic information by molecular machinery for DNA replication, chromosome segregation, and gene expression. Organisms from each domain of life have evolved distinct mechanisms specifically designed for chromosomal organization and compaction. In all three biological domains classes of small, basic and abundant proteins bind DNA with little or no sequence specificity, and serve essential roles in the compaction, coiling, and regulation of gene expression. These proteins are also capable of undergoing post-translation modification at both N-terminal and internal ϵ-amino acid residues throughout their sequence...
DNA compaction is a universal requirement across the three domains of life. The proteins responsible...
Histone proteins compact and stabilize the genomes of Eukarya and Archaea. By forming nucleosome(-li...
Chromatin, composed of repeating nucleosome units, is the genetic polymer of life. To aid in DNA com...
All living organisms face the challenge of packaging their DNA into the small space within the cell ...
Epigenetic mechanisms are essential for complex eukaryotic life, allowing for cellular differentiati...
Histones and associated chromatin proteins have essential functions in eukaryotic genome organizatio...
Recently, several advances have been made in the understanding of the form and function of archaeal ...
The genomic DNA of all organisms across the three kingdoms of life needs to be compacted and functio...
In all organisms of the three living domains (Bacteria, Archaea, Eucarya) chromosome-associated prot...
In all organisms of the three living domains (Bacteria, Archaea, Eucarya) chromosome-associated prot...
Chromatin regulation is understood to be one of the fundamental modes of gene regulation in eukaryot...
Abstract The eukaryotic nucleosome is the fundamental unit of chromatin, comprising a protein octame...
Abstract: In all organisms of the three living domains (Bacteria, Archaea, Eucarya) chromosome-assoc...
The analysis of completed archaeal genome sequences led to the identification of a set of approximat...
The packaging of DNA in chromatin is an important determinant of transcription, replication and reco...
DNA compaction is a universal requirement across the three domains of life. The proteins responsible...
Histone proteins compact and stabilize the genomes of Eukarya and Archaea. By forming nucleosome(-li...
Chromatin, composed of repeating nucleosome units, is the genetic polymer of life. To aid in DNA com...
All living organisms face the challenge of packaging their DNA into the small space within the cell ...
Epigenetic mechanisms are essential for complex eukaryotic life, allowing for cellular differentiati...
Histones and associated chromatin proteins have essential functions in eukaryotic genome organizatio...
Recently, several advances have been made in the understanding of the form and function of archaeal ...
The genomic DNA of all organisms across the three kingdoms of life needs to be compacted and functio...
In all organisms of the three living domains (Bacteria, Archaea, Eucarya) chromosome-associated prot...
In all organisms of the three living domains (Bacteria, Archaea, Eucarya) chromosome-associated prot...
Chromatin regulation is understood to be one of the fundamental modes of gene regulation in eukaryot...
Abstract The eukaryotic nucleosome is the fundamental unit of chromatin, comprising a protein octame...
Abstract: In all organisms of the three living domains (Bacteria, Archaea, Eucarya) chromosome-assoc...
The analysis of completed archaeal genome sequences led to the identification of a set of approximat...
The packaging of DNA in chromatin is an important determinant of transcription, replication and reco...
DNA compaction is a universal requirement across the three domains of life. The proteins responsible...
Histone proteins compact and stabilize the genomes of Eukarya and Archaea. By forming nucleosome(-li...
Chromatin, composed of repeating nucleosome units, is the genetic polymer of life. To aid in DNA com...