» Articles » PMID: 28861108

Gene Functioning and Storage Within a Folded Genome

Overview
Publisher Biomed Central
Date 2017 Sep 2
PMID 28861108
Citations 17
Authors
Affiliations
Soon will be listed here.
Abstract

In mammals, genomic DNA that is roughly 2 m long is folded to fit the size of the cell nucleus that has a diameter of about 10 μm. The folding of genomic DNA is mediated via assembly of DNA-protein complex, chromatin. In addition to the reduction of genomic DNA linear dimensions, the assembly of chromatin allows to discriminate and to mark active (transcribed) and repressed (non-transcribed) genes. Consequently, epigenetic regulation of gene expression occurs at the level of DNA packaging in chromatin. Taking into account the increasing attention of scientific community toward epigenetic systems of gene regulation, it is very important to understand how DNA folding in chromatin is related to gene activity. For many years the hierarchical model of DNA folding was the most popular. It was assumed that nucleosome fiber (10-nm fiber) is folded into 30-nm fiber and further on into chromatin loops attached to a nuclear/chromosome scaffold. Recent studies have demonstrated that there is much less regularity in chromatin folding within the cell nucleus. The very existence of 30-nm chromatin fibers in living cells was questioned. On the other hand, it was found that chromosomes are partitioned into self-interacting spatial domains that restrict the area of enhancers action. Thus, TADs can be considered as structural-functional domains of the chromosomes. Here we discuss the modern view of DNA packaging within the cell nucleus in relation to the regulation of gene expression. Special attention is paid to the possible mechanisms of the chromatin fiber self-assembly into TADs. We discuss the model postulating that partitioning of the chromosome into TADs is determined by the distribution of active and inactive chromatin segments along the chromosome. This article was specially invited by the editors and represents work by leading researchers.

Citing Articles

Long G4-rich enhancers target promoters via a G4 DNA-based mechanism.

DeMeis J, Roberts J, Delcher H, Godang N, Coley A, Brown C Nucleic Acids Res. 2024; 53(2.

PMID: 39658038 PMC: 11754661. DOI: 10.1093/nar/gkae1180.


[An identification method of chromatin topological associated domains based on spatial density clustering].

Gong H, Zhang S, Zhang X Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2024; 41(3):552-559.

PMID: 38932542 PMC: 11208664. DOI: 10.7507/1001-5515.202311059.


TOAST: A novel method for identifying topologically associated domains based on graph auto-encoders and clustering.

Gong H, Zhang D, Zhang X Comput Struct Biotechnol J. 2023; 21:4759-4768.

PMID: 37822562 PMC: 10562672. DOI: 10.1016/j.csbj.2023.09.019.


Enhancer Function in the 3D Genome.

Razin S, Ulianov S, Iarovaia O Genes (Basel). 2023; 14(6).

PMID: 37372457 PMC: 10298269. DOI: 10.3390/genes14061277.


3D genome perspective on cell fate determination, organ regeneration, and diseases.

Zhong H, Zhang J, Lu Y, Hu G, Pan G, Yao H Cell Prolif. 2023; 56(5):e13482.

PMID: 37199020 PMC: 10212718. DOI: 10.1111/cpr.13482.


References
1.
Valton A, Dekker J . TAD disruption as oncogenic driver. Curr Opin Genet Dev. 2016; 36:34-40. PMC: 4880504. DOI: 10.1016/j.gde.2016.03.008. View

2.
Razin S . The nuclear matrix and chromosomal DNA loops: is their any correlation between partitioning of the genome into loops and functional domains?. Cell Mol Biol Lett. 2001; 6(1):59-69. View

3.
de Wit E, Vos E, Holwerda S, Valdes-Quezada C, Verstegen M, Teunissen H . CTCF Binding Polarity Determines Chromatin Looping. Mol Cell. 2015; 60(4):676-84. DOI: 10.1016/j.molcel.2015.09.023. View

4.
Cook P, Brazell I, Jost E . Characterization of nuclear structures containing superhelical DNA. J Cell Sci. 1976; 22(2):303-24. DOI: 10.1242/jcs.22.2.303. View

5.
KELLUM R, Schedl P . A position-effect assay for boundaries of higher order chromosomal domains. Cell. 1991; 64(5):941-50. DOI: 10.1016/0092-8674(91)90318-s. View