Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Multi-plateau force-extension curves of long double-stranded DNA molecules

View through CrossRef
Abstract When highly stretched, double-stranded DNA exhibits a plateau region in its force-extension curve. Using a bead-spring coarse-grained dynamic model based on a non-convex potential, we predict that a long double-stranded DNA fragment made of several consecutive segments with substantially different plateau force values for each segment will exhibit multiple distinct plateau regions in the force-extension curve under physiologically relevant solvent conditions. For example, a long composite double-stranded (ds) DNA fragment consisting of two equal-length segments characterized by two different plateau force values, such as the poly(dA-dT)-poly(dG-dC) fragment, is predicted to exhibit two distinct plateau regions in its force-extension curve; a long composite dsDNA fragment consisting of three segments having three different plateau force values is predicted to have three distinct plateau regions. The formation of mixed states of slightly and highly stretched DNA, co-existing with macroscopically distinct phases of uniformly stretched DNA is also predicted. When one of the segments overstretches, the extensions of the segments can differ drastically. For example, for the poly(dA-dT)-poly(dG-dC) composite fragment, in the middle of the first plateau, 96.7 % of the total extension of the fragment (relative to L x /L 0 ≈ 1.0) comes from the poly(dA-dT) segment, while only 3.3 % of it comes from the poly(dG-dC) segment. The order of the segments has little effect on the force-extension curve or the distribution of conformational states. We speculate that the distinct structural states of stretched double-stranded DNA may have functional importance. For example, these states may modulate, in a sequence-dependent manner, the rate of double-stranded DNA processing by key cellular machines. TOC Graphic
Title: Multi-plateau force-extension curves of long double-stranded DNA molecules
Description:
Abstract When highly stretched, double-stranded DNA exhibits a plateau region in its force-extension curve.
Using a bead-spring coarse-grained dynamic model based on a non-convex potential, we predict that a long double-stranded DNA fragment made of several consecutive segments with substantially different plateau force values for each segment will exhibit multiple distinct plateau regions in the force-extension curve under physiologically relevant solvent conditions.
For example, a long composite double-stranded (ds) DNA fragment consisting of two equal-length segments characterized by two different plateau force values, such as the poly(dA-dT)-poly(dG-dC) fragment, is predicted to exhibit two distinct plateau regions in its force-extension curve; a long composite dsDNA fragment consisting of three segments having three different plateau force values is predicted to have three distinct plateau regions.
The formation of mixed states of slightly and highly stretched DNA, co-existing with macroscopically distinct phases of uniformly stretched DNA is also predicted.
When one of the segments overstretches, the extensions of the segments can differ drastically.
For example, for the poly(dA-dT)-poly(dG-dC) composite fragment, in the middle of the first plateau, 96.
7 % of the total extension of the fragment (relative to L x /L 0 ≈ 1.
0) comes from the poly(dA-dT) segment, while only 3.
3 % of it comes from the poly(dG-dC) segment.
The order of the segments has little effect on the force-extension curve or the distribution of conformational states.
We speculate that the distinct structural states of stretched double-stranded DNA may have functional importance.
For example, these states may modulate, in a sequence-dependent manner, the rate of double-stranded DNA processing by key cellular machines.
TOC Graphic.

Related Results

Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Abstract Background: Age-associated epigenetic alteration is the underlying cause of DNA damage in aging cells. Two types of youth-associated DNA-protection epigenetic mark...
Echinococcus granulosus in Environmental Samples: A Cross-Sectional Molecular Study
Echinococcus granulosus in Environmental Samples: A Cross-Sectional Molecular Study
Abstract Introduction Echinococcosis, caused by tapeworms of the Echinococcus genus, remains a significant zoonotic disease globally. The disease is particularly prevalent in areas...
Investigating properties of multi-stranded filament structures in the galactic center
Investigating properties of multi-stranded filament structures in the galactic center
The Galactic Center (GC) is an extreme region of the Milky Way possessing elevated molecular temperatures and densities. A population of unique structures exists in the GC known as...
Topoisomerase Assays
Topoisomerase Assays
AbstractTopoisomerases are enzymes that play essential roles in DNA replication, transcription, chromosome segregation, and recombination. All cells have two major forms of DNA top...
A Seminar Title On the History and Evolution of Agricultural Extension in the Ethiopia Country
A Seminar Title On the History and Evolution of Agricultural Extension in the Ethiopia Country
Agricultural extension service began work in Ethiopia since 1931, during the establishment of Ambo Agricultural School. But a formal Agricultural extension started since Alemaya Im...
Agricultural extension workers' perception of cyber extension
Agricultural extension workers' perception of cyber extension
Mastery of various information system technologies in the agricultural sector greatly supports the competence of agricultural extension agents. Extension agents must possess adequa...
Differences in affinity of arylstilbazolium derivatives to tetraplex structures
Differences in affinity of arylstilbazolium derivatives to tetraplex structures
AbstractResearch into the interactions of small molecules (ligands) with DNA is a very important field of biochemistry. A ligand interacts with a DNA structure in many ways, depend...

Back to Top