The simplified artificial environments in which highly complex biological systems are studied do not represent the crowded, dense, salty, and dynamic environment inside the living cell. Consequently, it is important to investigate the effect of crowding agents on DNA. We used a dual-trap optical tweezers instrument to perform force spectroscopy experiments at pull speeds ranging from 0.3 to 270 μm/s on single dsDNA molecules in the presence of poly(ethylene glycol) (PEG) and monovalent salt. PEG of sizes 1,500 and 4,000 Da condensed DNA, and force–extension data contained a force plateau at approximately 1 pN. The level of the force plateau increased with increasing pull speed. During slow pulling the dissipated work increased linearly with...
Single molecule techniques have provided novel mechanistic insights on biological processes such as ...
The force-measuring optical tweezers has afforded scientists unprecedented insights into many of the...
Studying the thermal fluctuations of DNA molecules reveals not only a wealth of interesting equilibr...
The simplified artificial environments in which highly complex biological systems are studied do not...
In this work, we have measured, by means of optical tweezers, forces acting on depletion-induced DNA...
In single molecule force spectroscopy experiments, force probes chemically modified with synthetic, ...
In this work we have characterized the effects of the intercalator ethidium bromide (EtBr) on the DN...
The dynamic force vs. the extension relationship of single DNA molecules in the presence of trivalen...
Combination of glass nanocapillaries with optical tweezers allowed us to detect DNA–protein complexe...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
ABSTRACT: We measure the forces confining the displacement of a single DNA molecule embedded within ...
ABSTRACT: Combination of glass nanocapillaries with optical tweezers allowed us to detect DNA−protei...
DNA molecules were used as a model system to investigate fundamental problems in polymer physics; na...
Single molecule techniques have provided novel mechanistic insights on biological processes such as ...
The force-measuring optical tweezers has afforded scientists unprecedented insights into many of the...
Studying the thermal fluctuations of DNA molecules reveals not only a wealth of interesting equilibr...
The simplified artificial environments in which highly complex biological systems are studied do not...
In this work, we have measured, by means of optical tweezers, forces acting on depletion-induced DNA...
In single molecule force spectroscopy experiments, force probes chemically modified with synthetic, ...
In this work we have characterized the effects of the intercalator ethidium bromide (EtBr) on the DN...
The dynamic force vs. the extension relationship of single DNA molecules in the presence of trivalen...
Combination of glass nanocapillaries with optical tweezers allowed us to detect DNA–protein complexe...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
Viral DNA packaging is a required step in the lytic cycle of many DNA viruses. A DNA polymer is pack...
ABSTRACT: We measure the forces confining the displacement of a single DNA molecule embedded within ...
ABSTRACT: Combination of glass nanocapillaries with optical tweezers allowed us to detect DNA−protei...
DNA molecules were used as a model system to investigate fundamental problems in polymer physics; na...
Single molecule techniques have provided novel mechanistic insights on biological processes such as ...
The force-measuring optical tweezers has afforded scientists unprecedented insights into many of the...
Studying the thermal fluctuations of DNA molecules reveals not only a wealth of interesting equilibr...