By using optical tweezers and a specially designed flow cell with an integrated glass micropipette, we constructed a setup similar to that of Smith et al. (Science 271:795-799, 1996) in which an individual double-stranded DNA (dsDNA) molecule can be captured between two polystyrene beads. The first bead is immobilized by the optical tweezers and the second by the micropipette. Movement of the micropipette allows manipulation and stretching of the DNA molecule, and the force exerted on it can be monitored simultaneously with the optical tweezers. We used this setup to study elongation of dsDNA by RecA protein and YOYO-1 dye molecules. We found that the stability of the different DNA-ligand complexes and their binding kinetics were quite diff...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
Feedback-controlled optical tweezers are used to manipulate single biological molecules in experimen...
Optical tweezers have grown to be one of the most powerful and versatile single-molecule methods for...
By using optical tweezers and a specially designed flow cell with an integrated glass micropipette, ...
Essential genomic transactions such as DNA-damage repair and DNA replication take place on single-st...
DNA metabolism and DNA compaction in vivo involve frequent interactions of remote DNA segments, medi...
We have integrated single molecule fluorescence microscopy imaging into an optical tweezers set-up a...
AbstractWe have integrated single molecule fluorescence microscopy imaging into an optical tweezers ...
The force-measuring optical tweezers has afforded scientists unprecedented insights into many of the...
DNA is a complex biopolymer, support for the genetic information of most living organisms on Earth. ...
Paper AbstractA double-trap optical tweezers instrument was constructed and its spatial resolution m...
International audienceMechanical manipulation of single DNA molecules can provide novel information ...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
AbstractMechanical properties of single double-stranded DNA (dsDNA) in the presence of different bin...
We present the first results obtained with a new instrument designed and built to study DNA-protein ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
Feedback-controlled optical tweezers are used to manipulate single biological molecules in experimen...
Optical tweezers have grown to be one of the most powerful and versatile single-molecule methods for...
By using optical tweezers and a specially designed flow cell with an integrated glass micropipette, ...
Essential genomic transactions such as DNA-damage repair and DNA replication take place on single-st...
DNA metabolism and DNA compaction in vivo involve frequent interactions of remote DNA segments, medi...
We have integrated single molecule fluorescence microscopy imaging into an optical tweezers set-up a...
AbstractWe have integrated single molecule fluorescence microscopy imaging into an optical tweezers ...
The force-measuring optical tweezers has afforded scientists unprecedented insights into many of the...
DNA is a complex biopolymer, support for the genetic information of most living organisms on Earth. ...
Paper AbstractA double-trap optical tweezers instrument was constructed and its spatial resolution m...
International audienceMechanical manipulation of single DNA molecules can provide novel information ...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
AbstractMechanical properties of single double-stranded DNA (dsDNA) in the presence of different bin...
We present the first results obtained with a new instrument designed and built to study DNA-protein ...
In this study, a detailed description of the optical tweezers microscopy technique is presented, as ...
Feedback-controlled optical tweezers are used to manipulate single biological molecules in experimen...
Optical tweezers have grown to be one of the most powerful and versatile single-molecule methods for...