The RecA filament formed on double-stranded (ds) DNA is proposed to be a functional state analogous to that generated during the process of DNA strand exchange. RecA polymerization and de-polymerization on dsDNA is governed by multiple physiological factors. However, a comprehensive understanding of how these factors regulate the processes of polymerization and de-polymerization of RecA filament on dsDNA is still evolving. Here, we investigate the effects of temperature, pH, tensile force, and DNA ends (in particular ssDNA overhang) on the polymerization and de-polymerization dynamics of the E. coli RecA filament at a single-molecule level. Our results identified the optimal conditions that permitted spontaneous RecA nucleation and polymeri...
In Escherichia coli, the filament of RecA formed on single-stranded DNA (ssDNA) is essential for rec...
In Escherichia coli, the filament of RecA formed on single-stranded DNA (ssDNA) is essential for rec...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
The RecA filament formed on double-stranded (ds) DNA is proposed to be a functional state analogous ...
The RecA filament formed on double-stranded (ds) DNA is proposed to be a functional state analogous ...
<div><p>The RecA filament formed on double-stranded (ds) DNA is proposed to be a functional state an...
The polymerization of RecA on individual double-stranded DNA molecules is studied. A linear DNA (λ D...
<p>(A) On dsDNA with blunt ends, at 37°C and pH 7.4 or 24°C and pH 6.2, polymerization of a partiall...
<p>(A) Time trace of RecA polymerization and de-polymerization in a λ-DNA in 1 µM RecA, 50 mM KCl, 1...
AbstractWe study dsDNA-RecA interactions by exerting forces in the pN range on single DNA molecules ...
textabstractRecA, the key protein in homologous recombination, performs its actions as a helical fil...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
AbstractWe study dsDNA-RecA interactions by exerting forces in the pN range on single DNA molecules ...
RecA, the key protein in homologous recombina-tion, performs its actions as a helical filament on si...
In Escherichia coli, the filament of RecA formed on single-stranded DNA (ssDNA) is essential for rec...
In Escherichia coli, the filament of RecA formed on single-stranded DNA (ssDNA) is essential for rec...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
The RecA filament formed on double-stranded (ds) DNA is proposed to be a functional state analogous ...
The RecA filament formed on double-stranded (ds) DNA is proposed to be a functional state analogous ...
<div><p>The RecA filament formed on double-stranded (ds) DNA is proposed to be a functional state an...
The polymerization of RecA on individual double-stranded DNA molecules is studied. A linear DNA (λ D...
<p>(A) On dsDNA with blunt ends, at 37°C and pH 7.4 or 24°C and pH 6.2, polymerization of a partiall...
<p>(A) Time trace of RecA polymerization and de-polymerization in a λ-DNA in 1 µM RecA, 50 mM KCl, 1...
AbstractWe study dsDNA-RecA interactions by exerting forces in the pN range on single DNA molecules ...
textabstractRecA, the key protein in homologous recombination, performs its actions as a helical fil...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...
AbstractWe study dsDNA-RecA interactions by exerting forces in the pN range on single DNA molecules ...
RecA, the key protein in homologous recombina-tion, performs its actions as a helical filament on si...
In Escherichia coli, the filament of RecA formed on single-stranded DNA (ssDNA) is essential for rec...
In Escherichia coli, the filament of RecA formed on single-stranded DNA (ssDNA) is essential for rec...
RecA, the key protein in homologous recombination, performs its actions as a helical filament on sin...