The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, which include hexagonal and cholesteric columnar phases. The structural unit is a four-stranded helix, composed of a stacked array of Hoogsteen-bonded guanosine quartets. We have measured by osmotic stress method the force per unit length versus interaxial distance between helices in the hexagonal phase under various ionic conditions. Two contributions have been recognized: the first one is purely electrostatic, is effective at large distances, and shows a strong dependence on the salt concentration of the solution. The second contribution is short range, dominates at interaxial separations smaller than about 30–32 A, and rises steeply as the col...
Forces between type I collagen triple helices are studied in solvents of varying hydrogen-bonding ab...
ABSTRACT By combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sep...
We have performed two molecular dynamics computer simulations of two 10-base-pair segments of DNA mo...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
AbstractDeoxyguanosine-5′-monophosphate in water self-associates into stable structures, which inclu...
Deoxyguanosine-5'-monophosphate in water self-associates into stable structures, which include liqui...
Rather than acting by modifying van der Waals or electrostatic double layer interactions or by direc...
Alkaline folates self-associate in aqueous solutions to form columnar lyotropic phases. Such phases ...
AbstractBy combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sepa...
Directly measured forces between DNA helices in ordered arrays have been reduced to simple force coe...
AbstractThe physical forces that underlie the exclusion of solutes from macromolecular surfaces can ...
Guanosine, one of the primary components of nucleic acids, self-associates in water to form G-quadru...
In both DNA and RNA, stretches of guanine bases can form stable four-stranded helices in the presenc...
The assembly of double stranded DNA helices with divalent manganese ion is favored by increasing tem...
Forces between type I collagen triple helices are studied in solvents of varying hydrogen-bonding ab...
ABSTRACT By combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sep...
We have performed two molecular dynamics computer simulations of two 10-base-pair segments of DNA mo...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
The deoxyguanosine-5'-monophosphate in aqueous solution self-associates into stable structures, whic...
AbstractDeoxyguanosine-5′-monophosphate in water self-associates into stable structures, which inclu...
Deoxyguanosine-5'-monophosphate in water self-associates into stable structures, which include liqui...
Rather than acting by modifying van der Waals or electrostatic double layer interactions or by direc...
Alkaline folates self-associate in aqueous solutions to form columnar lyotropic phases. Such phases ...
AbstractBy combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sepa...
Directly measured forces between DNA helices in ordered arrays have been reduced to simple force coe...
AbstractThe physical forces that underlie the exclusion of solutes from macromolecular surfaces can ...
Guanosine, one of the primary components of nucleic acids, self-associates in water to form G-quadru...
In both DNA and RNA, stretches of guanine bases can form stable four-stranded helices in the presenc...
The assembly of double stranded DNA helices with divalent manganese ion is favored by increasing tem...
Forces between type I collagen triple helices are studied in solvents of varying hydrogen-bonding ab...
ABSTRACT By combining single-molecule magnetic tweezers and osmotic stress on DNA assemblies, we sep...
We have performed two molecular dynamics computer simulations of two 10-base-pair segments of DNA mo...