DNA condensation in vivo relies on electrostatic complexation with small cations or large histones. We report a synchrotron x-ray study of the phase behavior of DNA complexed with synthetic cationic dendrimers of intermediate size and charge. We encounter unexpected structural transitions between columnar mesophases with in-plane square and hexagonal symmetries, as well as liquidlike disorder. The isoelectric point is a locus of structural instability. A simple model is proposed based on competing long-range electrostatic interactions and short-range entropic adhesion by counterion release
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
The internal structure of DNA-polycation complexes is investigated by synchrotron small-angle X-ray ...
DNA molecules form dense liquid-crystalline twisted phases both in vivo and in vitro. How the micros...
[[abstract]]©2009 ACS - The electrostatic complexes of polyanionic DNA with dendrimers have been con...
Polyamidoamine (PAMAM) dednrimer bearing a well-defined number of amine groups can be protonated und...
We present a comprehensive theoretical and experimental study of the solution phase properties of a ...
The control of DNA condensation, i.e. packaging or compaction, is essential for the living cell, but...
DNA condensation in vivo usually requires proteins and/or multivalent salts. Here, we explore the in...
DNA condensation in vivo usually requires proteins and/or multivalent salts. Here, we explore the in...
Electrostatic shielding and steric blocking by histones are two significant factors that participate...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
In this report, we characterize the formation of structured condensates of 884 base pair, double str...
At physiological pH, a PAMAM dendrimer is positively charged and can effectively bind negatively cha...
The effective DNA–DNA interaction force is calculated by computer simulations with explicit tetraval...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
The internal structure of DNA-polycation complexes is investigated by synchrotron small-angle X-ray ...
DNA molecules form dense liquid-crystalline twisted phases both in vivo and in vitro. How the micros...
[[abstract]]©2009 ACS - The electrostatic complexes of polyanionic DNA with dendrimers have been con...
Polyamidoamine (PAMAM) dednrimer bearing a well-defined number of amine groups can be protonated und...
We present a comprehensive theoretical and experimental study of the solution phase properties of a ...
The control of DNA condensation, i.e. packaging or compaction, is essential for the living cell, but...
DNA condensation in vivo usually requires proteins and/or multivalent salts. Here, we explore the in...
DNA condensation in vivo usually requires proteins and/or multivalent salts. Here, we explore the in...
Electrostatic shielding and steric blocking by histones are two significant factors that participate...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
In this report, we characterize the formation of structured condensates of 884 base pair, double str...
At physiological pH, a PAMAM dendrimer is positively charged and can effectively bind negatively cha...
The effective DNA–DNA interaction force is calculated by computer simulations with explicit tetraval...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
We study sequence-dependent complexation between oligonucleotides (single-strand DNA) and various ge...
The internal structure of DNA-polycation complexes is investigated by synchrotron small-angle X-ray ...
DNA molecules form dense liquid-crystalline twisted phases both in vivo and in vitro. How the micros...