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DESIGN AND DEVELOPMENT OF THREE-DIMENSIONAL DNA CRYSTALS UTILIZING CGAA PARALLEL BASE PAIRED MOTIFS
(2013)
Three-dimensional (3D) DNA crystals hold great potential for various applications such as the development of molecular scaffolds for use in protein structure determination by x-ray crystallography. The programmability and ...
DESIGN AND SYNTHESIS OF AN ELECTRON RICH QUINONE METHIDE PRECURSOR FOR SEQUENCE -DIRECTED ALKYLATION OF DNA
(2012)
Quinone methides (QM) can be delivered to alklyate specific sites with a single strand DNA through target promoted alkylation. Previous experimental results indicated that alkylation by DNA-QM self-adduct was too slow for ...
MANIPULATION OF DNA TOPOLOGY USING AN ARTIFICIAL DNA-LOOPING PROTEIN
(2012)
DNA loop formation, mediated by protein binding, plays a broad range of roles in cellular function from gene regulation to genome compaction. While DNA flexibility has been well investigated, there has been controversy in ...
USING SINGLE MOLECULE TECHNIQUES TO DETERMINE THE MECHANISM OF DNA TOPOLOGY SIMPLIFICATION BY TYPE IIA TOPOISOMERASES
(2011)
Type IIA topoisomerases are essential, universally conserved proteins that modify DNA topology by passing one segment of duplex DNA (the transfer, or T-segment) through a transient double strand break in a second segment ...
The role of sequence in the structure of self-assembling 3D DNA crystals
(2015)
DNA is a widely used biopolymer for the construction of nanoscale objects due to its programmability and structural predictability. DNA oligonucleotides can, however, exhibit a great deal of local structural diversity. DNA ...
BIOLOGICAL CHARACTERIZATION OF TWO PUTATIVE DNA METABOLISM ENZYMES IN DEINOCOCCUS RADIODURANS
(2014)
HerA proteins are members of the FtsK-HerA superfamily of P-loop ATPases. FtsK is a bacterial protein that translocates double-stranded DNA during cell division. In archaea, herA is an essential gene that encodes an enzyme ...