Abstract Background The topoisomerase I (TopI) reaction intermediate consists of an enzyme covalently linked to a nicked DNA molecule, known as a TopI-DNA complex, that can be trapped by inhibitors and results in failure of re-ligation. Attempts at new derivative designs for TopI inhibition are enthusiastically being pursued, and TopI inhibitors were developed for a variety of applications. Surface plasmon resonance (SPR) was recently used in TopI-inhibition studies. However, most such immobilized small molecules or short-sequence nucleotides are used as ligands onto sensor chips, and TopI was used as the analyte that flowed through the sensor chip. Methods We established a sensor chip on which the TopI protein is immobilized to evaluate To...
DNA topoisomerases are essential enzymes in the control and in the maintenance of the topological st...
AbstractTopoisomerase IIβ binding to DNA has been analysed by surface plasmon resonance for the firs...
<p>(A) Computer-aided molecular modeling of EVO docking to TOP1. (B) Surface plasmon resonance senso...
Sensors capable of quantitative real-time measurements may present the easiest and most accurate way...
Background: Eukaryotic topoisomerase 1 is a potential target of anti-parasitic and anti-cancer drugs...
We report a mechanism-based screening technique to rapidly identify eukaryotic topoisomerase I targe...
Most activity-based molecular probes are designed to target enzymes that catalyze the breaking of ch...
ABSTRACT: Vaccinia type I DNA topoisomerase exhibits a strong site-specific ribonuclease activity wh...
The detection of DNA hybridization in medical diagnostics ought to be rapid, sensitive and specific....
The study of interaction between human Topoisomerase I (hTopo I) and the appropriate sequences of DN...
We report a mechanism-based screening technique to rapidly identify eukaryotic topoisomerase I targe...
DNA sensors can be used as robust tools for high-throughput drug screening of small molecules with t...
We report on the development of a new platform technology for the detection of genetic variations by...
Human topoisomerase 1B is a ubiquitous and essential enzyme involved in relaxing the topological sta...
peer reviewedSeveral biochemical and biophysical methods are available to study the intercalation of...
DNA topoisomerases are essential enzymes in the control and in the maintenance of the topological st...
AbstractTopoisomerase IIβ binding to DNA has been analysed by surface plasmon resonance for the firs...
<p>(A) Computer-aided molecular modeling of EVO docking to TOP1. (B) Surface plasmon resonance senso...
Sensors capable of quantitative real-time measurements may present the easiest and most accurate way...
Background: Eukaryotic topoisomerase 1 is a potential target of anti-parasitic and anti-cancer drugs...
We report a mechanism-based screening technique to rapidly identify eukaryotic topoisomerase I targe...
Most activity-based molecular probes are designed to target enzymes that catalyze the breaking of ch...
ABSTRACT: Vaccinia type I DNA topoisomerase exhibits a strong site-specific ribonuclease activity wh...
The detection of DNA hybridization in medical diagnostics ought to be rapid, sensitive and specific....
The study of interaction between human Topoisomerase I (hTopo I) and the appropriate sequences of DN...
We report a mechanism-based screening technique to rapidly identify eukaryotic topoisomerase I targe...
DNA sensors can be used as robust tools for high-throughput drug screening of small molecules with t...
We report on the development of a new platform technology for the detection of genetic variations by...
Human topoisomerase 1B is a ubiquitous and essential enzyme involved in relaxing the topological sta...
peer reviewedSeveral biochemical and biophysical methods are available to study the intercalation of...
DNA topoisomerases are essential enzymes in the control and in the maintenance of the topological st...
AbstractTopoisomerase IIβ binding to DNA has been analysed by surface plasmon resonance for the firs...
<p>(A) Computer-aided molecular modeling of EVO docking to TOP1. (B) Surface plasmon resonance senso...