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Human Rad51 filaments on double- and solitary-stranded DNA: correlating regular and irregular kinds with recombination functionality.
Multicolor imaging of the bacterial nucleoid and mobile division proteins with blue, orange, and in the vicinity of-infrared fluorescent proteins
Our perform was speedily adopted up by Some others, most notably by Phaedon Avouris and colleagues at IBM, who in Oct 1998 released their conclusions on transistors constructed from one- and multi-walled carbon nanotubes in Used Physics Letters.
2012, discovery that nucleoid occlusion underlies the accuracy of bacterial mobile division; and very first at any time review in the dynamics DNA supercoils and the invention of supercoil hopping
Immediate immobilization of native yeast iso-one cytochrome c on bare gold: quickly electron relay to redox enzymes and zeptomole protein-movie voltammetry
Considering that 2000 he moved to single-molecule biophysics and nanobiology, with research from DNA supercoiling experiments of nucleosomes and DNA maintenance proteins to DNA translocation by nanopores. Just lately his analysis has centered on finding out cell division with microbes on chip, when his supreme interest is during the course of recognizing artificial cells.
Atomic drive microscopy exhibits that vaccinia topoisomerase IB generates filaments on DNA in a very cooperative fashion
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Resolving the step size in condensin-pushed DNA loop extrusion identifies ATP binding given that the step-generating process
An integrated microfluidic platform for quantifying drug permeation throughout biomimetic vesicle membranes
Several new phenomena were learned, and he and his analysis team proven a leading situation On this field of exploration. Dekker and his study team found new physics of nanotubes and cees dekker explored the feasibility of molecular electronics. In 1998, they have been the very first to develop a transistor depending on only one nanotube molecule.
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Illustration (two) of bending configurations in 3D simulations of DNA rods on nanopores. A part of the membrane is revealed in grey, the rim of your pore is highlighted in purple, and a 3D rendering with the motion of your DNA rod is shown.