New Step by Step Map For cees dekker

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Human Rad51 filaments on double- and single-stranded DNA: correlating common and irregular forms with recombination purpose.

Dynamics of initiation, termination and reinitiation of DNA translocation with the motor protein EcoR124I

Deposition and atomic force microscopy of person phthalocyanine polymers in between nanofabricated electrodes

2010, designed a different way (‘wedging transfer’) to govern nanostructures; first report of DNA translocation via graphene nanopores; and recognized hybrid nanopores by directed insertion of α-hemolysin into stable-point out nanopores

Microbiology has only existed for a century, because we started to research micro-organisms a lot more significantly. I believed nanobiology was an correct time period, because all molecular Organic relevant interactions occur at the nanoscale: a protein is a few nanometres in size, DNA is 2 nm thick.’

Many associated developments followed, in which our group proven unique transistor variants such as single-electron transistors at space temperature and intramolecular nanotube junctions that acted as rectifying diodes, and coupled several transistors into tiny proof-of-theory electronic circuits.

Learning DNA loop extrusion by SMC proteins for chromosome architecture with one-molecule assays.

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Bulk-area coupling identifies the mechanistic relationship in between Min-protein patterns in vivo and in vitro

[fourteen] In 2005 Dekker grew to become linked to Netherlands-vast conversations about Intelligent Style and design, a movement that he has due to the fact clearly distanced himself from. Dekker advocates that science and religion aren't in opposition but may be harmonized.

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2008, initial observation of protein-coated DNA translocation by nanopores; fixed the origin of your electrophoretic force on DNA in nanopores; discovered a substantial velocity improve of microtubules in electric fields; found an anomalous electro-hydrodynamic orientation of microtubules; and resolved the origin of noise in carbon nanotubes in liquid

2004, discovery of new physics in translocation of DNA through nanopores; initially experimental examine of ions conduction in nanofluidic channels; initial electrochemistry with unique one-wall carbon nanotubes; STM detection and control of phonons in carbon nanotubes; first electrical docking of microtubules on kinesin-coated nanostructures; initially biophysics characterization in the mechanical properties of double-stranded RNA; and initially single-molecule analyze of DNA translocation by a https://www.ceesdekker.net restriction-modification enzyme.

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