Cees Dekker
Affiliations: | 1993- | Bionanoscience | Delft University of Technology, Delft, Zuid-Holland, Netherlands |
Area:
biophysics of single biomolecules, nanobiologyWebsite:
http://www.ceesdekker.net/Google:
"Cees Dekker"Bio:
http://ceesdekkerlab.tudelft.nl/people/
http://knaw.nl/nl/leden/leden/5252
http://symposium.vvtp.tudelft.nl/speakers/#Prof. C. Dekker
http://ceesdekker.net/files/LongCV.pdf
Mean distance: 12.69 | S | N | B | C | P |
Cross-listing: Physics Tree
Parents
Sign in to add mentorToine Arts | grad student | 1988 | Utrecht (Physics Tree) | |
(co-sponsor) | ||||
Harold W. de Wijn | grad student | 1988 | Utrecht (Physics Tree) | |
(Two-dimensional spin glasses) |
Children
Sign in to add traineeHenk W. Ch. Postma | grad student | 2001 | Delft University of Technology (Physics Tree) |
Felix J.H. Hol | grad student | 2014 | Delft University of Technology |
Calin Plesa | grad student | 2010-2015 | Delft University of Technology |
Alexey Bezryadin | post-doc | 1997 | Delft University of Technology (Physics Tree) |
Derek M. Stein | post-doc | 2006 | Delft University of Technology |
Diego Krapf | post-doc | 2007 | Delft University of Technology (Physics Tree) |
Magnus P. Jonsson | post-doc | 2010-2013 | Delft University of Technology |
Eugene Kim | post-doc | 2017-2021 | Delft University of Technology (Physics Tree) |
Biswajit Pradhan | post-doc | 2018-2021 | Delft University of Technology |
BETA: Related publications
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Publications
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Barth R, Pradhan B, Kim E, et al. (2023) Author Correction: Testing pseudotopological and nontopological models for SMC-driven DNA loop extrusion against roadblock-traversal experiments. Scientific Reports. 13: 11616 |
Barth R, Pradhan B, Kim E, et al. (2023) Testing pseudotopological and nontopological models for SMC-driven DNA loop extrusion against roadblock-traversal experiments. Scientific Reports. 13: 8100 |
Kim E, Barth R, Dekker C. (2023) Looping the Genome with SMC Complexes. Annual Review of Biochemistry |
Holub M, Birnie A, Japaridze A, et al. (2022) Extracting and characterizing protein-free megabase-pair DNA for experiments. Cell Reports Methods. 2: 100366 |
Pradhan B, Barth R, Kim E, et al. (2022) SMC complexes can traverse physical roadblocks bigger than their ring size. Cell Reports. 41: 111491 |
Kim E, Gonzalez AM, Pradhan B, et al. (2022) Condensin-driven loop extrusion on supercoiled DNA. Nature Structural & Molecular Biology. 29: 719-727 |
Tišma M, Panoukidou M, Antar H, et al. (2022) ParB proteins can bypass DNA-bound roadblocks via dimer-dimer recruitment. Science Advances. 8: eabn3299 |
Hulleman CN, Thorsen RØ, Kim E, et al. (2021) Simultaneous orientation and 3D localization microscopy with a Vortex point spread function. Nature Communications. 12: 5934 |
Alfaro JA, Bohländer P, Dai M, et al. (2021) The emerging landscape of single-molecule protein sequencing technologies. Nature Methods. 18: 604-617 |
Ryu JK, Bouchoux C, Liu HW, et al. (2021) Bridging-induced phase separation induced by cohesin SMC protein complexes. Science Advances. 7 |