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Jan Ellenberg

Showing results (151-160 of 166) with videos related to

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Molecular Systems Biology|September 30, 2015
A cell-based model system links chromothripsis with hyperploidyBalca R Mardin, Alexandros P Drainas, Sebastian M Waszak, et al.
Nature Cell Biology|June 5, 2012
Genome-wide RNAi screening identifies human proteins with a regulatory function in the early secretory pathwayJeremy C Simpson, Brigitte Joggerst, Vibor Laketa, et al.
The EMBO Journal|December 9, 2017
Topologically associating domains and chromatin loops depend on cohesin and are regulated by CTCF, WAPL, and PDS5 proteinsGordana Wutz, Csilla Várnai, Kota Nagasaka, et al.
Molecular Biology of the Cell|June 20, 2014
Integration of biological data by kernels on graph nodes allows prediction of new genes involved in mitotic chromosome condensationJean-Karim Hériché, Jon G Lees, Ian Morilla, et al.
Elife|June 18, 2019
Absolute quantification of cohesin, CTCF and their regulators in human cellsJohann Holzmann, Antonio Z Politi, Kota Nagasaka, et al.
The EMBO Journal|June 23, 2018
The replicative helicase MCM recruits cohesin acetyltransferase ESCO2 to mediate centromeric sister chromatid cohesionMiroslav P Ivanov, Rene Ladurner, Ina Poser, et al.
Nature Methods|September 29, 2019
Nuclear pores as versatile reference standards for quantitative superresolution microscopyJervis Vermal Thevathasan, Maurice Kahnwald, Konstanty Cieśliński, et al.
Nature Methods|October 27, 2019
Publisher Correction: Nuclear pores as versatile reference standards for quantitative superresolution microscopyJervis Vermal Thevathasan, Maurice Kahnwald, Konstanty Cieśliński, et al.
Nature Methods|March 29, 2025
Enabling global image data sharing in the life sciencesPeter Bajcsy, Sreenivas Bhattiprolu, Katy Börner, et al.
Nature Methods|September 23, 2006
Minimizing the risk of reporting false positives in large-scale RNAi screensChristophe J Echeverri, Philip A Beachy, Buzz Baum, et al.
Pageof 17

Showing results (151-160 of 166) with videos related to

Sort By:
Pageof 17
Molecular Systems Biology|September 30, 2015
A cell-based model system links chromothripsis with hyperploidyBalca R Mardin, Alexandros P Drainas, Sebastian M Waszak, et al.
Nature Cell Biology|June 5, 2012
Genome-wide RNAi screening identifies human proteins with a regulatory function in the early secretory pathwayJeremy C Simpson, Brigitte Joggerst, Vibor Laketa, et al.
The EMBO Journal|December 9, 2017
Topologically associating domains and chromatin loops depend on cohesin and are regulated by CTCF, WAPL, and PDS5 proteinsGordana Wutz, Csilla Várnai, Kota Nagasaka, et al.
Molecular Biology of the Cell|June 20, 2014
Integration of biological data by kernels on graph nodes allows prediction of new genes involved in mitotic chromosome condensationJean-Karim Hériché, Jon G Lees, Ian Morilla, et al.
Elife|June 18, 2019
Absolute quantification of cohesin, CTCF and their regulators in human cellsJohann Holzmann, Antonio Z Politi, Kota Nagasaka, et al.
The EMBO Journal|June 23, 2018
The replicative helicase MCM recruits cohesin acetyltransferase ESCO2 to mediate centromeric sister chromatid cohesionMiroslav P Ivanov, Rene Ladurner, Ina Poser, et al.
Nature Methods|September 29, 2019
Nuclear pores as versatile reference standards for quantitative superresolution microscopyJervis Vermal Thevathasan, Maurice Kahnwald, Konstanty Cieśliński, et al.
Nature Methods|October 27, 2019
Publisher Correction: Nuclear pores as versatile reference standards for quantitative superresolution microscopyJervis Vermal Thevathasan, Maurice Kahnwald, Konstanty Cieśliński, et al.
Nature Methods|March 29, 2025
Enabling global image data sharing in the life sciencesPeter Bajcsy, Sreenivas Bhattiprolu, Katy Börner, et al.
Nature Methods|September 23, 2006
Minimizing the risk of reporting false positives in large-scale RNAi screensChristophe J Echeverri, Philip A Beachy, Buzz Baum, et al.
Pageof 17