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Showing 1–5 of 5 results
Advanced filters: Author: Stefan Golfier Clear advanced filters
  • Intracellular transport along microtubules involves runs, pauses and directional reversals. Here, D’Souza et al. mimic these dynamics in vitro using a minimal system of Dynein-Dynactin-BICD2 and Kinesin-3 on vesicles without the need for regulators.

    • Ashwin I. D’Souza
    • Rahul Grover
    • Stefan Diez
    ResearchOpen Access
    Nature Communications
    Volume: 14, P: 1-17
  • A simulation study integrates existing artificial selection methods to develop a ‘top-down’ approach to engineering complex, stable microbial communities based on iterated randomization and selection of community structure and function.

    • Chang-Yu Chang
    • Jean C. C. Vila
    • Alvaro Sanchez
    Research
    Nature Ecology & Evolution
    Volume: 5, P: 1011-1023
  • Real-time deformability cytometry allows the continuous mechanical characterization of cells with high throughput and is applied to distinguish cell-cycle phases, track differentiated cells and profile cell populations in whole blood.

    • Oliver Otto
    • Philipp Rosendahl
    • Jochen Guck
    Research
    Nature Methods
    Volume: 12, P: 199-202
  • In vitro experiments and theory reveal that a protein associated with DNA transcription mediates condensation of a protein–DNA phase via a first-order transition. The forces uncovered in the study may contribute to chromatin remodelling in the cell.

    • Thomas Quail
    • Stefan Golfier
    • Jan Brugués
    ResearchOpen Access
    Nature Physics
    Volume: 17, P: 1007-1012
  • A DNA-binding protein condenses on DNA via a switch-like transition. Surface condensation occurs at preferential DNA locations suggesting collective sequence readout and enabling sequence-specificity robustness with respect to protein concentration.

    • Jose A. Morin
    • Sina Wittmann
    • Stephan W. Grill
    ResearchOpen Access
    Nature Physics
    Volume: 18, P: 271-276