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Kinetochore alignment within the metaphase plate is regulated by centromere stiffness and microtubule depolymerases
Khuloud Jaqaman
, Emma M. King
, Ana C. Amaro
, Jennifer R. Winter
, Jonas F. Dorn
, Hunter L. Elliott
, Nunu Mchedlishvili
, Sarah E. McClelland
, Iain M. Porter
, Markus Posch
, Alberto Toso
, Gaudenz Danuser (Lead / Corresponding author)
, Andrew D. McAinsh (Lead / Corresponding author)
, Patrick Meraldi (Lead / Corresponding author)
,
Jason R. Swedlow
(Lead / Corresponding author)
Research output
:
Contribution to journal
›
Article
›
peer-review
118
Citations (Scopus)
311
Downloads (Pure)
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Dive into the research topics of 'Kinetochore alignment within the metaphase plate is regulated by centromere stiffness and microtubule depolymerases'. Together they form a unique fingerprint.
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Keyphrases
Stiffness
100%
Oscillation
100%
Kinetochore
100%
Microtubule Depolymerase
100%
Centromere
100%
Metaphase Plate
100%
Mechanical Linkage
75%
Prometaphase
25%
Mitosis
25%
Anaphase
25%
Eukaryotic Cells
25%
Oscillatory Activity
25%
Spindle Pole
25%
Live Cell Imaging
25%
Imaging Assay
25%
Centromeric Cohesion
25%
Plate Thickness
25%
Computational Image Analysis
25%
Oscillation Period
25%
Centromeric Chromatin
25%
Tight Control
25%
Biochemistry, Genetics and Molecular Biology
Metaphase
100%
Kinetochore
100%
Centromere
100%
Rigidity
100%
Gene Linkage
60%
Breathing
60%
Dynamics
20%
Anaphase
20%
Prometaphase
20%
Cellular Imaging
20%
Oscillatory Motion
20%