Javascript must be enabled to continue!
Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
View through CrossRef
Abstract
Multiple microtubule-directed activities concentrate on mitotic chromosomes to ensure their faithful segregation. These include couplers and dynamics regulators localized at the kinetochore, the microtubule interface built on centromeric chromatin, as well as motor proteins recruited to kinetochores and chromatin. Here, we describe an in vivo approach in the
C. elegans
one-cell embryo in which removal of the major microtubule-directed activities on mitotic chromosomes is compared to the selective presence of individual activities. Our approach reveals that the kinetochore dynein module, comprised of cytoplasmic dynein and its kinetochore-specific adapters, is sufficient to biorient chromosomes; by contrast, this module is unable to support congression. In coordination with orientation, the dynein module directs removal of outermost kinetochore components, including dynein itself, independently of the other microtubule-directed activities and kinetochore-localized protein phosphatase 1. These observations indicate that the kinetochore dynein module is sufficient to biorient chromosomes and to direct remodeling of the outer kinetochore in a microtubule attachment state-sensitive manner.
Springer Science and Business Media LLC
Title: Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
Description:
Abstract
Multiple microtubule-directed activities concentrate on mitotic chromosomes to ensure their faithful segregation.
These include couplers and dynamics regulators localized at the kinetochore, the microtubule interface built on centromeric chromatin, as well as motor proteins recruited to kinetochores and chromatin.
Here, we describe an in vivo approach in the
C.
elegans
one-cell embryo in which removal of the major microtubule-directed activities on mitotic chromosomes is compared to the selective presence of individual activities.
Our approach reveals that the kinetochore dynein module, comprised of cytoplasmic dynein and its kinetochore-specific adapters, is sufficient to biorient chromosomes; by contrast, this module is unable to support congression.
In coordination with orientation, the dynein module directs removal of outermost kinetochore components, including dynein itself, independently of the other microtubule-directed activities and kinetochore-localized protein phosphatase 1.
These observations indicate that the kinetochore dynein module is sufficient to biorient chromosomes and to direct remodeling of the outer kinetochore in a microtubule attachment state-sensitive manner.
Related Results
Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
Kinetochore dynein is sufficient to biorient chromosomes and remodel the outer kinetochore
ABSTRACT
Multiple microtubule-directed activities concentrate on chromosomes during mitosis to ensure their accurate distribution to daughter cel...
Microtubule crossbridging by Chlamydomonas dynein
Microtubule crossbridging by Chlamydomonas dynein
AbstractDynein, obtained from axonemes of Chlamydomonas, binds by both its A and B ends to microtubules assembled from twice cycled (2 ×) and purified (6S) brain tubulin as well as...
Structural polarity of kinetochore microtubules in PtK1 cells.
Structural polarity of kinetochore microtubules in PtK1 cells.
The polarity of kinetochore microtubules (MTs) has been studied in lysed PtK1 cells by polymerizing hook-shaped sheets of neurotubulin onto walls of preexisting cellular MTs in a f...
Dynein-2 requires HSP90 chaperone activity to ensure robust retrograde IFT and ciliogenesis
Dynein-2 requires HSP90 chaperone activity to ensure robust retrograde IFT and ciliogenesis
ABSTRACT
The microtubule motor dynein-2 is responsible for retrograde intraflagellar transport (IFT), a process crucial for cilia assembly and cilium-dependent si...
Evidence that kinetochore microtubules in crane-fly spermatocytes disassemble during anaphase primarily at the poleward end
Evidence that kinetochore microtubules in crane-fly spermatocytes disassemble during anaphase primarily at the poleward end
ABSTRACT
Anaphase chromosome motion involves the disassembly of kinetochore microtubules. We wished to determine the site of kinetochore microtubule disassembly duri...
CDK1-dependent N-terminal NuMA phosphorylation promotes dynein-dynactin-NuMA assembly for accurate chromosome segregation
CDK1-dependent N-terminal NuMA phosphorylation promotes dynein-dynactin-NuMA assembly for accurate chromosome segregation
Abstract
The microtubule-based motor dynein and its cofactor dynactin fulfil essential functions throughout the cell cycle, including organelle t...
Cellular and Viral Determinants of HSV-1 Entry and Intracellular Transport towards Nucleus of Infected Cells
Cellular and Viral Determinants of HSV-1 Entry and Intracellular Transport towards Nucleus of Infected Cells
Abstract
HSV-1 employs cellular motor proteins and modulates kinase pathways to facilitate intracellular virion capsid transport. Previously, we and others have sho...
Chromosome biorientation requires Aurora B’s spatial separation from its outer kinetochore substrates but not its turnover at kinetochores
Chromosome biorientation requires Aurora B’s spatial separation from its outer kinetochore substrates but not its turnover at kinetochores
SummaryFor correct chromosome segregation in mitosis, sister kinetochores must interact with microtubules from opposite spindle poles (biorientation). For this, aberrant kinetochor...

