The development and maintenance of multicellular organisms depends fundamentally on cell division, a series of events largely mediated by the mitotic spindle. Errors in spindle formation and/or function are often associated with severe consequences, most notably cancer. In order to elucidate the cause of such errors and the potential for therapeutic intervention, it is imperative to attain a clear understanding of how cell division normally operates. In this regard, this dissertation focuses on the activity of two microtubule-based motor proteins, Eg5 and dynein, prior to and immediately following nuclear envelope breakdown during mitosis. I show that prophase microtubules are remarkably more dynamic than their metaphase counterparts, movin...
Bipolar spindle assembly requires force to organize the microtubule network. Here, we show that thre...
SummaryAccurate chromosome segregation during mitosis relies on the organization of microtubules int...
During mitosis, the microtubule cytoskeleton is completely rearranged to form a bipolar spindle that...
The development and maintenance of multicellular organisms depends fundamentally on cell division, a...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
Mitotic spindle assembly requires the combined activity of various molecular motor proteins, includi...
SummaryDuring cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubule...
ABSTRACT Kinesin-5 is an essential mitotic motor. However, how its spatial–temporal distri-bution is...
Each time a cell divides, the microtubule cytoskeleton self-organizes into the metaphase spindle: an...
Each time a cell divides, the microtubule cytoskeleton self-organizes into the metaphase spindle: an...
SummaryMitotic spindle assembly requires the combined activity of various molecular motor proteins, ...
Kinesin-5 is an essential mitotic motor. However, how its spatial–temporal distribution is regulated...
Kinesin-5 is an essential mitotic motor. However, how its spatial-temporal distribution is regulated...
Bipolar spindle assembly requires force to organize the microtubule network. Here, we show that thre...
SummaryAccurate chromosome segregation during mitosis relies on the organization of microtubules int...
During mitosis, the microtubule cytoskeleton is completely rearranged to form a bipolar spindle that...
The development and maintenance of multicellular organisms depends fundamentally on cell division, a...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
During cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubules and p...
Mitotic spindle assembly requires the combined activity of various molecular motor proteins, includi...
SummaryDuring cell division, the molecular motor Eg5 crosslinks overlapping antiparallel microtubule...
ABSTRACT Kinesin-5 is an essential mitotic motor. However, how its spatial–temporal distri-bution is...
Each time a cell divides, the microtubule cytoskeleton self-organizes into the metaphase spindle: an...
Each time a cell divides, the microtubule cytoskeleton self-organizes into the metaphase spindle: an...
SummaryMitotic spindle assembly requires the combined activity of various molecular motor proteins, ...
Kinesin-5 is an essential mitotic motor. However, how its spatial–temporal distribution is regulated...
Kinesin-5 is an essential mitotic motor. However, how its spatial-temporal distribution is regulated...
Bipolar spindle assembly requires force to organize the microtubule network. Here, we show that thre...
SummaryAccurate chromosome segregation during mitosis relies on the organization of microtubules int...
During mitosis, the microtubule cytoskeleton is completely rearranged to form a bipolar spindle that...