Publications by authors named "T Surrey"

The eukaryotic cytoskeleton is formed in part by microtubules, which are relatively rigid filaments with inherent structural polarity. One consequence of this polarity is that the two ends of a microtubule have different properties with important consequences for their cellular roles. These differences are often challenging to probe within the crowded environment of the cell.

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Article Synopsis
  • During cell division, the microtubule cytoskeleton undergoes significant reorganization, which is regulated by the phosphorylation of specific proteins, particularly PRC1.
  • PRC1's phosphorylation states influence how it interacts with microtubules, with CDK1 and PLK1 being key mitotic kinases that affect its binding affinity and recruitment.
  • Research shows that dephosphorylation of PRC1 is necessary for the transition from metaphase to anaphase, providing insights into how phosphorylation changes manage the structure of microtubule networks during cell division.
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Microtubules are essential for intracellular organization and chromosome segregation. They are nucleated by the γ-tubulin ring complex (γTuRC). However, isolated vertebrate γTuRC adopts an open conformation that deviates from the microtubule structure, raising the question of the nucleation mechanism.

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Chromosome segregation relies on the correct assembly of a bipolar spindle. Spindle pole self-organization requires dynein-dependent microtubule (MT) transport along other MTs. However, during M-phase RanGTP triggers MT nucleation and branching generating polarized arrays with nonastral organization in which MT minus ends are linked to the sides of other MTs.

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During mitosis, microtubules in the spindle turn over continuously. At spindle poles, where microtubule minus ends are concentrated, microtubule nucleation and depolymerization, the latter required for poleward microtubule flux, happen side by side. How these seemingly antagonistic processes of nucleation and depolymerization are coordinated is not understood.

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