SummaryProper microtubule polarity underlies overall neuronal polarity, but mechanisms for maintaining microtubule polarity are not well understood. Previous live imaging in Drosophila dendritic arborization neurons showed that while microtubules are uniformly plus-end out in axons, dendrites possess uniformly minus-end-out microtubules [1]. Thus, maintaining uniform microtubule polarity in dendrites requires that growing microtubule plus ends entering branch points be actively directed toward the cell body. A model was proposed in which EB1 tracks the plus ends of microtubules growing into a branch and an associated kinesin-2 motor walks along a static microtubule to steer the plus end toward the cell body. However, the fast plus-end bindi...
We present a computational model to test a “polarity sorting” mechanism for microtubule (MT) organiz...
The organization of structurally polarized microtubules into networks is critical for efficient carg...
AbstractNeuronal growth cones are the most sensitive among eukaryotic cells in responding to directi...
SummaryProper microtubule polarity underlies overall neuronal polarity, but mechanisms for maintaini...
SummaryBackgroundIn many differentiated cells, microtubules are organized into polarized noncentroso...
SummaryProper organization of microtubule networks depends on microtubule-associated proteins and mo...
Proper organization of microtubule networks depends on microtubule-associated proteins and motors th...
Neurons contain polarised microtubule arrays essential for neuronal function. How microtubule nuclea...
Neurons contain polarised microtubule arrays essential for neuronal function. How microtubule nuclea...
SummaryBackgroundBreaking cell symmetry, known as polarization, requires dynamic reorganization of m...
AbstractMicrotubules play a critical role in establishing asymmetry in many cell types. Recent work ...
Microtubules are essential for polarized transport in neurons, but how their organization guides mot...
Microtubules are cytoskeletal polymers that serve as long-distance tracks for intracellular transpor...
Microtubules are polarised polymers nucleated by multi-protein γ-tubulin ring complexes (γ-TuRCs). W...
SummaryRecently, we demonstrated that kinesin-1 can slide microtubules against each other, providing...
We present a computational model to test a “polarity sorting” mechanism for microtubule (MT) organiz...
The organization of structurally polarized microtubules into networks is critical for efficient carg...
AbstractNeuronal growth cones are the most sensitive among eukaryotic cells in responding to directi...
SummaryProper microtubule polarity underlies overall neuronal polarity, but mechanisms for maintaini...
SummaryBackgroundIn many differentiated cells, microtubules are organized into polarized noncentroso...
SummaryProper organization of microtubule networks depends on microtubule-associated proteins and mo...
Proper organization of microtubule networks depends on microtubule-associated proteins and motors th...
Neurons contain polarised microtubule arrays essential for neuronal function. How microtubule nuclea...
Neurons contain polarised microtubule arrays essential for neuronal function. How microtubule nuclea...
SummaryBackgroundBreaking cell symmetry, known as polarization, requires dynamic reorganization of m...
AbstractMicrotubules play a critical role in establishing asymmetry in many cell types. Recent work ...
Microtubules are essential for polarized transport in neurons, but how their organization guides mot...
Microtubules are cytoskeletal polymers that serve as long-distance tracks for intracellular transpor...
Microtubules are polarised polymers nucleated by multi-protein γ-tubulin ring complexes (γ-TuRCs). W...
SummaryRecently, we demonstrated that kinesin-1 can slide microtubules against each other, providing...
We present a computational model to test a “polarity sorting” mechanism for microtubule (MT) organiz...
The organization of structurally polarized microtubules into networks is critical for efficient carg...
AbstractNeuronal growth cones are the most sensitive among eukaryotic cells in responding to directi...