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Related papers: Dynein dynamics at the microtubule plus-ends and c…

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Microtubules self-organize to form part of the cellular cytoskeleton. They give cells their shape and play a crucial role in cell division and intracellular transport. Strikingly, microtubules driven by motor proteins reorganize into stable…

Adaptation and Self-Organizing Systems · Physics 2024-05-16 Nikita Frolov , Bram Bijnens , Daniel Ruiz-Reynés , Lendert Gelens

Intracellular bidirectional transport of cargo on microtubule filaments is achieved by the collective action of oppositely directed dynein and kinesin motors. Experiments have found that in certain cases, inhibiting the activity of one type…

A model for the unidirectional movement of dynein is presented based on structural observations and biochemical experimental results available. In this model, the binding affinity of dynein for microtubule is independent of its nucleotide…

Biomolecules · Quantitative Biology 2007-08-18 Ping Xie , Shuo-Xing Dou , Peng-Ye Wang

Long-distance bidirectional transport of organelles depends on the motor proteins kinesin and dynein. Using quantitative data obtained from a fungal model system, we previously developed ASEP-models of bidirectional motion of motors along…

Statistical Mechanics · Physics 2012-11-22 Congping Lin , Peter Ashwin , Gero Steinberg

During the asymmetric division of the Caenorhabditis elegans nematode zygote, the polarity cues distribution and daughter cell fates depend on the correct positioning of the mitotic spindle, which results from both centering and cortical…

Subcellular Processes · Quantitative Biology 2018-04-06 Hélène Bouvrais , Laurent Chesneau , Sylvain Pastezeur , Marie Delattre , Jacques Pécréaux

A model for the processive movement of dynein is presented based on experimental observations available. In the model, the change from strong microtubule-binding to weak binding of dynein is determined naturally by the variation of the…

Biomolecules · Quantitative Biology 2007-05-23 Ping Xie , Shuo-Xing Dou , Peng-Ye Wang

Microtubule (MT) radial arrays or asters establish the internal topology of a cell by interacting with organelles and molecular motors. We proceed to understand the general pattern forming potential of aster-motor systems using a…

Subcellular Processes · Quantitative Biology 2025-08-15 Neha Khetan , Chaitanya A. Athale

Cytoplasmic dynein exhibits a directional processive movement on microtubule filaments and is known to move in steps of varying length based on the number of ATP molecules bound to it and the load that it carries. It is experimentally…

Biological Physics · Physics 2014-08-22 S. Sumathy , S. V. M. Satyanarayana

The bending of cilia and flagella is driven by forces generated by dynein motor proteins. These forces slide adjacent microtubule doublets within the axoneme, the motile cytoskeletal structure. To create regular, oscilla- tory beating…

Biological Physics · Physics 2015-06-19 V. Mukundan , P. Sartori , V. F. Geyer , F. Julicher , J. Howard

Bidirectional cargo transport by molecular motors in cells is a complex phenomenon, in which the cargo (usually a vesicle) alternately moves in retrograde and anterograde directions. In this case, teams of oppositely pulling motors (eg.,…

Subcellular Processes · Quantitative Biology 2015-06-05 Deepak Bhat , Manoj Gopalakrishnan

Pigment organelles known as melanosomes disperse or aggregate in a melanophore in response to hormones. These movements are mediated by the microtubule motors kinesin-2 and cytoplasmic dynein. However, the force generation mechanism of…

Biological Physics · Physics 2019-03-27 Shin Hasegawa , Takashi Sagawa , Kazuho Ikeda , Yasushi Okada , Kumiko Hayashi

Motor proteins display widely different stepping patterns as they move on microtubule tracks, from the deterministic linear or helical motion performed by the protein kinesin to the uncoordinated random steps made by dynein. How these…

Subcellular Processes · Quantitative Biology 2015-09-09 Zsolt Bertalan , Zoe Budrikis , Caterina A. M. La Porta , Stefano Zapperi

Dynein motors exhibit catch bonding, where the unbinding rate of the motors from microtubule filaments decreases with increasing opposing load. The implications of this catch bond on the transport properties of dynein-driven cargo are yet…

Biological Physics · Physics 2023-11-17 Naren Sundararajan , Sougata Guha , Sudipto Muhuri , Mithun K. Mitra

Recent experiments have demonstrated that dynein motor exhibits catch bonding behaviour, in which the unbinding rate of a single dynein decreases with increasing force, for a certain range of force. Motivated by these experiments, we…

Biological Physics · Physics 2016-02-09 Anil Nair , Sameep Chandel , Mithun K Mitra , Sudipto Muhuri , Abhishek Chaudhuri

Left-right axis specification establishes embryonic laterality through asymmetric signaling cascades originating at the cellular scale. We previously reported the presence of a directionality bias in confined pairs of endothelial (and…

Cell Behavior · Quantitative Biology 2026-03-31 Egun Im , Ghina Badih , Laetitia Kurzawa , Andreas Buttenschön , Calina Copos

Cytoplasmic dyneins transport cellular organelles by moving on a microtubule filament. It has been found recently that depending on the applied force and the concentration of the adenosine triphosphate (ATP) molecules, dynein's step size…

Statistical Mechanics · Physics 2009-11-13 Sutapa Mukherji

Motor-driven cytoskeletal remodeling in cellular systems can often be accompanied by a diffusive-like effect at local scales, but distinguishing the contributions of the ordering process, such as active contraction of a network, from this…

Biological Physics · Physics 2024-08-22 Soichi Hirokawa , Heun Jin Lee , Rachel A Banks , Ana I Duarte , Bibi Najma , Matt Thomson , Rob Phillips

Within cells, vesicles and proteins are actively transported several micrometers along the cytoskeletal filaments. The transport along microtubules is propelled by dynein and kinesin motors, which carry the cargo in opposite directions.…

Biological Physics · Physics 2020-05-20 Robin Jose , Ludger Santen

A common type of cytoskeletal morphology involves multiple converging microbutubules with their minus ends collected and stabilized by a microtubule organizing center (MTOC) in the interior of the cell. This arrangement enables the…

Cell Behavior · Quantitative Biology 2023-01-04 Niranjan Sarpangala , Brooke Randell , Ajay Gopinathan , Oleg Kogan

Neuronal growth cones are the most sensitive amongst eukaryotic cells in responding to directional chemical cues. Although a dynamic microtubule cytoskeleton has been shown to be essential for growth cone turning, the precise nature of…

Subcellular Processes · Quantitative Biology 2019-05-16 Saurabh Mahajan , Chaitanya A. Athale
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