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Biochemical Reconstitution Of Branching Microtubule Nucleation

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Alfaro-Aco R, et al. Biochemical Reconstitution Of Branching Microtubule Nucleation. eLife. 2020. Link

Phase Separation Of TPX2 Enhances And Spatially Coordinates Microtubule Nucleation

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King MR and Petry S. Phase Separation Of TPX2 Enhances And Spatially Coordinates Microtubule Nucleation. Nat Commun. 2020. Link

Katanin Grips the β-Tubulin Tail through an Electropositive Double Spiral to Sever Microtubules

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Zehr EA, et al. Katanin Grips the β-Tubulin Tail through an Electropositive Double Spiral to Sever Microtubules. Dev. Cell 2019. Link

Experimentally Measured Phonon Spectrum of Microtubules

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Aslam A and Prodan C. Experimentally Measured Phonon Spectrum of Microtubules. J. Phys. D: Appl. Phys. 2019. Link

Automated Detection, Tracking, and Analysis of Dynamic Microtubules

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Kapoor V, et al. MTrack: Automated Detection, Tracking, and Analysis of Dynamic Microtubules. Scientific Reports. 2019. Link

Controlling Organization And Forces In Active Matter

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Ross T, et al. Controlling Organization And Forces In Active Matter Through Optically Defined Boundaries. Nature. 2019. Link

An Allosteric Network In Spastin Couples Multiple Activities Required For Microtubule Severing

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Sandate R, et al. An Allosteric Network In Spastin Couples Multiple Activities Required For Microtubule Severing. Nature Structural & Molecular Biology. 2019. Link

Intracellular Cargo Transport By Single-Headed Kinesin Motors

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Schimert KI, et al. Intracellular Cargo Transport By Single-Headed Kinesin Motors. PNAS. 2019. Link

Interplay between the Kinesin and Tubulin Mechanochemical Cycles

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Jiang, et al. Interplay between the Kinesin and Tubulin Mechanochemical Cycles Underlies Microtubule Tip Tracking by the Non-motile Ciliary Kinesin Kif7. Dev Cell. 2019. Link

Mechanistic Analysis of Microtubule Dynamics and Regulation

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Geyer EA. Mechanistic Analysis of Microtubule Dynamics and Regulation. UT Southwestern Dissertation. 2018. Link

Active Self-Organization of Actin-Microtubule Composite Self-Propelled Rods

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Farhadi L, et al. Active Self-Organization of Actin-Microtubule Composite Self-Propelled Rods. Front Phys. 2018. Link

Severing Enzymes Amplify Microtubule Arrays through Lattice GTP-Tubulin Incorporation

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Vemu A, et al. Severing Enzymes Amplify Microtubule Arrays through Lattice GTP-Tubulin Incorporation. Science. 2018. Link

XMAP215 Is a Microtubule Nucleation Factor That Functions Synergistically with the γ-Tubulin Ring Complex

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Thawani A, et al. XMAP215 Is a Microtubule Nucleation Factor That Functions Synergistically with the γ-Tubulin Ring Complex. Nat Cell Biol. 2018. Link

Processive Kinesin-14 HSET Exhibits Directional Flexibility

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Reinemann DN, et al. Processive Kinesin-14 HSET Exhibits Directional Flexibility Depending on Motor Traffic. Curr Biol. 2018. Link

Mechanism of how augmin directly targets the γ-tubulin ring complex to microtubules

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Song JG, et al. Mechanism of how augmin directly targets the γ-tubulin ring complex to microtubules. J Cell Biol. 2018. Link