Katanin 60

Katanin 60 is the ATPase-containing catalytic subunit of katanin, a microtubule-severing protein complex that remodels the cytoskeleton. Using energy from ATP hydrolysis, Katanin 60 engages tubulin within the microtubule lattice and promotes local destabilization, cutting microtubules into shorter fragments that can be reorganized or regrown. In neuroscience, this activity helps regulate microtubule dynamics during neuronal polarization, axon extension, dendrite branching, and other processes that depend on precise cytoskeletal remodeling. Studying Katanin 60 clarifies how neurons shape and maintain their long, structurally complex processes and may illuminate mechanisms underlying neurodevelopmental and neurodegenerative disorders.

Katanin 60 - Related Videos

Research

JoVE Journal - Chemistry

Preparation and Characterization of C60/Graphene Hybrid Nanostructures

0 Views •

Cited by 1 •

2018

Here we present a protocol for the fabrication of C60/graphene hybrid nanostructures by physical thermal evaporation. Particularly, the proper manipulation of deposition and annealing conditions allow the control over the creation of 1D and quasi 1D C60 structures on rippled graphene.

Electrospray Deposition of Uniform Thickness Ge23Sb7S70 and As40S60 Chalcogenide Glass Films

0 Views •

Cited by 8 •

2016

A method of uniform thickness solution-derived chalcogenide glass film deposition is demonstrated using computer numerical controlled motion of a single-nozzle electrospray.

Production of Modified Autologous Conditioned Serum and Ex Vivo Assessment of Its Healing Potential in Murine Corneal Epithelium

0 Views •

Cited by 2 •

2023

This article describes a protocol to simplify the process and render the preparation of autologous conditioned serum (ACS) less expensive. No special syringes or surface-coated glass beads are needed. Moreover, the modified ACS (mACS) has competitive advantages over conventional autologous serum in the corneal wound healing of murine eyes ex vivo.

Scaling of Engineered Vascular Grafts Using 3D Printed Guides and the Ring Stacking Method

0 Views •

Cited by 6 •

2017

Scalable engineered blood vessels would improve clinical applicability. Using easily sizable 3D-printed guides, rings of vascular smooth muscle were created and stacked into a tubular form, forming a vascular graft. Grafts can be sized to meet the range of human coronary artery dimensions by simply changing the 3D-printed guide size.

Systematic Analysis of In Vitro Cell Rolling Using a Multi-well Plate Microfluidic System

0 Views •

Cited by 4 •

2013

This study used a multi-well plate microfluidic system, significantly increasing throughput of cell rolling studies under physiologically relevant shear flow. Given the importance of cell rolling in the multi-step cell homing cascade and the importance of cell homing following systemic delivery of exogenous populations of cells in patients, this system offers potential as a screening platform to improve cell-based therapy.

View All Results

FAQs

Related Topics