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Nucleation and Dynamics of Golgi-derived Microtubules
Anna A W M Sanders1, Irina Kaverina1
1Department of Cell and Developmental Biology, Vanderbilt University Medical Center Nashville, TN, USA.
Abstract:
Integrity of the Golgi apparatus requires the microtubule (MT) network. A subset of MTs originates at the Golgi itself, which in this case functions as a MT-organizing center (MTOC). Golgi-derived MTs serve important roles in post-Golgi trafficking, maintenance of Golgi integrity, cell polarity and motility, as well as cell type-specific functions, including neurite outgrowth/branching. Here, we discuss possible models describing the formation and dynamics of Golgi-derived MTs. How Golgi-derived MTs are formed is not fully understood. A widely discussed model implicates that the critical step of the process is recruitment of molecular factors, which drive MT nucleation (γ-tubulin ring complex, or γ-TuRC), to the Golgi membrane via specific scaffolding interactions. Based on recent findings, we propose to introduce an additional level of regulation, whereby MT-binding proteins and/or local tubulin dimer concentration at the Golgi helps to overcome kinetic barriers at the initial nucleation step. According to our model, emerging MTs are subsequently stabilized by Golgi-associated MT-stabilizing proteins. We discuss molecular factors potentially involved in all three steps of MT formation. To preserve proper cell functioning, a balance must be maintained between MT subsets at the centrosome and the Golgi. Recent work has shown that certain centrosomal factors are important in maintaining this balance, suggesting a close connection between regulation of centrosomal and Golgi-derived MTs. Finally, we will discuss potential functions of Golgi-derived MTs based on their nucleation site location within a Golgi stack.
Insights
Microtubules (MTs) originating from the Golgi apparatus, acting as a MT-organizing center (MTOC), are crucial for cell structure and function. This study proposes models for their formation, involving tubulin regulation and stabilization by specific proteins.
Area of Science:
- Cell Biology
- Cytoskeletal Dynamics
Background:
- Golgi apparatus integrity relies on the microtubule (MT) network.
- A subset of MTs originates from the Golgi, which acts as a MT-organizing center (MTOC).
- Golgi-derived MTs are vital for post-Golgi trafficking, cell polarity, motility, and neurite outgrowth.
Purpose of the Study:
- To discuss models for the formation and dynamics of Golgi-derived MTs.
- To propose an enhanced model incorporating MT-binding proteins and local tubulin concentration for MT nucleation.
- To explore the regulation and functions of Golgi-derived MTs.
Main Methods:
- Literature review and theoretical modeling of MT formation.
- Discussion of molecular factors involved in MT nucleation and stabilization.
- Analysis of the interplay between centrosomal and Golgi-derived MTs.
Main Results:
- A model is proposed where MT nucleation at the Golgi is regulated by MT-binding proteins and tubulin concentration.
- Emerging MTs are subsequently stabilized by Golgi-associated proteins.
- A balance between centrosomal and Golgi-derived MTs is crucial for cell function.
Conclusions:
- Golgi-derived MTs formation involves recruitment of nucleation factors, overcoming kinetic barriers, and stabilization.
- Regulation of Golgi-derived MTs is linked to centrosomal MT regulation.
- Understanding Golgi-derived MTs' nucleation site is key to their diverse functions.
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