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Updated: Feb 10, 2026

Microscopy of Fission Yeast Sexual Lifecycle
Published on: March 9, 2016
The XMAP215 Ortholog Alp14 Promotes Microtubule Nucleation in Fission Yeast
Ignacio Flor-Parra1, Ana Belén Iglesias-Romero2, Fred Chang3
1Department of Microbiology and Immunology, Columbia University Medical Center, New York, NY 10032, USA; Centro Andaluz de Biología del Desarrollo, Universidad Pablo de Olavide/CSIC/Junta de Andalucía, Seville 41013, Spain.
Abstract:
The organization and number of microtubules (MTs) in a cell depend on the proper regulation of MT nucleation. Currently, the mechanism of nucleation is the most poorly understood aspect of MT dynamics. XMAP215/chTOG/Alp14/Stu2 proteins are MT polymerases that stimulate MT polymerization at MT plus ends by binding and releasing tubulin dimers. Although these proteins also localize to MT organizing centers and have nucleating activity in vitro, it is not yet clear whether these proteins participate in MT nucleation in vivo. Here, we demonstrate that in the fission yeast Schizosaccharomyces pombe, the XMAP215 ortholog Alp14 is critical for efficient MT nucleation in vivo. In multiple assays, loss of Alp14 function led to reduced nucleation rate and numbers of interphase MT bundles. Conversely, activation of Alp14 led to increased nucleation frequency. Alp14 associated with Mto1 and γ-tubulin complex components, and artificially targeting Alp14 to the γ-tubulin ring complexes (γ-TuRCs) stimulated nucleation. In imaging individual nucleation events, we found that Alp14 transiently associated with a γ-tubulin particle shortly before the appearance of a new MT. The transforming acidic coiled-coil (TACC) ortholog Alp7 mediated the localization of Alp14 at nucleation sites but not plus ends, and was required for efficient nucleation but not for MT polymerization. Our findings provide the strongest evidence to date that Alp14 serves as a critical MT nucleation factor in vivo. We suggest a model in which Alp14 associates with the γ-tubulin complex in an Alp7-dependent manner to facilitate the assembly or stabilization of the nascent MT.
Insights
Alp14 is crucial for microtubule nucleation in vivo. This study shows Alp14, a microtubule polymerase, is essential for initiating new microtubules and works with Alp7 and the gamma-tubulin complex.
Area of Science:
- Cell Biology
- Molecular Biology
- Cytoskeleton Dynamics
Background:
- Microtubule (MT) organization relies on regulated nucleation, a poorly understood process.
- XMAP215/chTOG/Alp14/Stu2 proteins are known MT polymerases with in vitro nucleating activity.
Purpose of the Study:
- To investigate the in vivo role of Alp14 in microtubule nucleation.
- To elucidate the mechanism by which Alp14 participates in microtubule organization.
Main Methods:
- Genetic analysis in Schizosaccharomyces pombe.
- In vivo imaging of microtubule nucleation events.
- Biochemical assays for protein complex interactions.
Main Results:
- Loss of Alp14 function significantly reduced MT nucleation rate and interphase MT bundle numbers.
- Alp14 activation increased nucleation frequency.
- Alp14 localization to nucleation sites is mediated by Alp7 and requires association with the gamma-tubulin complex.
Conclusions:
- Alp14 is a critical in vivo microtubule nucleation factor.
- Alp14, in conjunction with Alp7 and the gamma-tubulin complex, facilitates nascent MT assembly or stabilization.
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