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Updated: Jun 12, 2026

Manipulation and Analysis of Cell Cycle-Dependent Processes in Budding Yeast
Published on: September 26, 2025
SEC14L2 couples chaperone-mediated autophagy to microtubule stability by targeting Stathmin 1
Guangyuan Li1,2, Hanfang Xu3, Bo Gong4,5
1Laboratory of Molecular Developmental Biology, State Key Laboratory of Membrane Biology, School of Life Sciences, Tsinghua University, Beijing, China.
Abstract:
Microtubule dynamic instability underpins cellular architecture, division, and intracellular trafficking, yet how selective proteolytic pathways tune core microtubule regulators remains incompletely understood. Here, we identify SEC14L2 (SEC14-like lipid binding 2), a multidomain lipid transfer protein, as a determinant of microtubule organization and cellular architecture by limiting the accumulation of the microtubule-destabilizing factor Stathmin 1 (STMN1). We further show that STMN1 is a substrate of chaperone-mediated autophagy (CMA) and that SEC14L2 is required for efficient CMA-dependent STMN1 turnover. SEC14L2 loss is associated with reduced CMA activity, STMN1 stabilization, collapse of the microtubule network, and perinuclear organelle clustering. In breast cancer cell models, perturbation of this SEC14L2-CMA-STMN1 axis alters responses to microtubule-targeting agents.
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