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Publication : Dynamic organelle distribution initiates actin-based spindle migration in mouse oocytes.

First Author  Duan X Year  2020
Journal  Nat Commun Volume  11
Issue  1 Pages  277
PubMed ID  31937754 Mgi Jnum  J:286667
Mgi Id  MGI:6388206 Doi  10.1038/s41467-019-14068-3
Citation  Duan X, et al. (2020) Dynamic organelle distribution initiates actin-based spindle migration in mouse oocytes. Nat Commun 11(1):277
abstractText  Migration of meiosis-I (MI) spindle from the cell center to a sub-cortical location is a critical step for mouse oocytes to undergo asymmetric meiotic cell division. In this study, we investigate the mechanism by which formin-2 (FMN2) orchestrates the initial movement of MI spindle. By defining protein domains responsible for targeting FMN2, we show that spindle-periphery localized FMN2 is required for spindle migration. The spindle-peripheral FMN2 nucleates short actin bundles from vesicles derived likely from the endoplasmic reticulum (ER) and concentrated in a layer outside the spindle. This layer is in turn surrounded by mitochondria. A model based on polymerizing actin filaments pushing against mitochondria, thus generating a counter force on the spindle, demonstrated an inherent ability of this system to break symmetry and evolve directional spindle motion. The model is further supported through experiments involving spatially biasing actin nucleation via optogenetics and disruption of mitochondrial distribution and dynamics.
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