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Publication : The subcortical maternal complex controls symmetric division of mouse zygotes by regulating F-actin dynamics.

First Author  Yu XJ Year  2014
Journal  Nat Commun Volume  5
Pages  4887 PubMed ID  25208553
Mgi Jnum  J:276268 Mgi Id  MGI:6296386
Doi  10.1038/ncomms5887 Citation  Yu XJ, et al. (2014) The subcortical maternal complex controls symmetric division of mouse zygotes by regulating F-actin dynamics. Nat Commun 5:4887
abstractText  Maternal effect genes play critical roles in early embryogenesis of model organisms where they have been intensively investigated. However, their molecular function in mammals remains largely unknown. Recently, we identified a subcortical maternal complex (SCMC) that contains four proteins encoded by maternal effect genes (Mater, Filia, Floped and Tle6). Here we report that TLE6, similar to FLOPED and MATER, stabilizes the SCMC and is necessary for cleavage beyond the two-cell stage of development. We document that the SCMC is required for formation of the cytoplasmic F-actin meshwork that controls the central position of the spindle and ensures symmetric division of mouse zygotes. We further demonstrate that the SCMC controls formation of the actin cytoskeleton specifically via Cofilin, a key regulator of F-actin assembly. Our results provide molecular insight into the physiological function of TLE6, its interaction with the SCMC and their roles in the symmetric division of the zygote in early mouse development.
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