A Meiosis-Specific Form of the APC/C Promotes the Oocyte-to-Embryo Transition by Decreasing Levels of the Polo Kinase Inhibitor Matrimony

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Abstract

Oocytes are stockpiled with proteins and mRNA that are required to drive the initial mitotic divisions of embryogenesis. But are there proteins specific to meiosis whose levels must be decreased to begin embryogenesis properly? The Drosophila protein Cortex (Cort) is a female, meiosis-specific activator of the Anaphase Promoting Complex/Cyclosome (APC/C), an E3 ubiquitin ligase. We performed immunoprecipitation of Cortex followed by mass spectrometry, and identified the Polo kinase inhibitor Matrimony (Mtrm) as a potential interactor with Cort. In vitro binding assays showed Mtrm and Cort can bind directly. We found Mtrm protein levels to be reduced dramatically during the oocyte-to-embryo transition, and this downregulation did not take place in cort mutant eggs, consistent with Mtrm being a substrate of APCCort. We showed that Mtrm is subject to APCCort-mediated proteasomal degradation and have identified a putative APC/C recognition motif in Mtrm that when mutated partially stabilized the protein in the embryo. Furthermore, overexpression of Mtrm in the early embryo caused aberrant nuclear divisions and developmental defects, and these were enhanced by decreasing levels of active Polo. These data indicate APCCort ubiquitylates Mtrm at the oocyte-to-embryo transition, thus preventing excessive inhibition of Polo kinase activity due to Mtrm's presence. © 2013 Whitfield et al.

Figures

  • Figure 1. Cort physically interacts with Mtrm in vitro. (A) Western blot showing in vitro translated Myc-tagged Cort stably binds to GST-Mtrm, but not to GST only or beads only. In vitro translated Myc-tagged Fzy/Cdc20 is unable to bind GST-Mtrm. About 60% of each pellet sample was subjected to SDS-PAGE followed by Western blotting (remaining pellet sample was used for B). Lower panel shows 1% of total input of in vitro translated 66MycCort and 66MycFzy/Cdc20. Panels were probed with anti-Myc (9E10) antibody. Molecular weight markers are indicated to the side of the blot. (B) Coomassie stain of purified proteins used in binding assay. 25% of the final washed pellet was subjected to SDS-PAGE followed by Coomassie staining. Molecular weight markers are indicated to the side of the gel. doi:10.1371/journal.pbio.1001648.g001
  • Figure 2. Cort activity is required for Mtrm destabilization. (A) Western blots showing cort homozygous and heterozygous mutant female oocytes have equal amounts of Mtrm protein at metaphase I (stage 14 oocytes). Activated (fertilized) eggs from cort mutant females have increased Mtrm levels compared to control heterozygous unfertilized, activated eggs (cort/+). Molecular weight markers are indicated to the side of the blot. (B) Mtrm protein levels also are increased in unfertilized eggs from morula transheterozygous females (mr1/mr2) compared to unfertilized controls (mr/+). However, fzy/cdc20 transheterozygous unfertilized eggs (fzy6/fzy7) do not show elevated Mtrm levels compared to control heterozygous unfertilized eggs (fzy/+). All panels show Western blots probed with the indicated antibody. Alpha-tubulin was used to confirm equal loading. + indicates the presence of the CyO or SM6 balancer. Molecular weight markers are indicated to the side of the blot. The Fzy blot is a separate blot from the Cort and Mr blot. doi:10.1371/journal.pbio.1001648.g002
  • Figure 3. Cort expression leads to proteasome-mediated degradation of Mtrm in cell culture. (A) Western blots showing levels of Mtrm and Cort in transfected Kc167 cells. pMT-cort and pMT-66myc-mtrm were transfected into Kc167 cells. The form of transfected Cort is indicated above each lane. Only wild-type Cort leads to decreased levels of tagged Mtrm protein. The RH65 mutation results in a premature stop codon in Cort. MycMtrm band intensity is quantified below the Myc-Mtrm panel. Band intensity is normalized to tubulin and is expressed relative to empty vector. (B and C) Cells transfected with pMT-66myc-mtrm (lanes 1–3; lane 4 transfected with pMT-empty in place of mtrm) and the indicated form of Cort (WT, QW55, or pMT-empty) were split and subjected to both Western blot (B) and quantitative PCR (C). Myc-Mtrm band intensity is quantified as in (A). For qPCR, mtrm transcript levels are normalized to actin5c and shown relative to empty vector. (D) Western blot showing Mtrm protein levels over time.
  • Figure 4. cort and mtrm show an antagonistic relationship in vivo. (A and B) Fertilized eggs from females of the indicated genotypes are shown. When mtrm is mutated in conjunction with grauzone, an increased number of spindles is observed. Even mutation of a single copy of the mtrm gene dominantly suppresses the grauzone phenotype. Tubulin is shown in green and DNA in blue. Scale bar indicates 50 um. (C) Quantification of eggs from (A) and (B). The TM6 balancer siblings served as the wild-type control for mtrm. n = 167 for grauQQ36/RM61;mtrm126/+ and n = 67 for grauQQ36/RM61;TM6/+. doi:10.1371/journal.pbio.1001648.g004

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CITATION STYLE

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Whitfield, Z. J., Chisholm, J., Hawley, R. S., & Orr-Weaver, T. L. (2013). A Meiosis-Specific Form of the APC/C Promotes the Oocyte-to-Embryo Transition by Decreasing Levels of the Polo Kinase Inhibitor Matrimony. PLoS Biology, 11(9). https://doi.org/10.1371/journal.pbio.1001648

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