4.8 Article

Phosphorylation of luminal region of the SUN-domain protein Mps3 promotes nuclear envelope localization during meiosis

Journal

ELIFE
Volume 10, Issue -, Pages -

Publisher

eLIFE SCIENCES PUBL LTD
DOI: 10.7554/eLife.63119

Keywords

meiosis; chromosome motion; nuclear envelope; sun domain; Mps3; phosphorylation; S; cerevisiae

Categories

Funding

  1. BMC program
  2. Graduate School of Science, Osaka University, JASSO
  3. MEXT
  4. Institute for Protein Research
  5. JSPS KAKENHI [22125001, 22125002, 15H05973, 16H04742, 19H00981]
  6. Grants-in-Aid for Scientific Research [15H05973, 22125002, 19H00981, 22125001, 16H04742] Funding Source: KAKEN

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During meiosis, CDK and DDK regulate the dynamics of Mps3 on the nuclear envelope by mediating the formation of Mps3 clusters and telomere clustering. The luminal region of Mps3 plays a crucial role in the meiosis-specific localisation of Mps3 on the nuclear envelope. Phosphorylation-dependent regulation of Mps3 localisation on the nuclear envelope is essential for meiotic chromosome motion and nuclear envelope remodelling.
During meiosis, protein ensembles in the nuclear envelope (NE) containing SUN- and KASH-domain proteins, called linker nucleocytoskeleton and cytoskeleton (LINC) complex, promote the chromosome motion. Yeast SUN-domain protein, Mps3, forms multiple meiosis-specific ensembles on NE, which show dynamic localisation for chromosome motion; however, the mechanism by which these Mps3 ensembles are formed during meiosis remains largely unknown. Here, we showed that the cyclin-dependent protein kinase (CDK) and Dbf4-dependent Cdc7 protein kinase (DDK) regulate meiosis-specific dynamics of Mps3 on NE, particularly by mediating the resolution of Mps3 clusters and telomere clustering. We also found that the luminal region of Mps3 juxtaposed to the inner nuclear membrane is required for meiosis-specific localisation of Mps3 on NE. Negative charges introduced by meiosis-specific phosphorylation in the luminal region of Mps3 alter its interaction with negatively charged lipids by electric repulsion in reconstituted liposomes. Phospho-mimetic substitution in the luminal region suppresses the localisation of Mps3 via the inactivation of CDK or DDK. Our study revealed multi-layered phosphorylation-dependent regulation of the localisation of Mps3 on NE for meiotic chromosome motion and NE remodelling.

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