4.6 Article

Int6 and Moe1 interact with Cdc48 to regulate ERAD and proper chromosome segregation

Journal

CELL CYCLE
Volume 9, Issue 1, Pages 147-161

Publisher

LANDES BIOSCIENCE
DOI: 10.4161/cc.9.1.10312

Keywords

eIF3; proteolysis; mitosis; spindle; proteasome

Categories

Funding

  1. NIH [CA90464, CA107187, 3F31 GM078708]
  2. Susan G. Komen Foundation [PDF0402733]
  3. Initiative for Maximizing Student Development grant [NIGMS R25GM569290]
  4. Expedition Inspiration Fund for Breast Cancer Research
  5. Medical Research Council [MC_U127584486] Funding Source: researchfish
  6. NATIONAL CANCER INSTITUTE [R01CA107187, R01CA090464] Funding Source: NIH RePORTER
  7. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [F31GM078708] Funding Source: NIH RePORTER
  8. MRC [MC_U127584486] Funding Source: UKRI

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Int6/eIF3e is implicated in tumorigenesis, but its molecular functions remain unclear. We have studied its fission yeast homolog Yin6, reporting that it regulates proteolysis by controlling the assembly/localization of proteasomes, and binds directly to another conserved protein, Moe1. In the present study, we isolated Cdc48 as a Moe1-binding protein from a yeast two-hybrid screen, and confirmed biochemically that they form a stable complex in fission yeast. Overexpressing Moe1 or Yin6 partially rescued phenotypes of cdc48 mutants; conversely, overexpressing Cdc48 partially rescued phenotypes of moe1 or yin6 mutants. Mutants defective in both Cdc48 and the Yin6-Moe1 complex showed growth defects that were far more severe than either alone. These double mutants were severely deficient in endoplasmic reticulum associated degradation (ERAD), as they were hypersensitive to accumulation of misfolded proteins. In addition, their chromosomes showed frequent defects in spindle attachment and segregation-these mitotic defects correlated with Ase1 and Bir1/survivin mislocalization. These results suggest that Cdc48, Yin6 and Moe1 act in the same protein complex to concertedly control eRAD and chromosome segregation. Many of these properties are evolutionarily conserved in humans, since human Cdc48 rescued the lethality of the yeast cdc48. mutant, and Int6 and Moe1/eIF3d bind Cdc48 in human cells.

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