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Boettcher B, et al.  (2012) Nuclear envelope morphology constrains diffusion and promotes asymmetric protein segregation in closed mitosis. J Cell Biol 197(7):921-37

Abstract: During vegetative growth, Saccharomyces cerevisiae cells divide asymmetrically: the mother cell buds to produce a smaller daughter cell. This daughter asymmetrically inherits the transcription factor Ace2, which activates daughter-specific transcriptional programs. In this paper, we investigate when and how this asymmetry is established and maintained. We show that Ace2 asymmetry is initiated in the elongated, but undivided, anaphase nucleus. At this stage, the nucleoplasm was highly compartmentalized; little exchange was observed for nucleoplasmic proteins between mother and bud. Using photobleaching and in silico modeling, we show that diffusion barriers compartmentalize the nuclear membranes. In contrast, the behavior of proteins in the nucleoplasm is well explained by the dumbbell shape of the anaphase nucleus. This compartmentalization of the nucleoplasm promoted Ace2 asymmetry in anaphase nuclei. Thus, our data indicate that yeast cells use the process of closed mitosis and the morphological constraints associated with it to asymmetrically segregate nucleoplasmic components.

Status: Published Type: Journal Article PubMed ID: 22711697

Topics addressed in this paper

Number of different genes curated to this paper: 16

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Topics Genes linked to topics (#1 - 10 )
ACE2 ARP1 ASE1 BUB2 BUD6 CIN8 CNM67 DYN1 HMG1 HMG2
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Topics Genes linked to topics (#11 - 16 )
IRS4 NSG1 NUP49 SHS1 SLK19 SRC1
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