Skip to main content
Health & Medicine

Cell size modulates SBF and Whi5 chromatin association to regulate the Start of the budding yeast cell cycle.

| Source: Proceedings of the National Academy of Sciences of the United States of America

Cell growth and division are tightly coordinated with cell size. In budding yeast, increasing cell size promotes the G1/S transition, called Start , by activating the transcription factor SBF, which regulates cell cycle-dependent gene expression. Part of this regulation arises because the concentration of the SBF inhibitor Whi5 decreases as cells grow. However, cells lacking Whi5 can still maintain accurate size control when the SBF activator Cln3 is also removed, indicating that additional size

Cell growth and division are tightly coordinated with cell size. In budding yeast, increasing cell size promotes the G1/S transition, called Start , by activating the transcription factor SBF, which regulates cell cycle-dependent gene expression. Part of this regulation arises because the concentration of the SBF inhibitor Whi5 decreases as cells grow. However, cells lacking Whi5 can still maintain accurate size control when the SBF activator Cln3 is also removed, indicating that additional size control mechanisms exist. To understand how cell size is translated into the activity of SBF-regulated promoters, we quantified the chromatin-association dynamics of Whi5 and SBF in live cells using single-molecule fluorescence microscopy. We found that increasing cell size is associated with a reduced fraction of Whi5 molecules in a low-mobility state, consistent with chromatin association, and an increased fraction of SBF molecules in this state, together with a higher abundance of SBF relative to Whi5. Mobility trends under basal and Whi5 overexpression conditions indicate that Whi5 restricts SBF association with chromatin. The onset of CLN1 / CLN2 expression, two SBF targets required for commitment to division, coincides with the cell size at which SBF and Whi5 mobility changes occur. Increased Whi5 mobility reflects changes in chromatin-association frequency rather than residence time, as Whi5 and SBF dwell times on chromatin remain approximately 10 s and are largely independent of cell size. Together, these results show how changes in SBF and Whi5 abundance and chromatin association transmit size information to the genome to regulate the Start transition in budding yeast.

Read the original source →

Related Stories

Health & Medicine

Cellular remodeling during reversible life-stage transition in sessile ciliates: Genomic and transcriptomic insights.

Unraveling mechanisms driving dramatic life-stage transitions in response to environmental stress is central to understanding cellular adaptation. We studied a distinctive group of sessile ciliates that undergo profound morphological and organellar remodeling when transitioning from sessile trophonts to motile telotrochs. We generated chromosome-level genomes for two colonial species ( Campanella sinica , Epistylis hentscheli ) and one solitary species ( Vorticella campanula ), revealing genome

Continue reading
Health & Medicine

Zinc mediates the allosteric activation of Shiftless to suppress programmed -1 ribosomal frameshifting.

Many medically important viruses, including HIV-1 and severe acute respiratory syndrome coronavirus 2, utilize programmed -1 ribosomal frameshifting (-1 PRF) to synthesize certain proteins essential for the viral life cycle. Shiftless (SHFL) is an interferon-simulated, zinc finger-containing protein that restricts -1 PRF and viral infection. However, its regulatory spectrum and mechanism remain largely unclear. Here, we showed that SHFL orthologs potently suppress a wide variety of viral and cel

Continue reading
Health & Medicine

Tandem RNA-binding domain architecture drives PKR activation through an intramolecular interface.

Tandem repeats of RNA-binding domains (RBDs), often linked by intrinsically disordered sequences, are prevalent among RNA-binding proteins (RBPs). The inherent flexibility of these arrangements, however, raises the question of whether such domains can adopt defined configurations critical for function. Here, we reveal that in Protein Kinase R (PKR)-an RBP that triggers the innate immune response upon sensing double-stranded RNAs (dsRNAs)-its two dsRNA-binding domains (dsRBDs) assemble into a uni

Continue reading
Health & Medicine

Targeted extracellular degradation of LRP8 promotes ferroptosis in cancer cells.

Tumor reliance on antioxidant defenses creates a vulnerability to ferroptosis, yet strategies to therapeutically disable these systems remain limited. Here, we identify targeted degradation of the selenium uptake receptor lipoprotein receptor-related protein 8 (LRP8) as an effective approach to decrease the abundance of the ferroptosis-protective enzyme glutathione peroxidase 4 (GPX4). Using bispecific cytokine receptor-targeting chimeras (KineTACs) that couple LRP8 to cytokine receptor internal

Continue reading
Health & Medicine

LAT condensation gates PLCγ1 activation via bimodal LAT phosphorylation.

T cells can respond to even a single molecular binding event of antigen to a TCR. A key step in the TCR signaling pathway that definitively exhibits this single-molecule response is the initiation of calcium influx by activation of PLCγ1 in the LAT protein condensate. Here, we describe detailed kinetic measurements examining how protein condensation of LAT regulates activation of PLCγ1 using a reconstituted membrane system. The results reveal that membrane recruitment of PLCγ1

Continue reading