Neurospora WC-1 Recruits SWI/SNF to Remodel frequency and Initiate a Circadian Cycle

Sep 26, 2014PLoS genetics

How the Neurospora WC-1 protein brings in a remodeling complex to reset the body clock

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Abstract

Amino acids 100-200 in White Collar-1 are essential for frq circadian expression.

  • The White Collar Complex (WCC) drives transcription of the circadian pacemaker gene frequency (frq).
  • SWI/SNF interacts with WCC and is necessary for circadian remodeling of nucleosomes at the frq gene.
  • SWI/SNF binds to the Clock box in the frq promoter, indicating a role in gene activation.
  • SWI/SNF is not required for light-induced expression of frq, suggesting distinct regulatory mechanisms.

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Key numbers

100-200
Amino Acids Required
Specific region in WC-1 identified as essential for function.
1%
FRQ Expression Levels
Expression levels in Δ strains compared to wild-type.

Full Text

What this is

  • This research investigates the role of the White Collar Complex (WCC) in initiating circadian cycles in Neurospora.
  • It identifies the SWI/SNF complex as a crucial coactivator that WC-1 recruits to remodel chromatin at the frq promoter.
  • The study reveals specific amino acids in WC-1 essential for circadian expression of the frq gene.

Essence

  • WC-1 recruits the SWI/SNF complex to remodel chromatin and activate the frq gene, initiating the in Neurospora. Specific amino acids in WC-1 are essential for this process.

Key takeaways

  • WC-1's amino acids 100-200 are essential for circadian expression of the frq gene. Deletion of these residues results in arrhythmic circadian phenotypes and significantly reduced FRQ levels.
  • SWI/SNF is required for rhythmic frq expression but not for light-induced frq expression. This indicates a specific role for SWI/SNF in the dark, highlighting its importance in circadian regulation.
  • The study demonstrates that WC-1 interacts with SWI/SNF in vivo and in vitro, confirming SWI/SNF's role as a coactivator in the transcriptional activation of frq.

Caveats

  • The study focuses on a specific model organism, Neurospora, which may limit the generalizability of the findings to other systems. Further research is needed to explore these mechanisms in different contexts.
  • The precise molecular mechanisms by which SWI/SNF remodels chromatin and affects transcription remain to be fully elucidated, necessitating additional studies.

Definitions

  • circadian cycle: A natural internal process that regulates the sleep-wake cycle and other physiological processes, roughly following a 24-hour cycle.
  • chromatin remodeling: The dynamic modification of the structure of chromatin that influences gene expression by making DNA more or less accessible to the transcription machinery.

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