Annual review of microbiology

Internal Body Clocks in Parasites: New Insights Beyond What We Know

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Abstract

Essence

This review suggests parasites, especially Plasmodium, may use noncanonical timing circuits to coordinate development with host rhythms.

Evidence

Review of emerging mechanistic evidence in parasitic systems, focusing on malaria parasites and candidate regulators such as ApiAP2 transcription factors, chromatin regulators, and noncoding RNAs rather than canonical clock genes.

Caveat

It is a hypothesis-generating review, and the proposed parasite timing mechanisms are not established by direct functional proof in this abstract.

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What this is

  • are 24-hour cycles regulating biological processes in various organisms.
  • This review focuses on emerging evidence that parasites, particularly malaria parasites, have intrinsic timekeeping abilities.
  • It explores regulatory mechanisms like transcriptional-translational and .
  • Understanding these mechanisms could lead to new therapeutic strategies and insights into biological timing.

Essence

  • Malaria parasites exhibit intrinsic that synchronize with host cycles, despite lacking canonical clock genes. This review outlines potential regulatory mechanisms and implications for parasite biology and treatment.

Key takeaways

  • Malaria parasites possess intrinsic rhythms that align with host circadian cycles, indicating autonomous timing mechanisms. These rhythms persist even in conditions devoid of host cues, suggesting a robust internal clock.
  • The review discusses two main regulatory paradigms: and , highlighting the role of various molecular components in maintaining these rhythms.
  • Targeting the circadian mechanisms of parasites could provide novel therapeutic strategies, as disrupting these rhythms can significantly affect parasite fitness and transmission.

Caveats

  • The precise molecular components driving in malaria parasites remain largely unknown, limiting our understanding of their timing mechanisms.
  • While intrinsic rhythms have been observed, the specific host cues that synchronize these rhythms with host cycles are not fully understood.

Definitions

  • circadian rhythms: Roughly 24-hour physiological cycles regulating biological processes, enabling organisms to anticipate environmental changes.
  • transcriptional-translational feedback loops: Regulatory mechanisms where gene expression oscillates in a 24-hour cycle, controlling physiological and behavioral rhythms.
  • posttranscriptional feedback loops: Regulatory mechanisms that maintain circadian rhythms primarily through modifications after transcription, rather than through transcription itself.

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