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March 21, 2026JCI Insight0 citationsOpen Access

Reciprocal regulation between autism risk gene POGZ and circadian clock

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TWTing WuCentral South UniversityJHJiao HeMinistry of Education of the People's Republic of ChinaCXChu-jun XuCentral South University

Key Points

  • The research aims to explore the relationship between the autism risk gene Pogz and circadian rhythms.
  • Analyzed Pogz expression in the suprachiasmatic nucleus and other tissues.
  • Evaluated circadian oscillations and regulatory interactions with DBP.
  • Used Pogz-deficient mice to assess circadian periodicity and behavioral outcomes.
  • Pogz-deficient mice showed prolonged circadian periods and impaired light-induced phase shifts.
  • Deletion of Pogz resulted in deficits in social novelty and cognitive functions.
  • Cognitive impairments were influenced by light cycles and behavioral tests.

Abstract

Sleep disturbance is a prevalent yet poorly understood comorbidity in autism spectrum disorders (ASD). Here, we uncover a bidirectional regulatory axis connecting the ASD risk gene POGZ to core circadian mechanisms. We demonstrate that Pogz is widely expressed in the suprachiasmatic nucleus (SCN), the central pacemaker of the circadian rhythms and exhibits circadian oscillations in both the hypothalamus and liver with its transcription directly regulated by the circadian molecule DBP through a D-box element in its proximal enhancer. Pogz-deficient mice exhibited prolonged circadian periodicity, impaired light-induced phase shift, delayed adaption to an 8-hour advance jet-lag, and reduced SCN c-Fos activation in response to light pulses. Mechanistically, POGZ interacts with and enhances the transcription activity of CREB, a key regulator of light-induced phase resetting. Notably, Pogz deletion leads to ASD-related deficits in social novelty and cognition, with cognitive impairments influenced by both photoperiod and behavioral paradigm. Our findings thus reveal a critical, previously unrecognized intersection between an ASD risk gene and circadian clock, offering new insights into the pathogenesis of core ASD symptoms and comorbid sleep disturbances.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/69be34d16e48c4981c672ff6https://doi.org/10.1172/jci.insight.193622
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