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UBR4/POE facilitates secretory trafficking to maintain circadian clock synchrony

Sara Hegazi, Arthur H. Cheng, Joshua J. Krupp, Takafumi Tasaki, Jiashu Liu, Daniel A. Szulc, Harrod H. Ling, Julian Rios Garcia, Shavanie Seecharran, Tayebeh Basiri, Mehdi Amiri, Zobia Anwar, Safa Ahmad, Kamar Nayal, Nahum Sonenberg

Nature Communications · 2022 · ▲ 21 citations

Abstract

Ubiquitin ligases control the degradation of core clock proteins to govern the speed and resetting properties of the circadian pacemaker. However, few studies have addressed their potential to regulate other cellular events within clock neurons beyond clock protein turnover. Here, we report that the ubiquitin ligase, UBR4/POE, strengthens the central pacemaker by facilitating neuropeptide trafficking in clock neurons and promoting network synchrony. Ubr4-deficient mice are resistant to jetlag, whereas poe knockdown flies are prone to arrhythmicity, behaviors reflective of the reduced axonal trafficking of circadian neuropeptides. At the cellular level, Ubr4 ablation impairs the export of secreted proteins from the Golgi apparatus by reducing the expression of Coronin 7, which is required for budding of Golgi-derived transport vesicles. In summary, UBR4/POE fulfills a conserved and unexpected role in the vesicular trafficking of neuropeptides, a function that has important implications for circadian clock synchrony and circuit-level signal processing.

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Provenance

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OpenAlex
DOI
10.1038/s41467-022-29244-1
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2026-07-25 MST

Cite this

APA
Hegazi, S., Cheng, A.H., Krupp, J.J., Tasaki, T., Liu, J., Szulc, D.A., Ling, H.H., Garcia, J.R., Seecharran, S., Basiri, T., Amiri, M., Anwar, Z., Ahmad, S., Nayal, K., Sonenberg, N., Liu, B., Cheng, H.M., Levine, J.D., &amp; Cheng, H.M. (2022). UBR4/POE facilitates secretory trafficking to maintain circadian clock synchrony. <em>Nature Communications</em>. https://doi.org/10.1038/s41467-022-29244-1
Vancouver
Hegazi S, Cheng AH, Krupp JJ, Tasaki T, Liu J, Szulc DA, et al. UBR4/POE facilitates secretory trafficking to maintain circadian clock synchrony. Nature Communications. 2022. doi:10.1038/s41467-022-29244-1.
BibTeX
@article{sara2022UBRPOE, title = {UBR4/POE facilitates secretory trafficking to maintain circadian clock synchrony}, author = {Sara Hegazi and Arthur H. Cheng and Joshua J. Krupp and Takafumi Tasaki and Jiashu Liu and Daniel A. Szulc and Harrod H. Ling and Julian Rios Garcia and Shavanie Seecharran and Tayebeh Basiri and Mehdi Amiri and Zobia Anwar and Safa Ahmad and Kamar Nayal and Nahum Sonenberg and Baohua Liu and Hai‐Ling Margaret Cheng and Joel D. Levine and Hai‐Ying Mary Cheng}, journal = {Nature Communications}, year = {2022}, doi = {10.1038/s41467-022-29244-1}, }

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