昼夜节律
生物钟
泽吉伯
视交叉上核
生物
细菌昼夜节律
光对昼夜节律的影响
褪黑素
色氨酸
神经科学
生物化学
氨基酸
作者
Paul Petrus,Marlene Cervantes,Muntaha Samad,Tsugitaka Satō,Alina Chao,Shogo Sato,Kevin B. Koronowski,Grace Park,Yasmine Alam,Niklas Mejhert,Marcus M. Seldin,José Manuel Monroy Kuhn,Kenneth A. Dyar,Dominik Lutter,Pierre Baldi,Peter K. Kaiser,Cholsoon Jang,Paolo Sassone‐Corsi
标识
DOI:10.1016/j.molmet.2022.101556
摘要
The circadian clock aligns physiology with the 24-hour rotation of Earth. Light and food are the main environmental cues (zeitgebers) regulating circadian rhythms in mammals. Yet, little is known about the interaction between specific dietary components and light in coordinating circadian homeostasis. Herein, we focused on the role of essential amino acids.Mice were fed diets depleted of specific essential amino acids and their behavioral rhythms were monitored and tryptophan was selected for downstream analyses. The role of tryptophan metabolism in modulating circadian homeostasis was studied using isotope tracing as well as transcriptomic- and metabolomic- analyses.Dietary tryptophan depletion alters behavioral rhythms in mice. Furthermore, tryptophan metabolism was shown to be regulated in a time- and light- dependent manner. A multi-omics approach and combinatory diet/light interventions demonstrated that tryptophan metabolism modulates temporal regulation of metabolism and transcription programs by buffering photic cues. Specifically, tryptophan metabolites regulate central circadian functions of the suprachiasmatic nucleus and the core clock machinery in the liver.Tryptophan metabolism is a modulator of circadian homeostasis by integrating environmental cues. Our findings propose tryptophan metabolism as a potential point for pharmacologic intervention to modulate phenotypes associated with disrupted circadian rhythms.
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