A dual role of <i>Arabidopsis</i> PAL nuclear localization in fine tuning flavonoid biosynthesis.

Sun, Linhui; Yang, Zifeng; Shan, Xiaotong; Wang, Nan; Liu, Zile; Gao, Xiang; Gu, Yangnan; Zhao, Qiao · Sci Adv · 2026

basic_science · Level V

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Abstract

The phenylpropanoid pathway is essential for plant development and environmental adaptation, producing metabolites such as flavonoids, lignin, and salicylic acid. Phenylalanine ammonia-lyase (PAL) catalyzes the first committed step in this pathway and has long been viewed as a cytoplasmic enzyme. Here, we reveal that PAL responds to elevated flavonoid levels in <i>Arabidopsis</i> by undergoing phosphorylation and relocating to the nucleus. Nuclear sequestration of PAL reduces its cytoplasmic abundance and enzymatic activity, resulting in rapid suppression of phenylpropanoid metabolic flux. In parallel, nuclear-localized PAL interacts with the transcription factor TT8, disrupting MBW complex formation and down-regulating flavonoid biosynthetic genes. This dual mechanism enables PAL to act as a metabolic feedback regulator that dynamically adjusts flavonoid production in response to internal metabolic states. Our findings redefine PAL as both a biosynthetic enzyme and a responsive integrator of cellular metabolic status, establishing a previously unknown paradigm for feedback control in plant specialized metabolism.

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