A metabolic entry point into micro-chlorophagy: insights from impaired maltose metabolism

As the site of photosynthesis and carbohydrate metabolism, chloroplasts are essential for phototrophic plant growth. The selective elimination of damaged chloroplasts by autophagy, a process known as chlorophagy, is crucial for chloroplast quality control. However, the mechanisms that activate chlorophagy and that underline its specificity remain poorly understood. Our recent study identified changes in maltose metabolism as a previously unrecognized trigger of a micro-chlorophagy program that depends on components of the core autophagy machinery. These findings provide a new starting point for uncovering the molecular principles that govern micro-chlorophagy. Here, we discuss emerging evidence showing that metabolic changes induce autophagic chloroplast turnover and outline the key challenges in defining the signals that initiate micro-chlorophagy.

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Publication Details

Journal
Autophagy Reports
Published
2026-08-26
DOI
https://doi.org/10.1080/27694127.2026.2721027
Primary Topic
Autophagy in Disease and Therapy
Type
article
Field-Weighted Citation Impact
0.00

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article

A metabolic entry point into micro-chlorophagy: insights from impaired maltose metabolism

Masanori Izumi, Shinya Hagihara, Sakuya Nakamura
Autophagy Reports
Autophagy in Disease and Therapy
article

A metabolic entry point into micro-chlorophagy: insights from impaired maltose metabolism

Masanori Izumi, Shinya Hagihara, Sakuya Nakamura
article en

Abstract

As the site of photosynthesis and carbohydrate metabolism, chloroplasts are essential for phototrophic plant growth. The selective elimination of damaged chloroplasts by autophagy, a process known as chlorophagy, is crucial for chloroplast quality control. However, the mechanisms that activate chlorophagy and that underline its specificity remain poorly understood. Our recent study identified changes in maltose metabolism as a previously unrecognized trigger of a micro-chlorophagy program that depends on components of the core autophagy machinery. These findings provide a new starting point for uncovering the molecular principles that govern micro-chlorophagy. Here, we discuss emerging evidence showing that metabolic changes induce autophagic chloroplast turnover and outline the key challenges in defining the signals that initiate micro-chlorophagy.

Autophagy ReportsVol. 5(1)
RIKEN Center for Sustainable Resource Science (JP)
Japan Society for the Promotion of Science
Zero hunger
Openalex Percentile: Top 10%
Autophagy in Disease and Therapy
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