LOW PHOTOSYNTHETIC EFFICIENCY 1 is required for light-regulated photosystem II biogenesis in <i>Arabidopsis</i>.

Jin, Honglei; Fu, Mei; Duan, Zhikun; Duan, Sujuan; Li, Mengshu; Dong, Xiaoxiao; Liu, Bing; Feng, Dongru et al. · Proc Natl Acad Sci U S A · 2018

basic_science · Level V

Where this comes from

Abstract

Photosystem II (PSII), a multisubunit protein complex of the photosynthetic electron transport chain, functions as a water-plastoquinone oxidoreductase, which is vital to the initiation of photosynthesis and electron transport. Although the structure, composition, and function of PSII are well understood, the mechanism of PSII biogenesis remains largely elusive. Here, we identified a nuclear-encoded pentatricopeptide repeat (PPR) protein LOW PHOTOSYNTHETIC EFFICIENCY 1 (LPE1; encoded by At3g46610) in <i>Arabidopsis</i>, which plays a crucial role in PSII biogenesis. LPE1 is exclusively targeted to chloroplasts and directly binds to the 5' UTR of <i>psbA</i> mRNA which encodes the PSII reaction center protein D1. The loss of <i>LPE1</i> results in less efficient loading of ribosome on the <i>psbA</i> mRNA and great synthesis defects in D1 protein. We further found that LPE1 interacts with a known regulator of <i>psbA</i> mRNA translation HIGH CHLOROPHYLL FLUORESCENCE 173 (HCF173) and facilitates the association of HCF173 with <i>psbA</i> mRNA. More interestingly, our results indicate that LPE1 associates with <i>psbA</i> mRNA in a light-dependent manner through a redox-based mechanism. This study enhances our understanding of the mechanism of light-regulated D1 synthesis, providing important insight into PSII biogenesis and the functional maintenance of efficient photosynthesis in higher plants.

Medical subject headings