Bin Guo
Photosystem II (PSII) repair is a fundamental physiological process governing the resilience of photosynthetic organisms against high light (HL) stress. A recent study by Yao et al. (2025) provides significant mechanistic insights into this process within the model green alga Chlamydomonas reinhardtii. The authors characterize the lumenal immunophilin CYN38, a homolog of the Arabidopsis CYP38, identifying it as a critical auxiliary protein for the biogenesis and stabilization of PSII. Through the characterization of a unique insertion mutant, cyn38, which produces a C-terminally extended protein, the study elucidates that homodimerization of CYN38—mediated by its C-terminus—is a prerequisite for its association with PSII core subunits. This review analyzes the authors' findings regarding the dominant-negative nature of the mutant protein, the evolutionary conservation of immunophilin functions without enzymatic activity, and the structural basis of the PSII repair cycle. We conclude that this study offers a pivotal advancement in understanding the molecular "chaperoning" required for maintaining photosynthetic efficiency under stress.