Abstract

Chloroplast NADH dehydrogenase-like (NDH) complex mediates cyclic electron transport around photosystem I and chlororespiration in angiosperms. The Src homology 3 domain (SH3)-like fold protein NdhS/CRR31 is an NDH subunit that is necessary for high affinity binding of ferredoxin, indicating that chloroplast NDH functions as a ferredoxin:plastoquinone oxidoreductase. However, the mechanism of the interaction between NdhS and ferredoxin is unclear. In this study, we analyzed their interaction in planta by using site-directed mutagenesis of NdhS. In general, binding of ferredoxin to its target proteins depends on electrostatic interaction. In silico analysis predicted the presence of a positively charged pocket in the SH3-like domain of NdhS, where nine charged residues are highly conserved among plants. Systematic alteration of these sites with neutral glutamine revealed that only arginine 193 was required for high NDH activity in vivo. Further replacement of arginine 193 with negatively charged aspartate or glutamate or hydrophobic alanine significantly decreased the efficiency of ferredoxin-dependent plastoquinone reduction by NDH in ruptured chloroplasts. Similar results were obtained in in vivo analyses of NDH activity and electron transport. From these results, we propose that the positive charge of arginine 193 in the SH3-like domain of NdhS is critical for electrostatic interaction with ferredoxin in vivo.

Highlights

  • NdhS is a ferredoxin-binding subunit of chloroplast NADH dehydrogenase-like (NDH) complex

  • We propose that the positive charge of arginine 193 in the SH3like domain of NdhS is critical for electrostatic interaction with ferredoxin in vivo

  • We propose that the chloroplast NDH complex functions as a PGR5/PGRL1-independent, Fd-dependent PQ reductase and that it should be renamed as NADH dehydrogenase-like complex [12]

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Summary

Background

NdhS is a ferredoxin-binding subunit of chloroplast NADH dehydrogenase-like (NDH) complex. Chloroplast NDH is more similar to cyanobacterial NDH-1, which is believed to be the origin of chloroplast NDH, than to doxin; FNR, ferredoxin:NADPϩ oxidoreductase; NPQ, non-photochemical quenching; PGR5, proton gradient regulation 5; PGRL1, PGR5-like photosynthetic phenotype 1; NDH, NADH dehydrogenase-like; CRR31, chlororespiratory reduction 31; SH3, Src homology 3 domain; ETR, electron transport rate; AA, antimycin A; AL, actinic light; AtNdhS, A. thaliana NdhS.

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