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PETO Interacts with Other Effectors of Cyclic Electron Flow in Chlamydomonas.

Mol Plant. 2016; 
TakahashiHiroko,SchmollingerStefan,LeeJae-Hyeok,SchrodaMichael,RappaportFabrice,WollmanFrancis-André,VallonOli
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Codon Optimization Generation of polyclonal antibody to Chlamydomonas FNR – Recombinant C. reinhardtii FNR (Cre11.g476750 excluding the first 26-AA, with an N-terminal His-tag followed by an enterokinase cleavage site) was expressed in E. coli using a codon-adapted synthetic cDNA cloned into vector E3 (GenScript, Piscataway, NJ, USA). The protein was purified using His-tag affinity and used directly as an antigen in rabbits (GenScript, Piscataway, NJ, USA) Get A Quote

摘要

While photosynthetic linear electron flow produces both ATP and NADPH, cyclic electron flow (CEF) around photosystem I (PSI) and cytochrome b6f generates only ATP. CEF is thus essential to balance the supply of ATP and NADPH for carbon fixation; however, it remains unclear how the system tunes the relative levels of linear and cyclic flow. Here, we show that PETO, a transmembrane thylakoid phosphoprotein specific of green algae, contributes to the stimulation of CEF when cells are placed in anoxia. In oxic conditions, PETO co-fractionates with other thylakoid proteins involved in CEF (ANR1, PGRL1, FNR). In PETO-knockdown strains, interactions between these CEF proteins are affected. Anoxia tri... More

关键词

STT7,chlorophyll fluorescence,state transition,sucrose gradient ultracentrifugation,time-resolved spectroscopy,tridecyl-malto