Hanke Guy Thomas, Hase Toshiharu
Laboratory of Protein Profiling Function Proteomics, Institute for Protein Research, Osaka University, Osaka, Japan.
Photochem Photobiol. 2008 Nov-Dec;84(6):1302-9. doi: 10.1111/j.1751-1097.2008.00411.x. Epub 2008 Jul 30.
Ferredoxin (Fd) is the soluble protein that accepts electrons from photosystem I (PSI) and makes them available to stromal enzymes in higher plant chloroplasts. In linear electron flow, Fd mainly donates electrons to Fd:NADPH reductase (FNR) which generates NADPH for use in the Calvin cycle, but Fd may also return electrons to the thylakoid plastoquinone pool, forming a cyclic electron flow. Many higher plants contain two different photosynthetic Fd proteins, but there are no conserved sequence differences that allow their division into evolutionary groups. In the model C3 photosynthesizing dicot, Arabidopsis thaliana, there are two such photosynthetic Fds, and we have exploited RNA interference (RNAi) techniques to specifically decrease transcript abundance of different Fds in this plant. Surprisingly, the perturbation of photosynthesis, as measured by cholorophyll fluorescence, in RNAi lines of the two different photosynthetic Fds shows opposite trends. Linear electron flow is retarded in lines with lower Fd2 (the most abundant Fd species) levels and under certain circumstances enhanced in lines with lower Fd1 (the minor isoprotein) levels. These data are evidences for at least partially differentiated roles of Fd1 and Fd2 in photosynthetic electron transfer, possibly in the partition of electrons into linear and cyclic electron flow.
铁氧化还原蛋白(Fd)是一种可溶性蛋白,它从光系统I(PSI)接受电子,并将其提供给高等植物叶绿体中的基质酶。在线性电子流中,Fd主要将电子捐赠给Fd:NADPH还原酶(FNR),后者生成NADPH用于卡尔文循环,但Fd也可能将电子返回至类囊体质体醌库,形成循环电子流。许多高等植物含有两种不同的光合Fd蛋白,但不存在可将它们分为进化组的保守序列差异。在模式C3光合双子叶植物拟南芥中,有两种这样的光合Fd,我们利用RNA干扰(RNAi)技术特异性降低了该植物中不同Fd的转录本丰度。令人惊讶的是,通过叶绿素荧光测量,两种不同光合Fd的RNAi株系中光合作用的扰动呈现相反趋势。在Fd2(最丰富的Fd种类)水平较低的株系中线性电子流受到抑制,而在某些情况下,在Fd1(次要同工蛋白)水平较低的株系中线性电子流增强。这些数据证明Fd1和Fd2在光合电子传递中至少具有部分不同的作用,可能在电子分配到线性和循环电子流中发挥作用。