Institut de Biologie et Technologies de Saclay (IBiTec-S), CNRS URA 2096, Bât 532, CEA Saclay, 91191 Gif-sur-Yvette, France.
J Photochem Photobiol B. 2011 Jul-Aug;104(1-2):154-7. doi: 10.1016/j.jphotobiol.2011.02.010. Epub 2011 Feb 13.
The redox potential of Q(A) in Photosystem II (PSII) from Thermosynechococcus elongatus was titrated monitoring chlorophyll fluorescence. A high potential form (E(m)=+60 ± 25 mV) was found in the absence of Mn(4)Ca, the active site for water oxidation. The low potential form (E(m)=-60 ± 48 mV), which is difficult to measure in conventional titration experiments, could be "locked in" by cross-linking the active enzyme. This indicates that the presence of Mn(4)Ca is relayed to the quinone site by significant structural changes in the protein. The presence of high and low potential forms agrees with what has been seen in plants, algae from our lab and in T. elongatus (Shibamoto et al., Biochemistry 48 (2009) 10682-10684). In the latter work, the potentials of Q(A) were shifted to lower potentials compared to other measurements. The redox potential of Q(A) in Mn-depleted PSII from spinach was titrated in the presence of redox mediators and the midpoint potential was shifted by 80 mV towards a more negative value compared to titrations without mediators. The lower values of the midpoint potential of the (Q(A)/Q(A)(-)) redox couple in the literature could be due to a perturbation due to a specific mediator.
通过监测叶绿素荧光,对来自嗜热栖热菌的光系统 II(PSII)中 Q(A)的氧化还原电位进行滴定。在没有 Mn(4)Ca(水氧化的活性位点)的情况下,发现了一种高电势形式(E(m)=+60 ± 25 mV)。低电势形式(E(m)=-60 ± 48 mV),这在常规滴定实验中很难测量,可以通过交联活性酶“锁定”。这表明 Mn(4)Ca 的存在通过蛋白质的显著结构变化传递到醌位点。高电势形式和低电势形式的存在与在植物、我们实验室的藻类和嗜热栖热菌中观察到的情况一致(Shibamoto 等人,生物化学 48(2009)10682-10684)。在后一项工作中,与其他测量结果相比,Q(A)的氧化还原电位向更低的电位移动。在存在氧化还原介体的情况下,对菠菜 Mn 耗尽 PSII 中的 Q(A)进行滴定,与没有介体的滴定相比,中点电位向更负的方向移动 80 mV。文献中(Q(A)/Q(A)(-))氧化还原偶中点电位的较低值可能是由于特定介体引起的干扰。