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与植物光合系统 I 结合的铁氧还蛋白 NADP 氧化还原酶(FNR)。

Binding of ferredoxin NADP oxidoreductase (FNR) to plant photosystem I.

机构信息

School of Plant Sciences and Food Security, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Ramat Aviv, Tel Aviv 69978, Israel.

School of Plant Sciences and Food Security, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Ramat Aviv, Tel Aviv 69978, Israel.

出版信息

Biochim Biophys Acta Bioenerg. 2019 Sep 1;1860(9):689-698. doi: 10.1016/j.bbabio.2019.07.007. Epub 2019 Jul 20.

Abstract

The binding of FNR to PSI has been postulated long ago, however, a clear evidence is still missing. In this work, using isothermal titration calorimetry (ITC), we found that FNR binds to photosystem I with its light harvesting complex I (PSI-LHCI) from C. reinhardtii with a 1:1 stoichiometry, a Kd of ~0.8 μM and ∆H of -20.7 kcal/mol. Titrations at different temperatures were used to determine the heat capacity change, ∆CP, of the binding, through which the size of the interface area between the proteins was assessed as ~3000 Å. In a different set of ITC experiments, introduction of various sucrose concentrations was used to estimate that ~95 water molecules are released to the solvent. These observations support the notion of a binding site shared by few of the photosystem I - light harvesting complex I (PSI-LHCI) subunits in addition to PsaE. Based on these results, a hypothetical model was built for the binding site of FNR at PSI, using known crystallographic structures of: cyanobacterial PSI in complex with ferredoxin (Fd), plant PSI-LHCI and Fd:FNR complex from cyanobacteria. FNR binding site location is proposed to be at the foot of the stromal ridge and above the inner LHCI belt. It is expected to form contacts with PsaE, PsaB, PsaF and at least one of the LHCI. In addition, a ~4.5-fold increased affinity between FNR and PSI-LHCI under crowded 1 M sucrose environment led us to conclude that in C. reinhardtii FNR also functions as a subunit of PSI-LHCI.

摘要

很久以前就有人假设 FNR 与 PSI 结合,但目前仍缺乏明确的证据。在这项工作中,我们使用等温滴定量热法(ITC)发现,FNR 以 1:1 的化学计量比、~0.8 μM 的 Kd 和-20.7 kcal/mol 的焓与来自 C. reinhardtii 的光系统 I 的光捕获复合物 I(PSI-LHCI)结合。我们使用不同温度的滴定来确定结合的热容变化∆CP,通过该变化评估蛋白质之间的界面面积大小约为 3000 Å。在另一组 ITC 实验中,我们引入了不同的蔗糖浓度来估计有约 95 个水分子被释放到溶剂中。这些观察结果支持了一个观点,即除了 PsaE 之外,还有少数 PSI-LHCI 亚基与 FNR 共享一个结合位点。基于这些结果,我们使用已知的蓝细菌 PSI 与铁氧还蛋白(Fd)、植物 PSI-LHCI 和蓝细菌的 Fd:FNR 复合物的晶体结构,为 FNR 在 PSI 上的结合位点构建了一个假设模型。FNR 结合位点的位置被提议在基质脊的底部和内部 LHCI 带的上方。预计它将与 PsaE、PsaB、PsaF 以及至少一个 LHCI 形成接触。此外,在拥挤的 1 M 蔗糖环境下,FNR 与 PSI-LHCI 之间的亲和力增加了约 4.5 倍,这使我们得出结论,在 C. reinhardtii 中,FNR 也作为 PSI-LHCI 的一个亚基发挥作用。

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