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藻胆体在蓝细菌中含有 FNR。

Phycobilisomes Harbor FNR in Cyanobacteria.

机构信息

Department of Biology, Washington University in St. Louis, St. Louis, Missouri, USA

Photosynthetic Antenna Research Center (PARC), Washington University in St. Louis, St. Louis, Missouri, USA.

出版信息

mBio. 2019 Apr 23;10(2):e00669-19. doi: 10.1128/mBio.00669-19.

Abstract

Cyanobacterial phycobilisomes (PBSs) are photosynthetic antenna complexes that harvest light energy and supply it to two reaction centers (RCs) where photochemistry starts. PBSs can be classified into two types, depending on the presence of allophycocyanin (APC): CpcG-PBS and CpcL-PBS. Because the accurate protein composition of CpcL-PBS remains unclear, we describe here its isolation and characterization from the cyanobacterium sp. strain 6803. We found that ferredoxin-NADP oxidoreductase (or FNR), an enzyme involved in both cyclic electron transport and the terminal step of the electron transport chain in oxygenic photosynthesis, is tightly associated with CpcL-PBS as well as with CpcG-PBS. Room temperature and low-temperature fluorescence analyses show a red-shifted emission at 669 nm in CpcL-PBS as a terminal energy emitter without APC. SDS-PAGE and quantitative mass spectrometry reveal an increased content of FNR and CpcC2, a rod linker protein, in CpcL-PBS compared to that of CpcG-PBS rods, indicative of an elongated CpcL-PBS rod length and its potential functional differences from CpcG-PBS. Furthermore, we combined isotope-encoded cross-linking mass spectrometry with computational protein structure predictions and structural modeling to produce an FNR-PBS binding model that is supported by two cross-links between K of FNR and the N terminus of CpcB, one component in PBS, in both CpcG-PBS and CpcL-PBS (cross-link 1), and between the N termini of FNR and CpcB (cross-link 2). Our data provide a novel functional assembly form of phycobiliproteins and a molecular-level description of the close association of FNR with phycocyanin in both CpcG-PBS and CpcL-PBS. Cyanobacterial light-harvesting complex PBSs are essential for photochemistry in light reactions and for balancing energy flow to carbon fixation in the form of ATP and NADPH. We isolated a new type of PBS without an allophycocyanin core (i.e., CpcL-PBS). CpcL-PBS contains both a spectral red-shifted chromophore, enabling efficient energy transfer to chlorophyll molecules in the reaction centers, and an increased FNR content with various rod lengths. Identification of a close association of FNR with both CpcG-PBS and CpcL-PBS brings new insight to its regulatory role for fine-tuning light energy transfer and carbon fixation through both noncyclic and cyclic electron transport.

摘要

藻蓝蛋白体(PBS)是一种光合作用天线复合物,可收集光能并将其供应给两个光化学反应中心(RC),在那里开始光化学过程。PBS 可根据藻蓝蛋白(APC)的存在分为两种类型:CpcG-PBS 和 CpcL-PBS。由于 CpcL-PBS 的准确蛋白质组成仍不清楚,因此我们在这里描述了从蓝藻 株 6803 中分离和表征 CpcL-PBS 的过程。我们发现,铁氧还蛋白-NADP 氧化还原酶(或 FNR)是一种参与循环电子传递和产氧光合作用电子传递链末端步骤的酶,它与 CpcL-PBS 以及 CpcG-PBS 紧密相关。室温和低温荧光分析显示,CpcL-PBS 在没有 APC 的情况下作为末端能量发射器发出 669nm 的红移发射。SDS-PAGE 和定量质谱分析显示,与 CpcG-PBS 棒相比,CpcL-PBS 中的 FNR 和杆连接蛋白 CpcC2 的含量增加,表明 CpcL-PBS 棒的长度变长,并且其功能可能与 CpcG-PBS 不同。此外,我们将同位素编码交联质谱与计算蛋白质结构预测和结构建模相结合,生成了一个 FNR-PBS 结合模型,该模型得到了两个交联的支持,这两个交联分别是 FNR 的 K 与 PBS 中一个成分 CpcB 的 N 末端之间(交联 1),以及 FNR 的 N 末端与 CpcB 之间(交联 2)。我们的数据提供了一种新型的藻蓝蛋白功能组装形式,以及 FNR 与 CpcG-PBS 和 CpcL-PBS 中藻青蛋白紧密结合的分子水平描述。蓝藻光捕获复合物 PBS 对于光反应中的光化学过程以及以 ATP 和 NADPH 的形式平衡能量流向碳固定至关重要。我们分离出了一种没有藻蓝蛋白核心的新型 PBS(即 CpcL-PBS)。CpcL-PBS 既含有光谱红移的生色团,能够有效地将能量转移到反应中心的叶绿素分子中,又含有增加的 FNR 含量和各种棒长。鉴定出 FNR 与 CpcG-PBS 和 CpcL-PBS 的紧密关联,为其通过非循环和循环电子传递来精细调节光能转移和碳固定的调节作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45c9/6479007/866bac8fa1e9/mBio.00669-19-f0001.jpg

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