Assembly of allophycocyanin from individual subunits: involvement of apo-form in the formation of trimers.

IF 3.7 3区 生物学 Q2 PLANT SCIENCES Photosynthesis Research Pub Date : 2025-03-17 DOI:10.1007/s11120-025-01145-6
Daria V Bodunova, Daniil A Gvozdev, Olesya V Bukach, Svetlana V Sidorenko, Kristina V Perfilova, Li Yu, Song Qin, Nikolai N Sluchanko, Baosheng Ge, Eugene G Maksimov
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Abstract

In cyanobacteria and red algae, allophycocyanin (APC), as well as other phycobiliproteins, is involved in the energy transfer of photosystems. Since APC is a potent fluorescent protein for imaging and biomedical applications, it is necessary to obtain purified protein in large quantities, which is currently possible by biosynthesis in bacterial systems. Here we emphasize the challenges of obtaining the trimeric form of the protein from α-APC and β-APC subunits of allophycocyanin in vitro. This approach allowed us to study the individual subunits and to perform assembly of allophycocyanin trimers in vitro. Using different spectroscopic techniques, we detected the heterogeneity of the synthesized β-APC and showed the possibility that not only holo-forms may be involved in trimer formation. Data allowed us to provide additional arguments in favor of excitonic coupling of chromophores in APC trimers.

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异藻蓝蛋白从单个亚基组装:载脂蛋白参与三聚体的形成。
在蓝藻和红藻中,异藻蓝蛋白(APC)以及其他藻胆蛋白参与光系统的能量转移。由于APC是一种用于成像和生物医学应用的有效荧光蛋白,因此有必要获得大量纯化蛋白,目前可以通过细菌系统中的生物合成来实现。在这里,我们强调了从异藻蓝蛋白α-APC和β-APC亚基中获得三聚体形式蛋白质的挑战。这种方法使我们能够研究单个亚基,并在体外进行异藻蓝蛋白三聚体的组装。利用不同的光谱技术,我们检测了合成的β-APC的异质性,并表明三聚体的形成可能不仅仅是全形态的。数据允许我们提供额外的论据,支持APC三聚体中发色团的激子耦合。
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来源期刊
Photosynthesis Research
Photosynthesis Research 生物-植物科学
CiteScore
6.90
自引率
8.10%
发文量
91
审稿时长
4.5 months
期刊介绍: Photosynthesis Research is an international journal open to papers of merit dealing with both basic and applied aspects of photosynthesis. It covers all aspects of photosynthesis research, including, but not limited to, light absorption and emission, excitation energy transfer, primary photochemistry, model systems, membrane components, protein complexes, electron transport, photophosphorylation, carbon assimilation, regulatory phenomena, molecular biology, environmental and ecological aspects, photorespiration, and bacterial and algal photosynthesis.
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