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在水溶液中直接组装稳定的叶绿素络合物与 II 型水溶性叶绿素蛋白。

Direct Assembly in Aqueous Solutions of Stable Chlorophyllide Complexes with Type II Water-soluble Chlorophyll Proteins.

机构信息

Migal-Galilee Research Institute, Kiryat Shmona, Israel.

Agricultural Research Organization, Volcani Center, Rishon Lezyion, Israel.

出版信息

Photochem Photobiol. 2021 Jul;97(4):732-738. doi: 10.1111/php.13398. Epub 2021 Mar 8.

DOI:10.1111/php.13398
PMID:33570189
Abstract

Water-soluble chlorophyll-binding proteins (WSCPs) from Brassicaceae constitute a small family of non-photosynthetic proteins that may provide a useful benchmark and model system for studying molecular aspects of chlorophyll-protein interactions such as the tuning of absorption and emission spectra, and binding selectivity. WSCP apo-proteins are readily expressed by recombinant DNA techniques and can be assembled in vitro with natural and synthetic chlorophyll derivatives. The complexes with native chlorophylls are exceptionally stable toward thermal dissociation and protein denaturation due to hydrophobic interactions with the chlorophyll's phytyl chains that stabilize the core of the WSCP tetrameric complexes. However, assembly requires the use of detergents or water-in-oil emulsions to introduce the hydrophobic pigments into the water-soluble apo-proteins. Here, we explore the direct assembly of recombinant WSCPs with the water-soluble phytyl-free chlorophyll analogue chlorophyllide a in aqueous solutions. We show that the complexes formed by mixing chlorophyllide and WSCP apo-proteins are exclusively tetrameric, and while they lack the extreme thermostability of the respective chlorophyll complexes, they are still thermostable up to around 60°C. Their absorption and CD spectra are very similar to the chlorophyll complexes albeit slight peak shifts and broadening of the bands indicate variations in pigment and protein conformations, and less rigid structures. Simplifying the assembly process of WSCPs opens new possibilities for their use in modelling natural chlorophyll-protein complexes, and as templates for designing novel artificial protein-pigment complexes.

摘要

来自十字花科的水溶性叶绿素结合蛋白 (WSCP) 构成了一个小的非光合蛋白家族,它可能为研究叶绿素-蛋白相互作用的分子方面提供一个有用的基准和模型系统,例如吸收和发射光谱的调谐,以及结合选择性。WSCP 脱辅基蛋白可以通过重组 DNA 技术容易地表达,并可以在体外与天然和合成叶绿素衍生物组装。由于与叶绿素的植基链的疏水相互作用,与天然叶绿素的复合物对热解离和蛋白质变性具有异常的稳定性,这些植基链稳定了 WSCP 四聚体复合物的核心。然而,组装需要使用洗涤剂或油包水乳剂将疏水性颜料引入水溶性脱辅基蛋白中。在这里,我们探索了在水溶液中直接将重组 WSCP 与水溶性无植基叶绿素类似物叶绿酸 a 组装。我们表明,通过混合叶绿酸和 WSCP 脱辅基蛋白形成的复合物仅为四聚体,虽然它们缺乏各自叶绿素复合物的极端热稳定性,但它们仍然在约 60°C 下保持热稳定性。它们的吸收和 CD 光谱与叶绿素复合物非常相似,尽管略微的峰位移和带的展宽表明颜料和蛋白质构象以及结构刚性的变化。简化 WSCP 的组装过程为其在模拟天然叶绿素-蛋白复合物以及作为设计新型人工蛋白-颜料复合物的模板方面开辟了新的可能性。

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