Molecular Plant Biology, Department of Life Technologies, University of Turku, FIN-20014 Turku, Finland.
Institute of Biosciences and Bioresources, National Research Council of Italy, Sesto Fiorentino, 50019 Firenze, Italy.
Int J Mol Sci. 2021 Jul 29;22(15):8126. doi: 10.3390/ijms22158126.
The thylakoid lumen houses proteins that are vital for photosynthetic electron transport, including water-splitting at photosystem (PS) II and shuttling of electrons from cytochrome to PSI. Other lumen proteins maintain photosynthetic activity through biogenesis and turnover of PSII complexes. Although all lumen proteins are soluble, these known details have highlighted interactions of some lumen proteins with thylakoid membranes or thylakoid-intrinsic proteins. Meanwhile, the functional details of most lumen proteins, as well as their distribution between the soluble and membrane-associated lumen fractions, remain unknown. The current study isolated the soluble free lumen (FL) and membrane-associated lumen (MAL) fractions from , and used gel- and mass spectrometry-based proteomics methods to analyze the contents of each proteome. These results identified 60 lumenal proteins, and clearly distinguished the difference between the FL and MAL proteomes. The most abundant proteins in the FL fraction were involved in PSII assembly and repair, while the MAL proteome was enriched in proteins that support the oxygen-evolving complex (OEC). Novel proteins, including a new PsbP domain-containing isoform, as well as several novel post-translational modifications and N-termini, are reported, and bi-dimensional separation of the lumen proteome identified several protein oligomers in the thylakoid lumen.
类囊体腔室中容纳着对光合作用电子传递至关重要的蛋白质,包括光系统 (PS) II 的水分解和细胞色素到 PSI 的电子穿梭。其他腔室蛋白通过 PSII 复合物的生物发生和周转来维持光合作用活性。尽管所有腔室蛋白都是可溶的,但这些已知的细节突出了一些腔室蛋白与类囊体膜或类囊体内在蛋白的相互作用。同时,大多数腔室蛋白的功能细节,以及它们在可溶性和与膜相关的腔室部分之间的分布,仍然未知。本研究从 中分离出可溶的游离腔室 (FL) 和与膜相关的腔室 (MAL) 部分,并使用基于凝胶和质谱的蛋白质组学方法分析每个蛋白质组的内容。这些结果鉴定了 60 种腔室蛋白,并清楚地区分了 FL 和 MAL 蛋白质组之间的差异。FL 部分中最丰富的蛋白质参与 PSII 的组装和修复,而 MAL 蛋白质组富含支持氧释放复合物 (OEC) 的蛋白质。报告了新的蛋白质,包括一种新的含有 PsbP 结构域的同工型,以及几种新的翻译后修饰和 N 末端,并通过二维分离腔室蛋白质组在类囊体腔室中鉴定出几种蛋白质寡聚物。