Department of Molecular Plant Science, LMU Munich, Planegg-Martinsried, 82152, Germany.
Department of Plant Biochemistry, Ruhr-University Bochum, Bochum 44801, Germany.
Plant Cell. 2022 Jan 20;34(1):655-678. doi: 10.1093/plcell/koab253.
Thylakoids are the highly specialized internal membrane systems that harbor the photosynthetic electron transport machinery in cyanobacteria and in chloroplasts. In Synechocystis sp. PCC 6803, thylakoid membranes (TMs) are arranged in peripheral sheets that occasionally converge on the plasma membrane (PM) to form thylakoid convergence membranes (TCMs). TCMs connect several thylakoid sheets and form local contact sites called thylapses between the two membrane systems, at which the early steps of photosystem II (PSII) assembly occur. The protein CurT is one of the main drivers of TCM formation known so far. Here, we identify, by whole-genome sequencing of a curT- suppressor strain, the protein anchor of convergence membranes (AncM) as a factor required for the attachment of thylakoids to the PM at thylapses. An ancM- mutant is shown to have a photosynthetic phenotype characterized by reductions in oxygen-evolution rate, PSII accumulation, and PS assembly. Moreover, the ancM- strain exhibits an altered thylakoid ultrastructure with additional sheets and TCMs detached from the PM. By combining biochemical studies with fluorescence and correlative light-electron microscopy-based approaches, we show that AncM is an integral membrane protein located in biogenic TCMs that form thylapses. These data suggest an antagonistic function of AncM and CurT in shaping TM ultrastructure.
类囊体是高度特化的内部膜系统,它在蓝细菌和叶绿体中承载着光合作用电子传递机制。在集胞藻 PCC 6803 中,类囊体膜(TMs)排列在周边的薄片中,偶尔会汇聚到质膜(PM)上形成类囊体汇聚膜(TCMs)。TCMs 连接几个类囊体片,并在两个膜系统之间形成局部接触位点,称为类囊体间隙,光合作用系统 II(PSII)的早期组装在此发生。目前已知,蛋白 CurT 是 TCM 形成的主要驱动因素之一。在这里,我们通过对 curT 抑制菌株的全基因组测序,确定了汇聚膜的蛋白锚定(AncM)作为将类囊体附着到 PM 上的因素。ancM-突变体表现出光合表型,其特征是氧气释放率、PSII 积累和 PS 组装减少。此外,ancM-菌株表现出类囊体超微结构的改变,有额外的薄片和与 PM 分离的 TCMs。通过将生化研究与荧光和基于相关光电子显微镜的方法相结合,我们表明 AncM 是一种位于生物发生的 TCM 中的整合膜蛋白,形成类囊体间隙。这些数据表明 AncM 和 CurT 在塑造 TM 超微结构方面具有拮抗作用。