Cano-Estrada Araceli, Vázquez-Acevedo Miriam, Villavicencio-Queijeiro Alexa, Figueroa-Martínez Francisco, Miranda-Astudillo Héctor, Cordeiro Yraima, Mignaco Julio A, Foguel Debora, Cardol Pierre, Lapaille Marie, Remacle Claire, Wilkens Stephan, González-Halphen Diego
Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, México D.F., Mexico.
Biochim Biophys Acta. 2010 Aug;1797(8):1439-48. doi: 10.1016/j.bbabio.2010.02.024. Epub 2010 Feb 25.
Mitochondrial F1F0-ATP synthase of chlorophycean algae is a dimeric complex of 1600 kDa constituted by 17 different subunits with varying stoichiometries, 8 of them conserved in all eukaryotes and 9 that seem to be unique to the algal lineage (subunits ASA1-9). Two different models proposing the topological assemblage of the nine ASA subunits in the ATP synthase of the colorless alga Polytomella sp. have been put forward. Here, we readdressed the overall topology of the enzyme with different experimental approaches: detection of close vicinities between subunits based on cross-linking experiments and dissociation of the enzyme into subcomplexes, inference of subunit stoichiometry based on cysteine residue labelling, and general three-dimensional structural features of the complex as obtained from small-angle X-ray scattering and electron microscopy image reconstruction. Based on the available data, we refine the topological arrangement of the subunits that constitute the mitochondrial ATP synthase of Polytomella sp.
绿藻纲藻类的线粒体F1F0 - ATP合酶是一种由17种不同亚基组成的1600 kDa二聚体复合物,这些亚基具有不同的化学计量比,其中8种在所有真核生物中保守,9种似乎是藻类谱系所特有的(亚基ASA1 - 9)。针对无色藻类多鞭藻属(Polytomella sp.)ATP合酶中9种ASA亚基的拓扑组装,已经提出了两种不同的模型。在此,我们采用不同的实验方法重新研究了该酶的整体拓扑结构:基于交联实验和酶解离为亚复合物来检测亚基之间的近距离关系,基于半胱氨酸残基标记推断亚基化学计量比,以及从小角X射线散射和电子显微镜图像重建获得复合物的一般三维结构特征。基于现有数据,我们完善了构成多鞭藻属线粒体ATP合酶的亚基的拓扑排列。