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亚基Asa1贯穿绿藻多鞭藻线粒体ATP合酶的所有外周柄。

Subunit Asa1 spans all the peripheral stalk of the mitochondrial ATP synthase of the chlorophycean alga Polytomella sp.

作者信息

Colina-Tenorio Lilia, Miranda-Astudillo Héctor, Cano-Estrada Araceli, Vázquez-Acevedo Miriam, Cardol Pierre, Remacle Claire, González-Halphen Diego

机构信息

Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, México D.F., Mexico.

Genetics and Physiology of Microalgae, Department of Life Sciences, University of Liège, B-4000, Liège, Belgium.

出版信息

Biochim Biophys Acta. 2016 Apr;1857(4):359-69. doi: 10.1016/j.bbabio.2015.11.012. Epub 2015 Nov 30.

Abstract

Mitochondrial F1FO-ATP synthase of chlorophycean algae is dimeric. It contains eight orthodox subunits (alpha, beta, gamma, delta, epsilon, OSCP, a and c) and nine atypical subunits (Asa1 to 9). These subunits build the peripheral stalk of the enzyme and stabilize its dimeric structure. The location of the 66.1kDa subunit Asa1 has been debated. On one hand, it was found in a transient subcomplex that contained membrane-bound subunits Asa1/Asa3/Asa5/Asa8/a (Atp6)/c (Atp9). On the other hand, Asa1 was proposed to form the bulky structure of the peripheral stalk that contacts the OSCP subunit in the F1 sector. Here, we overexpressed and purified the recombinant proteins Asa1 and OSCP and explored their interactions in vitro, using immunochemical techniques and affinity chromatography. Asa1 and OSCP interact strongly, and the carboxy-terminal half of OSCP seems to be instrumental for this association. In addition, the algal ATP synthase was partially dissociated at relatively high detergent concentrations, and an Asa1/Asa3/Asa5/Asa8/a/c10 subcomplex was identified. Furthermore, Far-Western analysis suggests an Asa1-Asa8 interaction. Based on these results, a model is proposed in which Asa1 spans the whole peripheral arm of the enzyme, from a region close to the matrix-exposed side of the mitochondrial inner membrane to the F1 region where OSCP is located. 3D models show elongated, helix-rich structures for chlorophycean Asa1 subunits. Asa1 subunit probably plays a scaffolding role in the peripheral stalk analogous to the one of subunit b in orthodox mitochondrial enzymes.

摘要

绿藻的线粒体F1FO - ATP合酶是二聚体。它包含八个传统亚基(α、β、γ、δ、ε、OSCP、a和c)和九个非典型亚基(Asa1至9)。这些亚基构成了该酶的外周柄并稳定其二聚体结构。66.1kDa亚基Asa1的位置一直存在争议。一方面,它存在于一个瞬时亚复合物中,该亚复合物包含膜结合亚基Asa1/Asa3/Asa5/Asa8/a(Atp6)/c(Atp9)。另一方面,有人提出Asa1形成外周柄的庞大结构,该结构与F1扇区中的OSCP亚基接触。在此,我们过表达并纯化了重组蛋白Asa1和OSCP,并使用免疫化学技术和亲和色谱法在体外探索了它们之间的相互作用。Asa1和OSCP强烈相互作用,并且OSCP的羧基末端一半似乎对这种结合起作用。此外,藻类ATP合酶在相对较高的去污剂浓度下会部分解离,并鉴定出一个Asa1/Asa3/Asa5/Asa8/a/c10亚复合物。此外,Far - Western分析表明存在Asa1 - Asa8相互作用。基于这些结果,我们提出了一个模型,其中Asa1跨越酶的整个外周臂,从靠近线粒体内膜基质暴露侧的区域到OSCP所在的F1区域。三维模型显示绿藻Asa1亚基具有细长的、富含螺旋的结构。Asa1亚基可能在外周柄中起支架作用,类似于传统线粒体酶中b亚基的作用。

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