首页> 外文期刊>Journal of Bioenergetics and Biomembranes >The mitochondrial ATP synthase of chlorophycean algae contains eight subunits of unknown origin involved in the formation of an atypical stator-stalk and in the dimerization of the complex
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The mitochondrial ATP synthase of chlorophycean algae contains eight subunits of unknown origin involved in the formation of an atypical stator-stalk and in the dimerization of the complex

机译:叶绿藻藻类的线粒体ATP合酶包含八个来源不明的亚基,这些亚基参与形成非典型的定子茎并参与复合物的二聚化

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摘要

Mitochondrial F1F O -ATP synthase of Chlamydomonas reinhardtii and Polytomella sp. is a dimer of 1,600,000 Da. In Chlamydomonas the enzyme lacks the classical subunits that constitute the peripheral stator-stalk as well as those involved in the dimerization of the fungal and mammal complex. Instead, it contains eight novel polypeptides named ASA1 to 8. We show that homologs of these subunits are also present in the chlorophycean algae Polytomella sp. and Volvox carterii. Blue Native Gel Electrophoresis analysis of mitochondria from different green algal species also indicates that stable dimeric mitochondrial ATP synthases may be characteristic of all Chlorophyceae. One additional subunit, ASA9, was identified in the purified mitochondrial ATP synthase of Polytomella sp. The dissociation profile of the Polytomella enzyme at high-temperatures and cross-linking experiments finally suggest that some of the ASA polypeptides constitute a stator-stalk with a unique architecture, while others may be involved in the formation of a highly-stable dimeric complex. The algal enzyme seems to have modified the structural features of its surrounding scaffold, while conserving almost intact the structure of its catalytic subunits.
机译:莱茵衣藻和Polytomella sp。的线粒体F1 F O -ATP合酶。是1,600,000 Da的二聚体。在衣藻中,该酶缺乏构成外围定子茎以及参与真菌和哺乳动物复合体二聚化的经典亚基。相反,它包含八个名为ASA1到8的新型多肽。我们表明,这些亚基的同源物也存在于绿藻藻类海藻Polytomella sp中。和Volvox Carterii。来自不同绿色藻种的线粒体的蓝色天然凝胶电泳分析还表明,稳定的二聚体线粒体ATP合酶可能是所有绿藻科的特征。在纯化的Polytomella sp的线粒体ATP合酶中鉴定了一个额外的亚基ASA9。 Polytomella酶在高温下的解离谱和交联实验最终表明,一些ASA多肽构成具有独特结构的定子杆,而其他一些则可能参与了高度稳定的二聚体复合物的形成。藻类酶似乎已经修饰了其周围支架的结构特征,同时几乎保留了其催化亚基的结构。

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