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New Insights into the Unique Structure of the F0F1-ATP Synthase from the Chlamydomonad Algae Polytomella sp. and Chlamydomonas reinhardtii1

机译:衣藻藻类多毛菌种F0F1-ATP合酶独特结构的新见解。和莱茵衣藻

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摘要

In this study, we investigate the structure of the mitochondrial F0F1-ATP synthase of the colorless alga Polytomella sp. with respect to the enzyme of its green close relative Chlamydomonas reinhardtii. It is demonstrated that several unique features of the ATP synthase in C. reinhardtii are also present in Polytomella sp. The α- and β-subunits of the ATP synthase from both algae are highly unusual in that they exhibit extensions at their N- and C-terminal ends, respectively. Several subunits of the Polytomella ATP synthase in the range of 9 to 66 kD have homologs in the green alga but do not have known equivalents as yet in mitochondrial ATP synthases of mammals, plants, or fungi. The largest of these so-called ASA (ATP Synthase-Associated) subunits, ASA1, is shown to be an extrinsic protein. Short heat treatment of isolated Polytomella mitochondria unexpectedly dissociated the otherwise highly stable ATP synthase dimer of 1,600 kD into subcomplexes of 800 and 400 kD, assigned as the ATP synthase monomer and F1-ATPase, respectively. Whereas no ASA subunits were found in the F1-ATPase, all but two were present in the monomer. ASA6 (12 kD) and ASA9 (9 kD), predicted to be membrane bound, were not detected in the monomer and are thus proposed to be involved in the formation or stabilization of the enzyme. A hypothetical configuration of the Chlamydomonad dimeric ATP synthase portraying its unique features is provided to spur further research on this topic.
机译:在这项研究中,我们调查了无色藻Polytomella sp。的线粒体F0F1-ATP合酶的结构。关于其绿色近亲莱茵衣藻的酶。证明了在莱茵衣藻中ATP合酶的几个独特特征也存在于Polytomella sp。中。来自两个藻类的ATP合酶的α-和β-亚基非常不寻常,因为它们分别在其N-末端和C-末端表现出延伸。 Polytomella ATP合酶的几个亚基在9至66 kD的范围内,在绿藻中具有同源物,但在哺乳动物,植物或真菌的线粒体ATP合酶中尚没有已知的等同物。这些所谓的ASA(ATP合酶相关)亚基中最大的一个是ASA1,它是一种外在蛋白。分离的线粒体线粒体的短时间热处理意外地将原本为1600 kD的高度稳定的ATP合酶二聚体解离为800和400 kD的亚复合体,分别称为ATP合酶单体和F1-ATPase。尽管在F1-ATPase中未发现ASA亚基,但单体中仅存在两个亚基。在单体中未检测到预计被膜结合的ASA6(12 kD)和ASA9(9 kD),因此被提议参与酶的形成或稳定化。提供了衣原体二聚体ATP合酶的假想构型,描绘了其独特功能,以刺激对该主题的进一步研究。

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