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Identification and Characterization of High Molecular Weight Complexes Formed by Matrix AAA Proteases and Prohibitins in Mitochondria of Arabidopsis thaliana

机译:拟南芥线粒体中的基质AAA蛋白酶和抑制素形成的高分子量复合物的鉴定与表征

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摘要

We identify and characterize two matrix (m)-AAA proteases (AtFtsH3 and AtFtsH10) present in the mitochondria of Arabidopsis thaliana. AtFtsH3 is the predominant protease in leaves of wild type plants. Both proteases assemble with prohibitins (PHBs) into high molecular weight complexes (∼2 MDa), similarly to their yeast counterparts. A smaller PHB complex (∼1 MDa), without the m-AAA proteases, was also detected. Unlike in yeast, stable prohibitin-independent high molecular weight assemblies of m-AAA proteases could not be identified in A. thaliana. AtFtsH3 and AtFtsH10 form at least two types of m-AAA-PHB complexes in wild type plants. The one type contains PHBs and AtFtsH3, and the second one is composed of PHBs and both AtFtsH3 and AtFtsH10. Complexes composed of PHBs and AtFtsH10 were found in an Arabidopsis mutant lacking AtFtsH3 (ftsh3). Thus, both AtFtsH3 and AtFtsH10 may form hetero- and homo-oligomeric complexes with prohibitins. The increased level of AtFtsH10 observed in ftsh3 suggests that functions of the homo- and hetero-oligomeric complexes containing AtFtsH3 can be at least partially substituted by AtFtsH10 homo-oligomers. The steady-state level of the AtFtsH10 transcripts did not change in ftsh3 compared with wild type plants, but we found that almost twice more of the AtFtsH10 transcripts were associated with polysomes in ftsh3. Based on this result, we assume that the AtFtsH10 protein is synthesized at a higher rate in the ftsh3 mutant. Our results provide the first data on the composition of m-AAA and PHB complexes in plant mitochondria and suggest that the abundance of m-AAA proteases is regulated not only at the transcriptional but also at the translational level.
机译:我们鉴定和表征存在于拟南芥线粒体中的两种基质(m)-AAA蛋白酶(AtFtsH3和AtFtsH10)。 AtFtsH3是野生型植物叶片中的主要蛋白酶。两种蛋白酶都与抑制素(PHB)组装成高分子量复合物(〜2 MDa),类似于它们的酵母对应物。还检测到了较小的PHB复合物(〜1 MDa),其中没有m-AAA蛋白酶。与酵母不同,在拟南芥中不能鉴定出稳定的独立于禁蛋白的高分子量组装的m-AAA蛋白酶。 AtFtsH3和AtFtsH10在野生型植物中形成至少两种类型的m-AAA-PHB复合物。一种类型包含PHB和AtFtsH3,第二种类型包含PHB和AtFtsH3和AtFtsH10。在缺少AtFtsH3(ftsh3)的拟南芥突变体中发现了由PHB和AtFtsH10组成的复合物。因此,AtFtsH3和AtFtsH10都可以与禁止素形成异源和同源寡聚复合物。在ftsh3中观察到的AtFtsH10水平升高表明,包含AtFtsH3的同型和杂合寡聚复合物的功能可以至少部分被AtFtsH10同型寡聚体取代。与野生型植物相比,ftsh3中AtFtsH10转录本的稳态水平没有变化,但是我们发现,几乎有两倍的AtFtsH10转录本与ftsh3中的多核糖体相关。基于此结果,我们假设在ftsh3突变体中以更高的速率合成了AtFtsH10蛋白。我们的结果提供了有关植物线粒体中m-AAA和PHB复合物组成的首个数据,并表明m-AAA蛋白酶的丰度不仅在转录水平而且在翻译水平受到调节。

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