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仅在线粒体中表达双靶向的前序列蛋白酶AtPreP的表型后果。

Phenotypical consequences of expressing the dually targeted Presequence Protease, AtPreP, exclusively in mitochondria.

作者信息

Kmiec Beata, Teixeira Pedro F, Glaser Elzbieta

机构信息

Department of Biochemistry and Biophysics, Stockholm University, Arrhenius Laboratories for Natural Sciences, SE-106 91 Stockholm, Sweden.

Department of Biochemistry and Biophysics, Stockholm University, Arrhenius Laboratories for Natural Sciences, SE-106 91 Stockholm, Sweden.

出版信息

Biochimie. 2014 May;100:167-70. doi: 10.1016/j.biochi.2013.12.012. Epub 2013 Dec 25.

Abstract

Endosymbiotic organelles, mitochondria and chloroplasts, are sites of an intensive protein synthesis and degradation. A consequence of these processes is production of both free targeting peptides, i.e. mitochondrial presequences and chloroplastic transit peptides, and other short unstructured peptides. Mitochondrial, as well as chloroplastic peptides are degraded by Presequence Protease (PreP), which is dually targeted to mitochondrial matrix and chloroplastic stroma. Elimination of PreP in Arabidopsis thaliana leads to growth retardation, chlorosis and impairment of mitochondrial functions potentially due to the accumulation of targeting peptides. In this work we analyzed the influence of the restoration of mitochondrial peptide degradation by AtPreP on plant phenotype. We showed that exclusive mitochondrial expression of AtPreP results in total restoration of the proteolytic activity, but it does not restore the wild-type phenotype. The plants grow shorter roots and smaller rosettes compared to the plants expressing AtPreP1 in both mitochondria and chloroplasts. With this analysis we are aiming at understanding the physiological impact of the role of the dually targeted AtPreP in single type of destination organelle.

摘要

内共生细胞器,即线粒体和叶绿体,是蛋白质大量合成与降解的场所。这些过程的一个结果是产生游离的靶向肽,即线粒体前导序列和叶绿体转运肽,以及其他短的无结构肽。线粒体肽和叶绿体肽都被前导序列蛋白酶(PreP)降解,PreP双靶向定位于线粒体基质和叶绿体基质。拟南芥中PreP的缺失会导致生长迟缓、黄化以及线粒体功能受损,这可能是由于靶向肽的积累所致。在这项工作中,我们分析了AtPreP恢复线粒体肽降解对植物表型的影响。我们发现,AtPreP仅在线粒体中表达可使蛋白水解活性完全恢复,但不能恢复野生型表型。与在线粒体和叶绿体中都表达AtPreP1的植物相比,仅在线粒体中表达AtPreP的植物根系更短,莲座叶更小。通过这项分析,我们旨在了解双靶向的AtPreP在单一类型的目标细胞器中的作用所产生的生理影响。

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