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本文引用的文献

1
Rapid empirical discovery of optimal peptides for targeted proteomics.快速经验发现靶向蛋白质组学的最佳肽段。
Nat Methods. 2011 Nov 6;8(12):1041-3. doi: 10.1038/nmeth.1770.
2
Insights into the composition and assembly of the membrane arm of plant complex I through analysis of subcomplexes in Arabidopsis mutant lines.通过分析拟南芥突变体系中的亚复合物,深入了解植物复合体 I 膜臂的组成和组装。
J Biol Chem. 2011 Jul 22;286(29):26081-92. doi: 10.1074/jbc.M110.209601. Epub 2011 May 23.
3
A mitochondrial GABA permease connects the GABA shunt and the TCA cycle, and is essential for normal carbon metabolism.一种线粒体 GABA 通透酶连接 GABA 分流和 TCA 循环,对于正常的碳代谢是必需的。
Plant J. 2011 Aug;67(3):485-98. doi: 10.1111/j.1365-313X.2011.04612.x. Epub 2011 May 31.
4
Analysis of the rice mitochondrial carrier family reveals anaerobic accumulation of a basic amino acid carrier involved in arginine metabolism during seed germination.对水稻线粒体载体家族的分析揭示了在种子萌发过程中,一种参与精氨酸代谢的碱性氨基酸载体的厌氧积累。
Plant Physiol. 2010 Oct;154(2):691-704. doi: 10.1104/pp.110.162214. Epub 2010 Aug 18.
5
The role of protein quality control in mitochondrial protein homeostasis under oxidative stress.氧化应激下蛋白质质量控制在线粒体蛋白质动态平衡中的作用。
Proteomics. 2010 Apr;10(7):1426-43. doi: 10.1002/pmic.200800619.
6
Identification of novel oxidized protein substrates and physiological partners of the mitochondrial ATP-dependent Lon-like protease Pim1.鉴定线粒体 ATP 依赖的 Lon 样蛋白酶 Pim1 的新型氧化蛋白底物和生理伴侣。
J Biol Chem. 2010 Apr 9;285(15):11445-57. doi: 10.1074/jbc.M109.065425. Epub 2010 Feb 11.
7
Divalent metal ions in plant mitochondria and their role in interactions with proteins and oxidative stress-induced damage to respiratory function.植物线粒体中的二价金属离子及其在与蛋白质相互作用以及氧化应激诱导的呼吸功能损伤中的作用。
Plant Physiol. 2010 Feb;152(2):747-61. doi: 10.1104/pp.109.147942. Epub 2009 Dec 14.
8
Functional and composition differences between mitochondrial complex II in Arabidopsis and rice are correlated with the complex genetic history of the enzyme.拟南芥和水稻中线粒体复合物 II 的功能和组成差异与该酶的复杂遗传史有关。
Plant Mol Biol. 2010 Feb;72(3):331-42. doi: 10.1007/s11103-009-9573-z. Epub 2009 Nov 19.
9
Mitochondria biogenesis via Lon1 selective proteolysis: who dares to live for ever?通过Lon1选择性蛋白水解进行线粒体生物合成:谁敢永生?
Plant Signal Behav. 2009 Mar;4(3):221-4. doi: 10.4161/psb.4.3.7863.
10
The lack of mitochondrial AtFtsH4 protease alters Arabidopsis leaf morphology at the late stage of rosette development under short-day photoperiod.线粒体AtFtsH4蛋白酶的缺失会改变拟南芥在短日照光周期下莲座叶发育后期的叶片形态。
Plant J. 2009 Sep;59(5):685-99. doi: 10.1111/j.1365-313X.2009.03907.x. Epub 2009 Jun 5.

在拟南芥中缺失 Lon1 会改变线粒体蛋白质组,导致代谢物图谱发生变化和生长迟缓,而不会积累氧化损伤。

Loss of Lon1 in Arabidopsis changes the mitochondrial proteome leading to altered metabolite profiles and growth retardation without an accumulation of oxidative damage.

机构信息

ARC Centre of Excellence in Plant Energy Biology and Centre for Comparative Analysis of Biomolecular Networks, University of Western Australia, Crawley, Washington 6009, Western Australia, Australia.

出版信息

Plant Physiol. 2012 Nov;160(3):1187-203. doi: 10.1104/pp.112.203711. Epub 2012 Sep 11.

DOI:10.1104/pp.112.203711
PMID:22968828
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3490588/
Abstract

Lon1 is an ATP-dependent protease and chaperone located in the mitochondrial matrix in plants. Knockout in Arabidopsis (Arabidopsis thaliana) leads to a significant growth rate deficit in both roots and shoots and lowered activity of specific mitochondrial enzymes associated with respiratory metabolism. Analysis of the mitochondrial proteomes of two lon1 mutant alleles (lon1-1 and lon1-2) with different severities of phenotypes shows a common accumulation of several stress marker chaperones and lowered abundance of Complexes I, IV, and V of OXPHOS. Certain enzymes of the tricarboxylic acid (TCA) cycle are modified or accumulated, and TCA cycle bypasses were repressed rather than induced. While whole tissue respiratory rates were unaltered in roots and shoots, TCA cycle intermediate organic acids were depleted in leaf extracts in the day in lon1-1 and in both lon mutants at night. No significant evidence of broad steady-state oxidative damage to isolated mitochondrial samples could be found, but peptides from several specific proteins were more oxidized and selected functions were more debilitated in lon1-1. Collectively, the evidence suggests that loss of Lon1 significantly modifies respiratory function and plant performance by small but broad alterations in the mitochondrial proteome gained by subtly changing steady-state protein assembly, stability, and damage of a range of components that debilitate an anaplerotic role for mitochondria in cellular carbon metabolism.

摘要

Lon1 是一种位于植物线粒体基质中的 ATP 依赖的蛋白酶和伴侣。拟南芥(Arabidopsis thaliana)中的基因敲除导致根和茎的生长速度显著下降,与呼吸代谢相关的特定线粒体酶的活性降低。对两种具有不同表型严重程度的 lon1 突变等位基因(lon1-1 和 lon1-2)的线粒体蛋白质组分析表明,几种应激标记伴侣共同积累,OXPHOS 的复合物 I、IV 和 V 的丰度降低。三羧酸(TCA)循环的某些酶被修饰或积累,而 TCA 循环旁路被抑制而不是诱导。虽然整个组织的呼吸速率在根和茎中没有改变,但 lon1-1 叶片提取物中 TCA 循环中间有机酸酸在白天被耗尽,而在两个 lon 突变体中在夜间被耗尽。在分离的线粒体样品中没有发现明显的广泛稳态氧化损伤的证据,但来自几种特定蛋白质的肽段更容易氧化,并且 lon1-1 中选择的功能更容易受损。总的来说,这些证据表明,Lon1 的缺失通过微妙地改变稳态蛋白质组装、稳定性和一系列削弱线粒体在细胞碳代谢中补充作用的组件的损伤,显著改变了线粒体蛋白质组,从而显著改变了呼吸功能和植物性能。