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环境胁迫对豌豆线粒体蛋白质组的差异影响。

Differential impact of environmental stresses on the pea mitochondrial proteome.

作者信息

Taylor Nicolas L, Heazlewood Joshua L, Day David A, Millar A Harvey

机构信息

The Plant Molecular Biology Group, Biochemistry and Molecular Biology, School of Biomedical and Chemical Sciences, The University of Western Australia, 35 Stirling Highway, Crawley 6009, Western Australia, Australia.

出版信息

Mol Cell Proteomics. 2005 Aug;4(8):1122-33. doi: 10.1074/mcp.M400210-MCP200. Epub 2005 May 23.

Abstract

Exposure to adverse environmental conditions causes oxidative stress in many organisms, leading either to disease and debilitation or to response and tolerance. Mitochondria are a key site of oxidative stress and of cellular response and play important roles in cell survival. We analyzed the response of mitochondria in pea (Pisum sativum) plants to the common stresses associated with drought, cold, and herbicides. These treatments all altered photosynthetic and respiratory rates of pea leaves to various extents, but only herbicides significantly increased lipid peroxidation product accumulation. Mitochondria isolated from the stressed pea plants maintained their electron transport chain activity, but changes were evident in the abundance of uncoupling proteins, non-phosphorylating respiratory pathways, and oxidative modification of lipoic acid moieties on mitochondrial proteins. These data suggest that herbicide treatment placed a severe oxidative stress on mitochondria, whereas chilling and particularly drought were milder stresses. Detailed analysis of the soluble proteome of mitochondria by gel electrophoresis and mass spectrometry revealed differential degradation of key matrix enzymes during treatments with chilling being significantly more damaging than drought. Differential induction of heat shock proteins and specific losses of other proteins illustrated the diversity of response to these stresses at the protein level. Cross-species matching was required for mass spectrometry identification of nine proteins because only a limited number of pea cDNAs have been sequenced, and the full pea genome is not available. Blue-native separation of intact respiratory chain complexes revealed little if any change in response to environmental stresses. Together these data suggest that although many of the molecular events identified by chemical stresses of mitochondria from a range of model eukaryotes are also apparent during environmental stress of plants, their extent and significance can vary substantially.

摘要

暴露于不利的环境条件会在许多生物体中引发氧化应激,导致疾病和衰弱,或者引发反应和耐受性。线粒体是氧化应激和细胞反应的关键部位,在细胞存活中发挥重要作用。我们分析了豌豆(Pisum sativum)植株中线粒体对与干旱、寒冷和除草剂相关的常见胁迫的反应。这些处理都不同程度地改变了豌豆叶片的光合和呼吸速率,但只有除草剂显著增加了脂质过氧化产物的积累。从受胁迫的豌豆植株中分离出的线粒体保持了其电子传递链活性,但解偶联蛋白的丰度、非磷酸化呼吸途径以及线粒体蛋白上硫辛酸基团的氧化修饰发生了明显变化。这些数据表明,除草剂处理给线粒体带来了严重的氧化应激,而低温尤其是干旱带来的应激则较为温和。通过凝胶电泳和质谱对线粒体可溶性蛋白质组进行的详细分析表明,在处理过程中关键基质酶存在差异降解,低温处理比干旱处理造成的损害明显更大。热休克蛋白的差异诱导和其他蛋白质的特异性损失说明了在蛋白质水平上对这些胁迫反应的多样性。由于只有有限数量的豌豆cDNA已被测序且完整的豌豆基因组不可用,因此质谱鉴定九种蛋白质需要进行跨物种匹配。完整呼吸链复合物的蓝色天然分离显示,对环境胁迫的反应几乎没有变化。这些数据共同表明,尽管在一系列模式真核生物中由线粒体化学胁迫所确定的许多分子事件在植物的环境胁迫过程中也很明显,但其程度和意义可能有很大差异。

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