Su Zhao, Chai Mao-Feng, Lu Ping-Li, An Rui, Chen Jia, Wang Xue-Chen
State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing 100094, China.
Planta. 2007 Sep;226(4):1031-9. doi: 10.1007/s00425-007-0547-6. Epub 2007 May 24.
Mtm1p is essential for the posttranslational activation of manganese-containing superoxide dismutase (SOD2) in Saccharomyces cerevisiae; however, whether the same holds true for Arabidopsis thaliana is unknown. In this study, by using the yeast mtm1 mutant complementation method, we identified a putative MTM gene (AtMTM1, At4g27940) that is necessary for SOD2 activation. Further, analysis of SOD activity revealed that an SOD2 defect is rescued in the yeast mutant Y07288 harboring the AtMTM1 gene. Related mRNA-level analysis showed the AtMTM1 gene is induced by paraquat but not by hydrogen peroxide, which indicates that this gene is related to the superoxide scavenger SOD. In addition, an AtMTM1::GFP fusion construct was transiently expressed in the protoplasts, and it was localized to the mitochondria. Furthermore, sequence deletion analysis of AtMTM1 revealed that the code region (amino acid (aa) 60-198) of Mtm1p plays an important role in localization of the protein to the mitochondria. Regulation of AtMTM1 gene expression was analyzed using a fusion construct of the 1,766 bp AtMTM1 promoter and the GUS (beta-glucuronidase) reporter gene. The screen identified GUS reporter gene expression in the developing cotyledons, leaves, roots, stems, and flowers but not in the siliques. Our results suggest that AtMTM1 encodes a mitochondrial protein that may be playing an important role in activation of MnSOD1 in Arabidopsis.
Mtm1p对于酿酒酵母中含锰超氧化物歧化酶(SOD2)的翻译后激活至关重要;然而,拟南芥是否也是如此尚不清楚。在本研究中,通过使用酵母mtm1突变体互补方法,我们鉴定出一个推定的MTM基因(AtMTM1,At4g27940),它是SOD2激活所必需的。此外,对SOD活性的分析表明,在携带AtMTM1基因的酵母突变体Y07288中,SOD2缺陷得到了挽救。相关的mRNA水平分析表明,AtMTM1基因受百草枯诱导,但不受过氧化氢诱导,这表明该基因与超氧化物清除剂SOD有关。此外,AtMTM1::GFP融合构建体在原生质体中瞬时表达,并定位于线粒体。此外,AtMTM1的序列缺失分析表明,Mtm1p的编码区(氨基酸(aa)60 - 198)在蛋白质定位于线粒体中起重要作用。使用1766 bp的AtMTM1启动子与GUS(β - 葡萄糖醛酸酶)报告基因的融合构建体分析了AtMTM1基因的表达调控。筛选结果显示,GUS报告基因在发育中的子叶、叶片、根、茎和花中表达,但在角果中不表达。我们的结果表明,AtMTM1编码一种线粒体蛋白,可能在拟南芥中MnSOD1的激活中起重要作用。