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Heat-stress induced synthesis of chloroplast protein synthesis elongation factor (EF-Tu) in a heat-tolerant maize line

机译:玉米耐热品系中热应激诱导的叶绿体蛋白合成延伸因子(EF-Tu)的合成

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摘要

A heat-tolerant maize (Zea mays L.) line, ZPBL 1304, synthesizes a unique set of five heat-shock polypeptides of 45 kDa. Previous studies suggested that these polypeptides might play a role in the development of thermotolerance in maize (Ristic et al., 1996, J. Plant Physiol. 149:424–432; Ristic et al., 1998, J. Plant Physiol. 153:497–505). In the present study, we isolated these polypeptides, sequenced them, and investigated their subcellular distribution and origin. Of the five polypeptides of 45 kDa, three polypeptides, including the two most abundant ones, yielded amino acid sequences similar to the chloroplast and bacterial protein synthesis elongation factor (EF-Tu). This was further confirmed using an antibody raised against maize EF-Tu, which showed a very strong reaction with the 45-kDa heat-shock protein(s). Studies on subcellular distribution and origin revealed that the 45-kDa polypeptides were localized to the chloroplasts, and were likely of nuclear origin. A full-length maize EF-Tu cDNA (Zmeftu1), previously isolated from the B73 line of maize, was used as a probe for northern blot analysis of RNA extracted from the ZPBL 1304 maize line (the nucleotide and deduced amino acid sequences of Zmeftu1 are 88% identical to the rice EF-Tu sequence). Northern blots showed a 1.85-fold increase in steady-state levels of EF-Tu mRNA during heat stress. An increase in EF-Tu transcript levels during heat stress was accompanied by increased levels of the EF-Tu protein. Isolated chloroplasts from heat-stressed plants also had higher levels of EF-Tu as compared to control chloroplasts. The maize EF-Tu polypeptides showed >80% sequence similarity with the bacterial EF-Tu, which has recently been shown to function as a molecular chaperone and to play a role in the protection of other proteins from thermal denaturation (Caldas et al., 1998, J. Biol. Chem. 273:11478–11482). It is hypothesized that chloroplast EF-Tu of the ZPBL 1304 maize line plays an important role in the development of thermotolerance.
机译:耐热玉米(Zea mays L.)品系ZPBL 1304合成了一组独特的五组45 kDa的热休克多肽。先前的研究表明这些多肽可能在玉米耐热性的形成中起作用(Ristic等,1996,植物生理学杂志149:424-432; Ristic等,1998,植物生理学杂志153: 497–505)。在本研究中,我们分离了这些多肽,对其进行了测序,并研究了其亚细胞分布和起源。在五个45 kDa的多肽中,三个多肽(包括两个最丰富的多肽)产生的氨基酸序列类似于叶绿体和细菌蛋白质合成延伸因子(EF-Tu)。使用针对玉米EF-Tu的抗体进一步证实了这一点,该抗体表现出与45 kDa热休克蛋白的强烈反应。对亚细胞分布和起源的研究表明,45 kDa多肽位于叶绿体,并可能是核起源。以前从玉米B73系中分离出的全长玉米EF-Tu cDNA(Zmeftu1)被用作探针,用于对从ZPBL 1304玉米系提取的RNA(Zmeftu1的核苷酸和推导的氨基酸序列)进行Northern blot分析的探针与水稻的EF-Tu序列有88%的一致性)。 Northern印迹显示在热应激期间,EF-Tu mRNA的稳态水平增加了1.85倍。在热应激期间EF-Tu转录物水平的增加伴随着EF-Tu蛋白水平的增加。与对照叶绿体相比,从热胁迫植物中分离出的叶绿体还具有较高水平的EF-Tu。玉米EF-Tu多肽与细菌EF-Tu具有> 80%的序列相似性,最近已证明其具有分子伴侣的功能,并在保护其他蛋白质免受热变性中起作用(Caldas等, 1998,生物化学杂志273:11478-11482)。假设ZPBL 1304玉米品系的叶绿体EF-Tu在耐热性的发展中起重要作用。

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