División de Biología Molecular; Instituto Potosino de Investigación Científica y Tecnológica; San Luis Potosí, San Luis Potosí México.
Plant Signal Behav. 2008 Aug;3(8):551-3. doi: 10.4161/psb.3.8.5697.
During the last decade, growing evidence has arisen referring the importance of the proper regulation of plant polyamine metabolism in the response to stress conditions. Being the activation of signaling pathways, the stabilization of anionic molecules and prevention of their degradation, as well as the free radical scavenger properties of polyamines some possible mechanisms exerted by these amines. Accumulation of polyamines (putrescine, spermidine and spermine) has been associated to plant tolerance to a wide array of environmental stresses. The synthesis of spermidine and spermine is mediated by aminopropyltransferases (spermidine and spermine synthases) which constitute a class of widely distributed enzymes that use decarboxylated S-adenosylmethionine as an aminopropyl donor, and putrescine or spermidine as an amino acceptor. We recently reported the effect of salt stress on the expression of aminopropyltransferase genes in maize seedlings. Our data revealed a time and NaCl dependent regulation of the Zmspds2 and Zmspds1 genes, possibly mediated by abscisic acid, since these genes were regulated at the transcriptional level by this plant hormone. In this addendum, we show that the Zmspds2 gene initially classified as spermidine synthase might encode a spermine synthase based on an in silico analysis. This is discussed in terms of protein homologies and specific amino acid substitutions between aminopropyltransferase enzymes.
在过去的十年中,越来越多的证据表明,适当调节植物多胺代谢在应对胁迫条件中的重要性。多胺作为信号通路的激活剂、阴离子分子的稳定剂和防止其降解的物质,以及自由基清除剂的特性,是这些胺类物质发挥作用的一些可能机制。多胺(腐胺、亚精胺和精胺)的积累与植物对广泛的环境胁迫的耐受性有关。亚精胺和精胺的合成是由氨基丙基转移酶(亚精胺和精胺合成酶)介导的,这些酶是一类广泛分布的酶,它们使用脱羧化的 S-腺苷甲硫氨酸作为氨基丙基供体,腐胺或亚精胺作为氨基受体。我们最近报道了盐胁迫对玉米幼苗中氨基丙基转移酶基因表达的影响。我们的数据显示,Zmspds2 和 Zmspds1 基因的表达受到时间和 NaCl 的依赖性调节,可能是由脱落酸介导的,因为这种植物激素在转录水平上调节这些基因。在这个附录中,我们表明最初被分类为亚精胺合酶的 Zmspds2 基因可能根据计算机分析编码精胺合酶。这是根据氨基丙基转移酶之间的蛋白质同源性和特定氨基酸取代来讨论的。