Germain V, Raymond P, Ricard B
Institut National de la Recherche Agronomique, Centre de Recherches de Bordeaux, Villenave d'Ornon, France.
Plant Mol Biol. 1997 Dec;35(6):711-21. doi: 10.1023/a:1005854002969.
Two different cDNAs encoding lactate dehydrogenase (LDH) were isolated from a library of hypoxically treated tomato roots and sequenced. The use of gene-specific probes on northern blots showed that Ldh2 mRNA was predominant in well-oxygenated roots and levels remained stable upon oxygen deficit; in contrast, Ldh1 mRNA accumulated to high levels within 2 h of hypoxia or anoxia. Immunoblot analyses of native gels using a polyclonal antiserum raised against an LDH1 fusion protein indicated that LDH2 homotetramer was the major isoform present in aerobic roots. Levels of both LDH1 and LDH2 subunits increased during an 18 h hypoxic treatment, together with a 5-fold rise in activity. These results suggest that the regulation of ldh1 expression is primarily at the transcriptional level while that of ldh2 is post-transcriptional. Increases in Ldh1 mRNA and LDH activity were not correlated with lactic acid production, which was maximal at the onset of anoxia in unacclimated roots and then declined. Taken together, our results indicate that LDH2 present in aerobic roots is principally responsible for lactic acid production occurring transiently upon imposition of anoxia. Possible physiological roles for LDH1 are discussed.
从经低氧处理的番茄根文库中分离出两个编码乳酸脱氢酶(LDH)的不同cDNA并进行了测序。在Northern印迹上使用基因特异性探针显示,Ldh2 mRNA在氧含量充足的根中占主导地位,并且在缺氧时水平保持稳定;相反,Ldh1 mRNA在缺氧或无氧处理2小时内积累到高水平。使用针对LDH1融合蛋白产生的多克隆抗血清对天然凝胶进行免疫印迹分析表明,LDH2同型四聚体是好氧根中存在的主要同工型。在18小时的低氧处理期间,LDH1和LDH2亚基的水平均增加,同时活性增加了5倍。这些结果表明,ldh1表达的调节主要在转录水平,而ldh2的调节在转录后水平。Ldh1 mRNA和LDH活性的增加与乳酸产生无关,乳酸产生在未适应缺氧的根中缺氧开始时最大,然后下降。综上所述,我们的结果表明,好氧根中存在的LDH2主要负责缺氧时短暂发生的乳酸产生。讨论了LDH1可能的生理作用。