Kim D J, Smith S M
Institute of Cell and Molecular Biology, University of Edinburgh, UK.
Plant Mol Biol. 1994 Dec;26(6):1833-41. doi: 10.1007/BF00019496.
A full-length cDNA clone encoding microbody NAD(+)-dependent malate dehydrogenase (MDH) of cucumber has been isolated. The deduced amino acid sequence is 97% identical to glyoxysomal MDH (gMDH) of watermelon, including the amino terminal putative transit peptide. The cucumber genome contains only a single copy of this gene. Expression of this mdh gene increases dramatically in cotyledons during the few days immediately following seed imbibition, in parallel with genes encoding isocitrate lyase (ICL) and malate synthase (MS), two glyoxylate cycle enzymes. The level of MDH, ICL and MS mRNAs then declines, but then MDH mRNA increases again together with that of peroxisomal NAD(+)-dependent hydroxypyruvate reductase (HPR). The mdh gene is also expressed during cotyledon senescence, together with hpr, icl and ms genes. These results indicate that a single gene encodes MDH which functions in both glyoxysomes and peroxisomes. In contrast to icl and ms genes, expression of the mdh gene is not activated by incubating detached green cotyledons in the dark, nor is it affected by exogenous sucrose in the incubation medium. The function of this microbody MDH and the regulation of its synthesis are discussed.
已分离出一个编码黄瓜微体NAD(+)依赖型苹果酸脱氢酶(MDH)的全长cDNA克隆。推导的氨基酸序列与西瓜乙醛酸循环体MDH(gMDH)有97%的同一性,包括氨基末端假定的转运肽。黄瓜基因组中该基因只有一个拷贝。在种子吸胀后的几天内,子叶中该mdh基因的表达急剧增加,这与编码异柠檬酸裂解酶(ICL)和苹果酸合酶(MS)这两种乙醛酸循环酶的基因表达同步。然后MDH、ICL和MS的mRNA水平下降,但随后MDH的mRNA又与过氧化物酶体NAD(+)依赖型羟基丙酮酸还原酶(HPR)的mRNA一起再次增加。mdh基因在子叶衰老过程中也与hpr、icl和ms基因一起表达。这些结果表明,一个单一基因编码在乙醛酸循环体和过氧化物酶体中都起作用的MDH。与icl和ms基因不同,mdh基因的表达不会因将分离的绿色子叶在黑暗中培养而被激活,也不受培养介质中外源蔗糖的影响。本文讨论了这种微体MDH的功能及其合成的调控。