Chang K S, Lee S H, Hwang S B, Park K Y
Department of Biology, Yonsei University, Seoul 120-749, Korea.
Plant J. 2000 Oct;24(1):45-56. doi: 10.1046/j.0960-7412.2000.00854.x.
Arginine decarboxylase (ADC; EC 4.1.1.9) is a key enzyme in polyamine biosynthesis in plants. We characterized a carnation genomic clone, gDcADC8, in which the deduced polypeptide of ADC was 725 amino acids with a molecular mass of 77.7 kDa. The unusually long 5'-UTR that contained a short upstream open reading frame (uORF) of seven amino acids (MQKSLHI) was predicted to form an extensive secondary structure (free energy of approximately -117 kcal mol-1) using the Zuker m-fold algorithm. The result that an ADC antibody detected two bands of 45 and 33 kDa in a petal extract suggested the full length of the 78 kDa polypeptide precursor converted into two polypeptides in the processing reaction. To investigate the role of the transcript leader in translation, in vitro transcription/translation reactions with various constructs of deletion and mutation were performed using wheat germ extract. The ADC transcript leader affected positively downstream translation in both wheatgerm extract and primary transformant overexpressing ADC gene. It was demonstrated that heptapeptide (8.6 kDa) encoded by the ADC uORF was synthesized in vitro. Both uORF peptide, and the synthetic heptapeptide MQKSLHI of the uORF, repressed the translation of downstream ORF. Mutation of the uORF ATG codon alleviated the inhibitory effect. ORF translation was not affected by either a frame-shift mutation in uORF or a random peptide. To our knowledge, this is the first report to provide evidence that a uORF may inhibit the translation of a downstream ORF, not only in cis but also in trans, and that the leader sequence of the ADC gene is important for efficient translation.
精氨酸脱羧酶(ADC;EC 4.1.1.9)是植物多胺生物合成中的关键酶。我们对一个香石竹基因组克隆gDcADC8进行了表征,其中ADC推导的多肽有725个氨基酸,分子量为77.7 kDa。使用Zuker m-fold算法预测,异常长的5'-UTR包含一个由七个氨基酸(MQKSLHI)组成的短上游开放阅读框(uORF),可形成广泛的二级结构(自由能约为-117 kcal mol-1)。ADC抗体在花瓣提取物中检测到45 kDa和33 kDa两条带,这一结果表明78 kDa多肽前体的全长在加工反应中转化为了两条多肽。为了研究转录前导序列在翻译中的作用,使用小麦胚提取物对各种缺失和突变构建体进行了体外转录/翻译反应。ADC转录前导序列对小麦胚提取物和过表达ADC基因的初级转化体中的下游翻译均有正向影响。已证实在体外合成了由ADC uORF编码的七肽(8.6 kDa)。uORF肽以及uORF的合成七肽MQKSLHI均抑制下游ORF的翻译。uORF ATG密码子的突变减轻了抑制作用。ORF翻译不受uORF中的移码突变或随机肽的影响。据我们所知,这是第一份提供证据表明uORF不仅可以顺式而且可以反式抑制下游ORF翻译,并且ADC基因的前导序列对有效翻译很重要的报告。