Department of Agricultural Chemistry, School of Agriculture, Nagoya University, Nagoya 464-01, Japan.
Plant Physiol. 1991 May;96(1):77-83. doi: 10.1104/pp.96.1.77.
In maize (Zea mays L.), four ferredoxin (Fd) isoproteins, Fd I to Fd IV, are differentially distributed in photosynthetic and nonphotosynthetic organs of young seedlings (Y Kimata, T Hase [1989] Plant Physiol 89: 1193-1197). To understand structural characteristics of the Fd isoproteins and molecular mechanism of the differential expression of their genes, we have cloned and characterized three different maize Fd cDNAs. DNA sequence analyses showed that two of the cDNAs encoded the entire precursor polypeptides of Fd I and Fd III, which were composed of 150 and 152 amino acid residues, respectively, and the other encoded a 135 amino acid precursor polypeptide of Fd not yet identified. High degrees of homologies were found in the deduced amino acid sequences of mature regions of these Fd isoproteins, but the transit peptide of Fd III differed considerably from those of other Fd isoproteins. Fd I and the unidentified Fd were encoded mainly with codons ending in C or G, but such strong codon bias was not seen in Fd III. Gene specific probes for each cDNA were used to probe Northern blots of RNA isolated from leaves, mesocotyls, and roots of maize seedlings. The gene transcripts for Fd I and the unidentified Fd were restricted to leaves and their levels increased markedly upon illumination of etiolated seedlings, whereas that for Fd III was detected in all organs and its accumulation was not light dependent. This organ specific accumulation of Fd mRNAs corresponds exactly to the distribution pattern of Fd isoproteins.
在玉米(Zea mays L.)中,四种铁氧还蛋白(Fd)同工蛋白,Fd I 到 Fd IV,在幼苗的光合作用和非光合作用器官中存在差异分布(Y Kimata,T Hase [1989] Plant Physiol 89: 1193-1197)。为了了解 Fd 同工蛋白的结构特征和它们基因差异表达的分子机制,我们已经克隆并鉴定了三种不同的玉米 Fd cDNA。DNA 序列分析表明,两个 cDNA 编码 Fd I 和 Fd III 的完整前体多肽,它们分别由 150 和 152 个氨基酸残基组成,另一个编码尚未鉴定的 Fd 的 135 个氨基酸前体多肽。这些 Fd 同工蛋白成熟区推导的氨基酸序列具有高度同源性,但 Fd III 的转运肽与其他 Fd 同工蛋白有很大的不同。Fd I 和未鉴定的 Fd 主要由以 C 或 G 结尾的密码子编码,但 Fd III 中没有这种强烈的密码子偏爱。每个 cDNA 的基因特异性探针用于探测从玉米幼苗的叶片、中胚轴和根中分离的 RNA 的 Northern 印迹。Fd I 和未鉴定的 Fd 的基因转录物仅限于叶片,并且在光下培养的黄化幼苗中其水平显著增加,而 Fd III 的基因转录物在所有器官中都被检测到,并且其积累不受光照的影响。这种 Fd mRNA 的器官特异性积累与 Fd 同工蛋白的分布模式完全一致。