Ringli C, Keller B
Department of Resistance and Quality Breeding, Swiss Federal Research Station for Agroecology and Agriculture, Zürich, Switzerland.
Plant Mol Biol. 1998 Aug;37(6):977-88. doi: 10.1023/a:1006030007333.
The grp1.8 gene of French bean (Phaseolus vulgaris) is specifically expressed in vascular tissue and encodes a glycine-rich structural protein (GRP1.8) of the cell wall. Earlier promoter analysis had shown that a 28 bp fragment of the grp1.8 promoter (vs-1) confers vascular expression to heterologous minimal promoters and is bound by the tomato bZIP transcription factor VSF-1. Here, we analysed the interaction of VSF-1 with fragments of the vs-1 element and studied the molecular basis of specific binding both in the DNA sequence of the promoter element as well as in the protein. The minimal binding site of VSF-1 is a 9 bp, non-palindromic sequence with two non-identical half-sites and a central nucleotide which separates them. The amino acid sequence of the VSF-1 DNA-binding basic domain has a Lys at position -10 instead of a conserved Arg found in the other bZIP factors isolated so far. This lysine was found to be required for specific recognition of the non-palindromic binding site: a mutant VSF-1 with a Lys-to-Arg substitution at position -10 bound with higher affinity to a palindromic sequence than the wild-type protein. The minimal binding site of VSF-1 was sufficient and necessary to confer vascular-specific expression to a heterologous promoter in vivo. The vsf-1 promoter also showed vascular-specific expression in transgenic tobacco. The close similarity of these expression patterns suggests that VSF-1 is specifically involved in vascular expression of the grp1.8 gene in plants.
菜豆(Phaseolus vulgaris)的grp1.8基因在维管组织中特异性表达,编码一种细胞壁富含甘氨酸的结构蛋白(GRP1.8)。早期的启动子分析表明,grp1.8启动子的一个28 bp片段(vs-1)赋予异源最小启动子维管表达,并被番茄bZIP转录因子VSF-1结合。在此,我们分析了VSF-1与vs-1元件片段的相互作用,并研究了在启动子元件的DNA序列以及蛋白质中特异性结合的分子基础。VSF-1的最小结合位点是一个9 bp的非回文序列,有两个不相同的半位点和一个将它们隔开的中央核苷酸。VSF-1 DNA结合碱性结构域的氨基酸序列在-10位有一个赖氨酸,而不是迄今为止分离的其他bZIP因子中发现的保守精氨酸。发现这个赖氨酸是特异性识别非回文结合位点所必需的:在-10位由赖氨酸突变为精氨酸的突变型VSF-1与回文序列的结合亲和力高于野生型蛋白。VSF-1的最小结合位点在体内赋予异源启动子维管特异性表达是充分且必要的。vsf-1启动子在转基因烟草中也表现出维管特异性表达。这些表达模式的密切相似性表明VSF-1特别参与植物中grp1.8基因的维管表达。