Franken P, Schrell S, Peterson P A, Saedler H, Wienand U
Max-Planck-Institut für Züchtungsforschung, Köln, Germany.
Plant J. 1994 Jul;6(1):21-30. doi: 10.1046/j.1365-313x.1994.6010021.x.
Two maize genes, Zm 1 and Zm 38, related to the regulatory anthocyanin gene C1 were analyzed molecularly and used for fusion constructs in transient domain swapping experiments with the C1 wild-type gene. It was shown that both genes (Zm 1 and Zm 38) influence the expression of the A1 locus, a target gene for C1. Zm 1 activates the A1 promoter, however it does not turn on the whole anthocyanin pathway. The Zm 38 gene product shows functions similar to C1-I, a dominant inhibitor of the C1 wild-type gene. Concerning the trans-inhibition by C1-I two effects seem to be involved, competition for binding and formation of heterodimers. Further analysis of C1 function was carried out by a fine structure analysis of C1 mutants induced by the insertion and excision of transposable elements. These experiments indicate that for the activating domain of the protein, the formation of an alpha helix seems to be more important than a high negative charge.
对两个与花青素调控基因C1相关的玉米基因Zm1和Zm38进行了分子分析,并将其用于与C1野生型基因进行瞬时结构域交换实验的融合构建体中。结果表明,这两个基因(Zm1和Zm38)均影响C1的靶基因A1位点的表达。Zm1激活A1启动子,但它不会开启整个花青素途径。Zm38基因产物显示出与C1-I(C1野生型基因的显性抑制剂)相似的功能。关于C1-I的反式抑制作用,似乎涉及两种效应,即结合竞争和异二聚体的形成。通过对由转座元件的插入和切除诱导的C1突变体进行精细结构分析,进一步研究了C1的功能。这些实验表明,对于该蛋白质的激活结构域而言,α螺旋的形成似乎比高负电荷更为重要。