Wang Zhibin, Triezenberg Steven J, Thomashow Michael F, Stockinger Eric J
Department of Horticulture and Crop Science, The Ohio State University/OARDC, Wooster, OH 44691, USA.
Plant Mol Biol. 2005 Jul;58(4):543-59. doi: 10.1007/s11103-005-6760-4.
The Arabidopsis CBF proteins activate expression of a set of genes whose upstream regulatory sequences typically harbor one or more copies of the CRT/DRE low temperature cis-acting DNA regulatory element. Using domain swap experiments in both yeast and Arabidopsis we show that the NH3-terminal 115 amino acids direct CBF1 to target genes and the COOH-terminal 98 amino acids function in trans-activation. Mutational analysis through the COOH-terminus using truncation and alanine-substitution mutants in yeast revealed four motifs that contribute positively towards activation. Overexpression of mutants in plants support this conclusion and also indicated that disruption of a single motif did not seriously compromise activity unless combined with the disruption of a second. These motifs consist of clusters of hydrophobic residues which are delimited from one another by short stretches of Asp, Glu, Pro and other residues favoring the formation of loops. This structural pattern is conserved across plant taxa as revealed through alignment of Arabidopsis CBF1 with homologous sequences from a diverse array of plant species. Overexpression in plants of the CBF1 COOH-terminus as a fusion with the yeast GAL4 DNA binding domain also resulted in severe stunting of growth, a phenotype which was alleviated if the activation domain was rendered ineffective. Taken together these results suggest that high level overexpression of an active, CBF activation domain compromises plant growth.
拟南芥CBF蛋白可激活一组基因的表达,这些基因的上游调控序列通常含有一个或多个CRT/DRE低温顺式作用DNA调控元件拷贝。通过在酵母和拟南芥中进行结构域交换实验,我们发现NH3端的115个氨基酸将CBF1导向靶基因,而COOH端的98个氨基酸在反式激活中起作用。利用酵母中的截短突变体和丙氨酸替代突变体对COOH端进行突变分析,发现了四个对激活有正向作用的基序。在植物中过表达这些突变体支持了这一结论,并且还表明,除非与另一个基序的破坏相结合,否则单个基序的破坏不会严重损害活性。这些基序由疏水残基簇组成,它们被短片段的天冬氨酸、谷氨酸、脯氨酸和其他有利于形成环的残基相互分隔。通过将拟南芥CBF1与多种植物物种的同源序列进行比对发现,这种结构模式在整个植物类群中是保守的。将CBF1的COOH端与酵母GAL4 DNA结合结构域融合在植物中过表达,也导致了严重的生长发育迟缓,如果激活结构域失效,这种表型会得到缓解。综合这些结果表明,活性CBF激活结构域的高水平过表达会损害植物生长。