Gilkerson Jonathan, Callis Judy
a Department of Molecular and Cellular Biology and Plant Biology Graduate Group ; University of California ; Davis , CA USA.
Plant Signal Behav. 2014;9(10):e972207. doi: 10.4161/psb.29850.
Many plant growth and developmental processes are modulated by the hormone auxin. Auxin-modulated proteolysis of Aux/IAAs, a family of transcriptional repressors, represents a major mode of auxin action. Auxin facilitates the interaction of Aux/IAAs with TIR1/AFB F-box proteins, promoting their ubiquitination by the SCF(TIR1/AFB) ubiquitin E3 ligase leading to subsequent degradation by the 26S proteasome. To identify new genes regulating Aux/IAA proteolysis in Arabidopsis thaliana, we took a genetic approach, identifying individuals with altered degradation of an IAA1-luciferase fusion protein (IAA1-LUC). A mutant with 2-fold slower IAA1-LUC degradation rate compared with wild-type was isolated. Positional cloning identified the mutant as an allele of TOPOISOMERASE6B, named top6b-7. TOP6B encodes a subunit of a plant and archea-specific enzyme regulating endoreduplication, DNA damage repair and transcription in plants. T-DNA insertion alleles (top6b-8 and top6b-9) were also analyzed. top6b-7 seedlings are less sensitive to exogenous auxin than wild-type siblings in primary root growth assays, and experiments with DR5:GUS. Additionally, top6b-7 seedlings have a 40% reduction in the amount of endogenous IAA. These data suggest that increased IAA1-LUC half-life in top6b-7 probably results from a combination of both lower endogenous IAA levels and reduced sensitivity to auxin.
许多植物生长和发育过程受激素生长素调控。生长素对Aux/IAAs(一类转录抑制因子)的蛋白水解作用是生长素发挥作用的主要方式。生长素促进Aux/IAAs与TIR1/AFB F-box蛋白相互作用,通过SCF(TIR1/AFB)泛素E3连接酶促进其泛素化,进而导致其被26S蛋白酶体降解。为了鉴定拟南芥中调控Aux/IAA蛋白水解的新基因,我们采用了遗传学方法,筛选出IAA1-荧光素酶融合蛋白(IAA1-LUC)降解发生改变的个体。分离出一个与野生型相比IAA1-LUC降解速率慢2倍的突变体。通过定位克隆确定该突变体是拓扑异构酶6B的一个等位基因,命名为top6b-7。TOP6B编码一种植物和古细菌特有的酶的亚基,该酶在植物中调控核内复制、DNA损伤修复和转录。我们还分析了T-DNA插入等位基因(top6b-8和top6b-9)。在主根生长试验以及利用DR5:GUS进行的实验中,top6b-7幼苗对外源生长素的敏感性低于其野生型同胞。此外,top6b-7幼苗内源IAA含量减少40%。这些数据表明,top6b-7中IAA1-LUC半衰期的延长可能是内源IAA水平降低和对生长素敏感性降低共同作用的结果。