Zenser N, Ellsmore A, Leasure C, Callis J
Section of Molecular and Cellular Biology, Graduate Group in Plant Biology, University of California, 1 Shields Avenue, Davis, CA 95616, USA.
Proc Natl Acad Sci U S A. 2001 Sep 25;98(20):11795-800. doi: 10.1073/pnas.211312798.
Aux/IAA gene family members were first identified by their rapid transcriptional increase in response to auxin. Auxin/indole-3-acetic acid protein (Aux/IAA) luciferase (LUC) fusions expressed in Arabidopsis under control of a non-auxin-responsive promoter were used to monitor the effect of auxin on protein abundance independent of transcriptional regulation by auxin. After 2 hr in the presence of 1 microM exogenous dichlorophenoxyacetic acid (2,4D), a synthetic auxin, the levels of pea IAA6 (PSIAA6) and Arabidopsis IAA1 LUC activity were 35% and 67%, respectively, of mock-treated genetically identical seedlings, whereas the activity of LUC alone from equivalently treated seedlings remained unaltered. The steady-state level of an Aux/IAA fusion protein lacking domain II, one of the conserved domains found in all Aux/IAA proteins, was not reduced in the presence of auxin. Higher levels of exogenous auxin were required to affect the steady-state level of the PSIAA6LUC fusion with a point mutation in domain II. A 13-aa consensus sequence from domain II fused to LUC created an auxin-responsive fusion protein. The change in steady-state levels in response to auxin is extremely rapid, with a decrease in LUC activity detectable by 2 min after auxin application. Direct half-life measurements show that the decrease caused by exogenous auxin is due to the decrease in fusion protein half-life. These results suggest that auxin rapidly modulates the degradation rate of Aux/IAA proteins, with higher levels of auxin increasing the proteolytic rate of Aux/IAA family members.
Aux/IAA基因家族成员最初是因其对生长素的快速转录增加而被鉴定出来的。在非生长素响应启动子控制下在拟南芥中表达的生长素/吲哚-3-乙酸蛋白(Aux/IAA)荧光素酶(LUC)融合体,被用于监测生长素对蛋白质丰度的影响,而不受生长素转录调控的影响。在存在1 microM外源二氯苯氧乙酸(2,4-D)(一种合成生长素)的情况下处理2小时后,豌豆IAA6(PSIAA6)和拟南芥IAA1 LUC活性水平分别为 mock处理的基因相同幼苗的35%和67%,而同等处理的幼苗中单独的LUC活性保持不变。缺乏结构域II(所有Aux/IAA蛋白中发现的保守结构域之一)的Aux/IAA融合蛋白的稳态水平在生长素存在时并未降低。需要更高水平的外源生长素才能影响结构域II中存在点突变的PSIAA6LUC融合体的稳态水平。来自结构域II的13个氨基酸的共有序列与LUC融合产生了一种生长素响应融合蛋白。对生长素响应的稳态水平变化极其迅速,生长素施加后2分钟即可检测到LUC活性降低。直接半衰期测量表明,外源生长素引起的降低是由于融合蛋白半衰期的降低。这些结果表明,生长素迅速调节Aux/IAA蛋白的降解速率,生长素水平越高,Aux/IAA家族成员的蛋白水解速率越高。