Carranco Raúl, Chandrasekharan Mahesh B, Townsend James C, Hall Timothy C
Institute of Developmental and Molecular Biology and Department of Biology, Texas A & M University, College Station, TX 77843-3155, USA.
Plant Mol Biol. 2004 May;55(2):221-37. doi: 10.1007/s11103-004-0512-8.
The phas promoter is potently transcribed during embryogenesis but in vegetative tissues it is completely silenced by a rotationally positioned nucleosome. Ectopic expression in leaves of PvALF, a seed-specific transcription factor belonging to the plant-exclusive B3 domain-containing VP1/ABI3 family, leads to chromatin remodeling of the phas promoter, permitting transcriptional activation by the growth regulator abscisic acid (ABA). Specific interaction with RY elements present in 40-42 bp oligonucleotide probes has been shown in vitro for Arabidopsis ABI3 and the isolated B3 domain of maize VP1. Here, both in vivo and in vitro approaches were used to show physical interaction of the B3 domain of VP1 or PvALF to RY elements in the native phas promoter. In electrophoretic mobility shift assays, small changes in B3 domain concentration differentiated between RY element-specific and sequence non-specific DNA binding. Increased affinity of the PvALF B3 domain to RY elements was observed in the presence of histones and other basic proteins, possibly reflecting the ability of this B3 factor to interact with the phas promoter in its nucleosomal configuration.
phas启动子在胚胎发生过程中被高效转录,但在营养组织中,它被一个旋转定位的核小体完全沉默。属于植物特有的含B3结构域的VP1/ABI3家族的种子特异性转录因子PvALF在叶片中的异位表达导致phas启动子的染色质重塑,从而允许生长调节剂脱落酸(ABA)进行转录激活。拟南芥ABI3和玉米VP1的分离B3结构域在体外已被证明与40 - 42 bp寡核苷酸探针中存在的RY元件有特异性相互作用。在这里,体内和体外方法都被用于证明VP1或PvALF的B3结构域与天然phas启动子中的RY元件存在物理相互作用。在电泳迁移率变动分析中,B3结构域浓度的微小变化区分了RY元件特异性和序列非特异性DNA结合。在组蛋白和其他碱性蛋白存在的情况下,观察到PvALF B3结构域与RY元件的亲和力增加,这可能反映了该B3因子在其核小体构型中与phas启动子相互作用的能力。