Sablowski R W, Meyerowitz E M
Division of Biology 156-29, California Institute of Technology, Pasadena, California 91125, USA.
Plant Cell. 1998 Sep;10(9):1453-63. doi: 10.1105/tpc.10.9.1453.
The floral homeotic gene APETALA3 (AP3) is required for stamen and petal development in Arabidopsis. The previously described ap3-1 allele is temperature sensitive and carries a missense mutation near a 5' splice site. The missense mutation lies within a domain of the AP3 protein that is thought to be important for protein-protein interactions, which suggests that temperature sensitivity of ap3-1 could reflect an unstable interaction with cofactors. Here, we show instead that the ap3-1 mutation causes a temperature-dependent splicing defect and that temperature sensitivity is not a property of the protein products of ap3-1 but of RNA processing, possibly because of unstable base pairing between the transcript and small nuclear RNAs. The unexpected defect of the ap3-1 mutant offers unique opportunities for genetic and molecular studies of splice site recognition in plants.
花同源异型基因APETALA3(AP3)是拟南芥雄蕊和花瓣发育所必需的。先前描述的ap3-1等位基因对温度敏感,并且在一个5'剪接位点附近携带一个错义突变。该错义突变位于AP3蛋白的一个结构域内,该结构域被认为对蛋白质-蛋白质相互作用很重要,这表明ap3-1的温度敏感性可能反映了与辅因子的不稳定相互作用。相反,我们在此表明,ap3-1突变会导致温度依赖性剪接缺陷,并且温度敏感性不是ap3-1蛋白质产物的特性,而是RNA加工的特性,这可能是由于转录本与小核RNA之间不稳定的碱基配对所致。ap3-1突变体的这一意外缺陷为植物剪接位点识别的遗传和分子研究提供了独特的机会。