Department of Electrical Engineering , University of Washington, Seattle, Washington 98195, USA.
Plant Physiol. 2012 Sep;160(1):135-42. doi: 10.1104/pp.112.202184. Epub 2012 Jul 27.
Explaining how the small molecule auxin triggers diverse yet specific responses is a long-standing challenge in plant biology. An essential step in auxin response is the degradation of Auxin/Indole-3-Acetic Acid (Aux/IAA, referred to hereafter as IAA) repressor proteins through interaction with auxin receptors. To systematically characterize diversity in degradation behaviors among IAA|receptor pairs, we engineered auxin-induced degradation of plant IAA proteins in yeast (Saccharomyces cerevisiae). We found that IAA degradation dynamics vary widely, depending on which receptor is present, and are not encoded solely by the degron-containing domain II. To facilitate this and future studies, we identified a mathematical model able to quantitatively describe IAA degradation behavior in a single parameter. Together, our results demonstrate the remarkable tunability conferred by specific configurations of the auxin response pathway.
解释小分子生长素如何引发多样化但特定的反应,是植物生物学中的一个长期挑战。生长素反应的一个重要步骤是通过与生长素受体的相互作用,降解生长素/吲哚-3-乙酸(Aux/IAA,以下简称 IAA)抑制蛋白。为了系统地表征 IAA|受体对之间降解行为的多样性,我们在酵母(酿酒酵母)中设计了生长素诱导的植物 IAA 蛋白降解。我们发现,IAA 的降解动力学变化很大,取决于存在哪种受体,并且不仅仅由含有降解结构域 II 的区域编码。为了便于这项研究和未来的研究,我们确定了一个数学模型,该模型能够用一个参数来定量描述 IAA 的降解行为。总之,我们的研究结果表明,生长素反应途径的特定构型赋予了其显著的可调性。