Effendi Yunus, Ferro Noel, Labusch Corinna, Geisler Markus, Scherer Günther F E
Leibniz Universität Hannover, Institut für Gartenbauliche Produktionssysteme, Abt. Molekulare Ertragsphysiologie, Herrenhäuser Str. 2, D-30419 Hannover, Germany Al Azhar Indonesia University, Department of Biology, Sisingamangaraja, Jakarta 12110, Indonesia.
University of Bonn, Mulliken Center for Theoretical Chemistry, Institute for Physical and Theoretical Chemistry, Beringstr. 4, D-53115 Bonn, Germany.
J Exp Bot. 2015 Jan;66(1):403-18. doi: 10.1093/jxb/eru433. Epub 2014 Nov 11.
The function of the extracytoplasmic AUXIN-BINDING-PROTEIN1 (ABP1) is largely enigmatic. We complemented a homozygous T-DNA insertion null mutant of ABP1 in Arabidopsis thaliana Wassilewskia with three mutated and one wild-type (wt) ABP1 cDNA, all tagged C-terminally with a strepII-FLAG tag upstream the KDEL signal. Based on in silico modelling, the abp1 mutants were predicted to have altered geometries of the auxin binding pocket and calculated auxin binding energies lower than the wt. Phenotypes linked to auxin transport were compromised in these three complemented abp1 mutants. Red light effects, such as elongation of hypocotyls in constant red (R) and far-red (FR) light, in white light supplemented by FR light simulating shade, and inhibition of gravitropism by R or FR, were all compromised in the complemented lines. Using auxin- or light-induced expression of marker genes, we showed that auxin-induced expression was delayed already after 10 min, and light-induced expression within 60 min, even though TIR1/AFB or phyB are thought to act as receptors relevant for gene expression regulation. The expression of marker genes in seedlings responding to both auxin and shade showed that for both stimuli regulation of marker gene expression was altered after 10-20 min in the wild type and phyB mutant. The rapidity of expression responses provides a framework for the mechanics of functional interaction of ABP1 and phyB to trigger interwoven signalling pathways.
胞外生长素结合蛋白1(ABP1)的功能在很大程度上仍是个谜。我们用三个突变的和一个野生型(wt)ABP1 cDNA对拟南芥瓦西列夫斯基型纯合T-DNA插入缺失突变体ABP1进行了互补,所有这些cDNA在KDEL信号上游的C末端都带有一个链霉亲和素II-FLAG标签。基于计算机模拟,预测abp1突变体的生长素结合口袋几何形状发生了改变,计算出的生长素结合能低于野生型。与生长素运输相关的表型在这三个互补的abp1突变体中受到损害。红光效应,如在恒定红光(R)和远红光(FR)下胚轴的伸长、在补充了FR光以模拟遮荫的白光下胚轴的伸长,以及R或FR对向重力性的抑制,在互补系中都受到了损害。利用生长素或光诱导的标记基因表达,我们发现即使TIR1/AFB或phyB被认为是与基因表达调控相关的受体,生长素诱导的表达在10分钟后就已经延迟,光诱导的表达在60分钟内延迟。对生长素和遮荫都有反应的幼苗中标记基因的表达表明,对于这两种刺激,野生型和phyB突变体中标记基因表达的调控在10 - 20分钟后都发生了改变。表达反应的快速性为ABP1和phyB触发交织信号通路的功能相互作用机制提供了一个框架。