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花同源异型转录因子蛋白质-蛋白质相互作用的进化动力学

Evolutionary Dynamics of Floral Homeotic Transcription Factor Protein-Protein Interactions.

作者信息

Bartlett Madelaine, Thompson Beth, Brabazon Holly, Del Gizzi Robert, Zhang Thompson, Whipple Clinton

机构信息

Department of Biology, University of Massachusetts Amherst Department of Biology, Brigham Young University

Department of Biology, East Carolina University.

出版信息

Mol Biol Evol. 2016 Jun;33(6):1486-501. doi: 10.1093/molbev/msw031. Epub 2016 Feb 22.

Abstract

Protein-protein interactions (PPIs) have widely acknowledged roles in the regulation of development, but few studies have addressed the timing and mechanism of shifting PPIs over evolutionary history. The B-class MADS-box transcription factors, PISTILLATA (PI) and APETALA3 (AP3) are key regulators of floral development. PI-like (PI(L)) and AP3-like (AP3(L)) proteins from a number of plants, including Arabidopsis thaliana (Arabidopsis) and the grass Zea mays (maize), bind DNA as obligate heterodimers. However, a PI(L) protein from the grass relative Joinvillea can bind DNA as a homodimer. To ascertain whether Joinvillea PI(L) homodimerization is an anomaly or indicative of broader trends, we characterized PI(L) dimerization across the Poales and uncovered unexpected evolutionary lability. Both obligate B-class heterodimerization and PI(L) homodimerization have evolved multiple times in the order, by distinct molecular mechanisms. For example, obligate B-class heterodimerization in maize evolved very recently from PI(L) homodimerization. A single amino acid change, fixed during domestication, is sufficient to toggle one maize PI(L) protein between homodimerization and obligate heterodimerization. We detected a signature of positive selection acting on residues preferentially clustered in predicted sites of contact between MADS-box monomers and dimers, and in motifs that mediate MADS PPI specificity in Arabidopsis. Changing one positively selected residue can alter PI(L) dimerization activity. Furthermore, ectopic expression of a Joinvillea PI(L) homodimer in Arabidopsis can homeotically transform sepals into petals. Our results provide a window into the evolutionary remodeling of PPIs, and show that novel interactions have the potential to alter plant form in a context-dependent manner.

摘要

蛋白质-蛋白质相互作用(PPIs)在发育调控中具有广泛认可的作用,但很少有研究探讨在进化历史中PPIs转变的时间和机制。B类MADS-box转录因子PISTILLATA(PI)和APETALA3(AP3)是花发育的关键调节因子。来自多种植物,包括拟南芥和禾本科植物玉米的PI样(PI(L))蛋白和AP3样(AP3(L))蛋白以专性异二聚体的形式结合DNA。然而,禾本科植物相对银桦的一种PI(L)蛋白可以以同二聚体的形式结合DNA。为了确定银桦PI(L)同二聚化是一种异常现象还是更广泛趋势的指示,我们对禾本科植物中的PI(L)二聚化进行了表征,并发现了意想不到的进化不稳定性。专性B类异二聚化和PI(L)同二聚化在该目中都通过不同的分子机制多次进化。例如,玉米中的专性B类异二聚化是最近从PI(L)同二聚化进化而来的。在驯化过程中固定的一个氨基酸变化足以使一种玉米PI(L)蛋白在同二聚化和专性异二聚化之间转换。我们检测到正选择作用于优先聚集在MADS-box单体和二聚体之间预测接触位点以及介导拟南芥中MADS PPI特异性的基序中的残基的特征。改变一个正选择的残基可以改变PI(L)二聚化活性。此外,在拟南芥中异位表达银桦PI(L)同二聚体可以将萼片同源异型转化为花瓣。我们的结果为PPIs的进化重塑提供了一个窗口,并表明新的相互作用有可能以上下文依赖的方式改变植物形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/048c/4868119/1533e9f2b457/msw031f1p.jpg

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