Laboratory of Biochemistry, Wageningen University, Stippeneng 4, 6708WE Wageningen, The Netherlands.
J Exp Bot. 2023 Dec 1;74(22):6922-6932. doi: 10.1093/jxb/erad259.
Most plant growth and development processes are regulated in one way or another by auxin. The best-studied mechanism by which auxin exerts its regulatory effects is through the nuclear auxin pathway (NAP). In this pathway, Auxin Response Factors (ARFs) are the transcription factors that ultimately determine which genes become auxin regulated by binding to specific DNA sequences. ARFs have primarily been studied in Arabidopsis thaliana, but recent studies in other species have revealed family-wide DNA binding specificities for different ARFs and the minimal functional system of the NAP system, consisting of a duo of competing ARFs of the A and B classes. In this review, we provide an overview of key aspects of ARF DNA binding such as auxin response elements (TGTCNN) and tandem repeat motifs, and consider how structural biology and in vitro studies help us understand ARF DNA preferences. We also highlight some recent aspects related to the regulation of ARF levels inside a cell, which may alter the DNA binding profile of ARFs in different tissues. We finally emphasize the need to study minimal NAP systems to understand fundamental aspects of ARF function, the need to characterize algal ARFs to understand how ARFs evolved, how cutting-edge techniques can increase our understanding of ARFs, and which remaining questions can only be answered by structural biology.
生长素在某种程度上调控着大多数植物的生长和发育过程。生长素发挥其调节作用的最佳研究机制是通过核生长素途径(NAP)。在这个途径中,生长素响应因子(ARFs)是转录因子,通过与特定的 DNA 序列结合,最终决定哪些基因成为生长素调控的基因。ARFs 主要在拟南芥中进行了研究,但最近在其他物种中的研究揭示了不同 ARFs 的家族范围的 DNA 结合特异性,以及由 A 类和 B 类竞争的 ARFs 对组成的 NAP 系统的最小功能系统。在这篇综述中,我们提供了 ARF DNA 结合的关键方面的概述,例如生长素反应元件(TGTCNN)和串联重复基序,并考虑了结构生物学和体外研究如何帮助我们理解 ARF DNA 偏好。我们还强调了一些与细胞内 ARF 水平调节相关的最近方面,这可能会改变 ARFs 在不同组织中的 DNA 结合谱。我们最后强调需要研究最小的 NAP 系统来理解 ARF 功能的基本方面,需要对藻类 ARFs 进行特征描述以了解 ARFs 是如何进化的,先进技术如何增加我们对 ARFs 的理解,以及哪些遗留问题只能通过结构生物学来回答。