Plant Molecular and Cellular Biology Program, University of Florida, Gainesville, FL, USA.
Horticultural Sciences Department, University of Florida, Gainesville, FL, USA.
Plant Mol Biol. 2019 May;100(1-2):47-58. doi: 10.1007/s11103-019-00842-w. Epub 2019 Feb 19.
The two predicted WD40 propellers on TOPLESS function as protein-protein interaction domains. The 1st WD40 propeller mediates interaction with RAV1, and the 2nd WD40 propeller mediates interaction with VRN5. The TOPLESS/TOPLESS-RELATED (TPL/TPR) co-repressor family proteins are known to interact with a wide variety of proteins including transcription factors, Mediator subunits, histone deacetylases, and histone tails. Through these interactions, TPL/TPR act to repress transcription in an increasingly diverse array of plant pathways. Proteins that bind TPL/TPR typically contain one or more Repression Domains (RDs) that mediate the interaction. For example, the well-characterized Ethylene response factor-associated Amphiphilic Repression (EAR) motif is known to facilitate interaction by binding the TOPLESS Domain (TPD) located in the N-terminus. Here we show that in yeast two-hybrid assays, the non-EAR protein, Related to ABI3/VP1-1 (RAV1), binds a novel region located within the first nine WD40-repeats of TPL. Protein modeling and in silico analysis suggest that these nine WD40 repeats may form the first of two WD40 propellers located on C-terminus of TPL. The interaction between RAV1 and the 1st WD40 propeller is conserved with another RAV family member, TEMPRANILLO1 (TEM1) and is mediated by the B3 Repression Domain (BRD) located on both RAV1 and TEM1. Also, the predicted 2nd WD40 propeller was shown in yeast cells to bind Vernalization 5 (VRN5), which contains several unconfirmed partial RDs. Furthermore, we demonstrate that the 1st WD40 propeller of TPL can form a complex with RAV1 both in yeast and in Arabidopsis protoplasts.
TOPLESS 上的两个预测 WD40 桨叶充当蛋白质-蛋白质相互作用结构域。第一个 WD40 桨叶介导与 RAV1 的相互作用,第二个 WD40 桨叶介导与 VRN5 的相互作用。TOPLESS/TOPLESS-RELATED(TPL/TPR)共抑制因子家族蛋白已知与多种蛋白质相互作用,包括转录因子、中介体亚基、组蛋白去乙酰化酶和组蛋白尾部。通过这些相互作用,TPL/TPR 作用于以越来越多样化的植物途径来抑制转录。与 TPL/TPR 结合的蛋白质通常包含一个或多个抑制结构域(RDs),介导相互作用。例如,众所周知的乙烯反应因子相关的两性抑制(EAR)基序,通过结合位于 N 端的 TOPLESS 结构域(TPD)来促进相互作用。在这里,我们表明,在酵母双杂交测定中,非 EAR 蛋白,与 ABI3/VP1-1 相关(RAV1),结合位于 TPL 前九个 WD40 重复内的一个新区域。蛋白质建模和计算机分析表明,这九个 WD40 重复可能形成位于 TPL C 端的两个 WD40 桨叶中的第一个。RAV1 与第一个 WD40 桨叶之间的相互作用与另一个 RAV 家族成员 TEMPRANILLO1(TEM1)保守,并且由位于 RAV1 和 TEM1 上的 B3 抑制结构域(BRD)介导。此外,预测的第二个 WD40 桨叶在酵母细胞中显示与 Vernalization 5(VRN5)结合,其包含几个未经证实的部分 RD。此外,我们证明 TPL 的第一个 WD40 桨叶可以在酵母和拟南芥原生质体中与 RAV1 形成复合物。