Zhang Bipei, Deneer Anna, Fleck Christian, Hülskamp Martin
Key Laboratory of Tropical and Subtropical Flowers and Landscape Plants of Guangdong Higher Education Institutions/College of Horticulture and Landscape Architecture, ZhongKai University of Agriculture and Engineering, Guangzhou, China.
Biometris, Department of Mathematical and Statistical Methods, Wageningen University, Wageningen, Netherlands.
Front Plant Sci. 2024 Mar 5;15:1331156. doi: 10.3389/fpls.2024.1331156. eCollection 2024.
Trichome patterning in is regulated by , and (MBW) genes. These are considered to form a trimeric MBW protein complex that promotes trichome formation. The MBW proteins are engaged in a regulatory network to select trichome cells among epidermal cells through R3MYB proteins that can move between cells and repress the MBW complex by competitive binding with the R2R3MYB to the bHLHL protein. We use quantitative pull-down assays to determine the relative dissociation constants for the protein-protein interactions of the involved genes. We find similar binding strength between the trichome promoting genes and weaker binding of the R3MYB inhibitors. We used the dissociation constants to calculate the relative percentage of all possible complex combinations and found surprisingly low fractions of those complexes that are typically considered to be relevant for the regulation events. Finally, we predict an increased robustness in patterning as a consequence of higher ordered complexes mediated by GL3 dimerization.
拟南芥中的表皮毛模式由GL1、GL3和TTG1(MBW)基因调控。这些基因被认为形成一个三聚体MBW蛋白复合体,促进表皮毛的形成。MBW蛋白参与一个调控网络,通过R3 MYB蛋白在表皮细胞中选择表皮毛细胞,R3 MYB蛋白可在细胞间移动,并通过与R2R3 MYB竞争性结合bHLHL蛋白来抑制MBW复合体。我们使用定量下拉分析来确定所涉及基因的蛋白质-蛋白质相互作用的相对解离常数。我们发现表皮毛促进基因之间的结合强度相似,而R3 MYB抑制剂的结合较弱。我们使用解离常数来计算所有可能的复合体组合的相对百分比,结果发现通常被认为与调控事件相关的那些复合体的比例出奇地低。最后,我们预测由于GL3二聚化介导的高阶复合体,模式形成的稳健性会增加。