Sepulveda-Garcia Edgar, Fulton Elena C, Parlan Emily V, O'Connor Lily E, Fleming Anneke A, Replogle Amy J, Rocha-Sosa Mario, Gendron Joshua M, Thines Bryan
Instituto de Biotecnología, Universidad del Papaloapan, Tuxtepec 68301, Mexico.
Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca 62250, Mexico.
Plants (Basel). 2021 Oct 19;10(10):2228. doi: 10.3390/plants10102228.
SCF-type E3 ubiquitin ligases provide specificity to numerous selective protein degradation events in plants, including those that enable survival under environmental stress. SCF complexes use F-box (FBX) proteins as interchangeable substrate adaptors to recruit protein targets for ubiquitylation. FBX proteins almost universally have structure with two domains: A conserved N-terminal F-box domain interacts with a SKP protein and connects the FBX protein to the core SCF complex, while a C-terminal domain interacts with the protein target and facilitates recruitment. The F-BOX STRESS INDUCED (FBS) subfamily of plant FBX proteins has an atypical structure, however, with a centrally located F-box domain and additional conserved regions at both the N- and C-termini. FBS proteins have been linked to environmental stress networks, but no ubiquitylation target(s) or biological function has been established for this subfamily. We have identified two WD40 repeat-like proteins in Arabidopsis that are highly conserved in plants and interact with FBS proteins, which we have named FBS INTERACTING PROTEINs (FBIPs). FBIPs interact exclusively with the N-terminus of FBS proteins, and this interaction occurs in the nucleus. FBS1 destabilizes FBIP1, consistent with FBIPs being ubiquitylation targets SCF complexes. This work indicates that FBS proteins may function in stress-responsive nuclear events, and it identifies two WD40 repeat-like proteins as new tools with which to probe how an atypical SCF complex, SCF, functions via FBX protein N-terminal interaction events.
SCF型E3泛素连接酶为植物中众多选择性蛋白质降解事件提供特异性,包括那些使植物在环境胁迫下得以存活的事件。SCF复合物利用F-盒(FBX)蛋白作为可互换的底物衔接子来招募蛋白质靶标进行泛素化。FBX蛋白几乎普遍具有两个结构域:保守的N端F-盒结构域与SKP蛋白相互作用,并将FBX蛋白连接到核心SCF复合物,而C端结构域与蛋白质靶标相互作用并促进招募。然而,植物FBX蛋白的F-盒应激诱导(FBS)亚家族具有非典型结构;其F-盒结构域位于中央,N端和C端均有额外的保守区域。FBS蛋白已与环境胁迫网络相关联,但该亚家族尚未确定泛素化靶标或生物学功能。我们在拟南芥中鉴定出两种WD40重复样蛋白,它们在植物中高度保守,并与FBS蛋白相互作用,我们将其命名为FBS相互作用蛋白(FBIP)。FBIP仅与FBS蛋白的N端相互作用,且这种相互作用发生在细胞核中。FBS1使FBIP1不稳定,这与FBIP作为SCF复合物的泛素化靶标一致。这项研究表明,FBS蛋白可能在应激反应性核事件中发挥作用,并鉴定出两种WD40重复样蛋白作为新工具,用以探究非典型SCF复合物SCF如何通过FBX蛋白N端相互作用事件发挥功能。