Unger Tamar, Dym Orly, Albeck Shira, Jacobovitch Yossi, Bernehim Reut, Marom David, Pisanty Odelia, Breiman Adina
Department of Structural Biology, Weizmann Institute of Science, 76100, Rehovot, Israel.
J Struct Funct Genomics. 2010 Jun;11(2):113-23. doi: 10.1007/s10969-010-9085-8. Epub 2010 Mar 20.
Here we describe the crystal structure of the N-terminal domain of the FK506-binding protein (FKBP) from wheat (wFKBP73), which is the first structure presenting three FK domains (wFK73_1, wFK73_2 and wFK73_3). The crystal model includes wFK73_2 and wFK73_3 domains and only part of the wFK73_1 domain. The wFK73_1 domain is responsible for binding FK506 and for peptidyl prolyl cis/trans isomerase (PPIase) activity, while the wFK73_2 and wFK73_3 domains lack these activities. A structure-based sequence comparison demonstrated that the absence of a large enough hydrophobic pocket important for PPIase activity, and of the conserved residues necessary for drug binding in the wFK73_2 and wFK73_3 domains explains the lack of these activities in these domains. Sequence and structural comparison between the three wFKBP73 domains suggest that the wFK73_2 domain is the most divergent. A structural comparison of the FK domains of wFKBP73 with other FKBPs containing more than one FK domain, revealed that while the overall architecture of each of the three FK domains displays a typical FKBP fold, their relative arrangement in space is unique and may have important functional implications. We suggest that the existence of FKBPs with three FK domains offers additional interactive options for these plant proteins enlarging the overall regulatory functions of these proteins.
在此,我们描述了来自小麦的FK506结合蛋白(FKBP)N端结构域(wFKBP73)的晶体结构,这是首个呈现三个FK结构域(wFK73_1、wFK73_2和wFK73_3)的结构。晶体模型包括wFK73_2和wFK73_3结构域以及仅部分wFK73_1结构域。wFK73_1结构域负责结合FK506以及肽基脯氨酰顺/反异构酶(PPIase)活性,而wFK73_2和wFK73_3结构域缺乏这些活性。基于结构的序列比较表明,wFK73_2和wFK73_3结构域中缺乏对PPIase活性至关重要的足够大的疏水口袋以及药物结合所需的保守残基,这解释了这些结构域中缺乏这些活性的原因。三个wFKBP73结构域之间的序列和结构比较表明,wFK73_2结构域差异最大。wFKBP73的FK结构域与其他含有多个FK结构域的FKBP的结构比较显示,虽然三个FK结构域各自的整体结构呈现典型的FKBP折叠,但它们在空间中的相对排列是独特的,可能具有重要的功能意义。我们认为,具有三个FK结构域的FKBP的存在为这些植物蛋白提供了额外的相互作用选项,扩大了这些蛋白的整体调节功能。