Department of Physiology, University of California, Los Angeles, CA 90095, USA.
Proc Natl Acad Sci U S A. 2012 Sep 11;109(37):14847-51. doi: 10.1073/pnas.1213445109. Epub 2012 Aug 28.
FucP of Escherichia coli catalyzes L-fucose/H(+) symport, and a crystal structure in an outward-facing conformation has been reported. However, nothing is known about FucP conformational dynamics. Here, we show that addition of L-fucose to purified FucP in detergent induces ∼20% quenching of Trp fluorescence in a concentration-dependent manner without a shift in λ(max). Quenching is essentially abolished when both Trp38 and Trp278, which are positioned on opposing faces of the outward-facing cavity walls, are replaced with Tyr or Phe, and reduced quenching is observed when either Trp is mutated. Therefore, both Trp residues are involved in the phenomenon. Furthermore, replacement of either Trp38 or Trp278, predominantly Trp38, causes decreased quenching, decreased apparent affinity for L-fucose, and significant inhibition of active L-fucose transport, indicating that the two residues are likely involved directly in sugar binding. It is proposed that sugar binding induces a conformational change in which the outward-facing cavity in FucP closes, thereby bringing Trp38 and Trp278 into close proximity around the bound sugar to form an "occluded" intermediate. The location of these two Trp residues provides a unique method for analyzing structural dynamics in FucP.
大肠杆菌 FucP 催化 L-岩藻糖/H(+)协同转运,其向外开放构象的晶体结构已有报道。然而,FucP 构象动力学方面的信息仍不清楚。本文表明,在去污剂存在的条件下,向纯化的 FucP 中添加 L-岩藻糖会引起 Trp 荧光猝灭,猝灭程度与 L-岩藻糖浓度呈依赖关系,且 λ(max)无位移。当位于向外开放腔室壁相对面上的 Trp38 和 Trp278 突变为 Tyr 或 Phe 时,猝灭基本被消除,当两个 Trp 都发生突变时,猝灭程度降低。因此,两个 Trp 残基都参与了这一现象。此外,Trp38 或 Trp278 (主要是 Trp38 )的替换会导致猝灭程度降低、对 L-岩藻糖的表观亲和力降低,以及主动 L-岩藻糖转运的显著抑制,表明这两个残基可能直接参与糖结合。本文提出,糖结合会诱导构象变化,使 FucP 的外向腔关闭,从而使 Trp38 和 Trp278 围绕结合的糖紧密接近,形成“封闭”中间体。这两个 Trp 残基的位置为分析 FucP 中的结构动力学提供了一种独特的方法。