Computational Structural Biology Group, Max Planck Institute of Biophysics, 60438 Frankfurt am Main, Germany.
Proc Natl Acad Sci U S A. 2012 Oct 30;109(44):E3035-44. doi: 10.1073/pnas.1209039109. Epub 2012 Oct 9.
Sodium-coupled substrate transport plays a central role in many biological processes. However, despite knowledge of the structures of several sodium-coupled transporters, the location of the sodium-binding site(s) often remains unclear. Several of these structures have the five transmembrane-helix inverted-topology repeat, LeuT-like (FIRL) fold, whose pseudosymmetry has been proposed to facilitate the alternating-access mechanism required for transport. Here, we provide biophysical, biochemical, and computational evidence for the location of the two cation-binding sites in the sodium-coupled betaine symporter BetP. A recent X-ray structure of BetP in a sodium-bound closed state revealed that one of these sites, equivalent to the Na2 site in related transporters, is located between transmembrane helices 1 and 8 of the FIRL-fold; here, we confirm the location of this site by other means. Based on the pseudosymmetry of this fold, we hypothesized that the second site is located between the equivalent helices 6 and 3. Molecular dynamics simulations of the closed-state structure suggest this second sodium site involves two threonine sidechains and a backbone carbonyl from helix 3, a phenylalanine from helix 6, and a water molecule. Mutating the residues proposed to form the two binding sites increased the apparent K(m) and K(d) for sodium, as measured by betaine uptake, tryptophan fluorescence, and (22)Na(+) binding, and also diminished the transient currents measured in proteoliposomes using solid supported membrane-based electrophysiology. Taken together, these results provide strong evidence for the identity of the residues forming the sodium-binding sites in BetP.
钠离子偶联底物转运在许多生物过程中起着核心作用。然而,尽管已经了解了几种钠离子转运蛋白的结构,但钠离子结合位点的位置通常仍不清楚。这些结构中有几个具有 5 个跨膜螺旋倒位拓扑重复的亮氨酸转运蛋白样(FIRL)折叠,其拟对称结构被认为有助于转运所需的交替访问机制。在这里,我们提供了钠离子偶联甜菜碱转运蛋白 BetP 中两个阳离子结合位点位置的生物物理、生化和计算证据。BetP 在钠离子结合的闭态的最近 X 射线结构表明,这些位点之一,相当于相关转运蛋白中的 Na2 位点,位于 FIRL 折叠的跨膜螺旋 1 和 8 之间;在这里,我们通过其他方法证实了该位点的位置。基于该折叠的拟对称结构,我们假设第二个位点位于等效的 6 号和 3 号螺旋之间。闭态结构的分子动力学模拟表明,第二个钠离子位点涉及三个氨基酸残基:螺旋 3 上的两个苏氨酸侧链和一个羰基、螺旋 6 上的一个苯丙氨酸以及一个水分子。突变推测形成两个结合位点的残基,增加了通过甜菜碱摄取、色氨酸荧光和(22)Na(+)结合测量的钠离子的表观 K(m)和 K(d),并减弱了使用固态支持膜基电生理学在质体中测量的瞬时电流。总之,这些结果为 BetP 中钠离子结合位点的残基身份提供了有力的证据。