Department of Structural Biology, Max Planck Institute of Biophysics, 60438 Frankfurt am Main, Germany.
J Mol Biol. 2011 Apr 1;407(3):368-81. doi: 10.1016/j.jmb.2011.01.028. Epub 2011 Jan 31.
The Na(+)-coupled symporter BetP catalyzes the uptake of the compatible solute betaine in the soil bacterium Corynebacterium glutamicum. BetP also senses hyperosmotic stress and regulates its own activity in response to stress level. We determined a three-dimensional (3D) map (at 8 Å in-plane resolution) of a constitutively active mutant of BetP in a C. glutamicum membrane environment by electron cryomicroscopy of two-dimensional crystals. The map shows that the constitutively active mutant, which lacks the C-terminal domain involved in osmosensing, is trimeric like wild-type BetP. Recently, we reported the X-ray crystal structure of BetP at 3.35 Å, in which all three protomers displayed a substrate-occluded state. Rigid-body fitting of this trimeric structure to the 3D map identified the periplasmic and cytoplasmic sides of the membrane. Fitting of an X-ray monomer to the individual protomer maps allowed assignment of transmembrane helices and of the substrate pathway, and revealed differences in trimer architecture from the X-ray structure in the tilt angle of each protomer with respect to the membrane. The three protomer maps showed pronounced differences around the substrate pathway, suggesting three different conformations within the same trimer. Two of those protomer maps closely match those of the atomic structures of the outward-facing and inward-facing states of the hydantoin transporter Mhp1, suggesting that the BetP protomer conformations reflect key states of the transport cycle. Thus, the asymmetry in the two-dimensional maps may reflect cooperativity of conformational changes within the BetP trimer, which potentially increases the rate of glycine betaine uptake.
Na(+)-偶联转运蛋白 BetP 催化土壤细菌谷氨酸棒杆菌中相容溶质甜菜碱的摄取。BetP 还能感知高渗胁迫,并根据胁迫水平调节自身活性。我们通过二维晶体的电子冷冻显微镜,确定了在谷氨酸棒杆菌膜环境中组成型激活突变体的三维(3D)图谱(平面分辨率为 8Å)。该图谱显示,缺乏参与渗透压感应的 C 末端结构域的组成型激活突变体与野生型 BetP 一样是三聚体。最近,我们报道了 BetP 的 X 射线晶体结构,其分辨率为 3.35Å,其中所有三个原体都呈现出底物封闭状态。将该三聚体结构刚性体拟合到 3D 图谱中,确定了膜的周质侧和细胞质侧。将 X 射线单体拟合到各个原体图谱中,允许分配跨膜螺旋和底物途径,并揭示了与 X 射线结构相比,三聚体结构在每个原体相对于膜的倾斜角度方面的差异。三个原体图谱在底物途径周围显示出明显的差异,表明在同一三聚体中存在三种不同的构象。其中两个原体图谱与酰脲转运蛋白 Mhp1 的外向和内向状态的原子结构非常匹配,表明 BetP 原体构象反映了运输循环的关键状态。因此,二维图谱中的不对称性可能反映了 BetP 三聚体中构象变化的协同性,这可能会增加甘氨酸甜菜碱的摄取速率。