Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
Structure. 2024 Sep 5;32(9):1528-1543.e3. doi: 10.1016/j.str.2024.06.015. Epub 2024 Jul 17.
Many membrane transporters share the LeuT fold-two five-helix repeats inverted across the membrane plane. Despite hundreds of structures, whether distinct conformational mechanisms are supported by the LeuT fold has not been systematically determined. After annotating published LeuT-fold structures, we analyzed distance difference matrices (DDMs) for nine proteins with multiple available conformations. We identified rigid bodies and relative movements of transmembrane helices (TMs) during distinct steps of the transport cycle. In all transporters, the bundle (first two TMs of each repeat) rotates relative to the hash (third and fourth TMs). Motions of the arms (fifth TM) to close or open the intracellular and outer vestibules are common, as is a TM1a swing, with notable variations in the opening-closing motions of the outer vestibule. Our analyses suggest that LeuT-fold transporters layer distinct motions on a common bundle-hash rock and demonstrate that systematic analyses can provide new insights into large structural datasets.
许多膜转运蛋白具有 LeuT 折叠结构——两个跨膜平面反向的五螺旋重复。尽管已经有数百个结构,但 LeuT 折叠是否支持不同的构象机制尚未得到系统确定。在对已发表的 LeuT 折叠结构进行注释后,我们分析了具有多个可用构象的九种蛋白质的距离差异矩阵 (DDM)。我们确定了在运输循环的不同步骤中,跨膜螺旋 (TM) 的刚性体和相对运动。在所有转运蛋白中,束(每个重复的前两个 TM)相对于哈什(第三和第四个 TM)旋转。臂(第五个 TM)的运动以关闭或打开细胞内和外部前庭是常见的,TM1a 摆动也是如此,外部前庭的打开-关闭运动有明显的变化。我们的分析表明,LeuT 折叠转运蛋白在共同的束-哈什岩上叠加不同的运动,并证明系统分析可以为大型结构数据集提供新的见解。