螺旋束
捆绑
结晶学
合作性
化学
膜
离子
跨膜蛋白
蛋白质设计
螺旋(腹足类)
生物物理学
化学物理
蛋白质结构
材料科学
生物
生物化学
复合材料
受体
有机化学
生态学
蜗牛
作者
Nathan H. Joh,Tuo Wang,Manasi Bhate,Rudresh Acharya,Yibing Wu,Michael Grabe,Mei Hong,Gevorg Grigoryan,William F. DeGrado
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2014-12-19
卷期号:346 (6216): 1520-1524
被引量:273
标识
DOI:10.1126/science.1261172
摘要
The design of functional membrane proteins from first principles represents a grand challenge in chemistry and structural biology. Here, we report the design of a membrane-spanning, four-helical bundle that transports first-row transition metal ions Zn(2+) and Co(2+), but not Ca(2+), across membranes. The conduction path was designed to contain two di-metal binding sites that bind with negative cooperativity. X-ray crystallography and solid-state and solution nuclear magnetic resonance indicate that the overall helical bundle is formed from two tightly interacting pairs of helices, which form individual domains that interact weakly along a more dynamic interface. Vesicle flux experiments show that as Zn(2+) ions diffuse down their concentration gradients, protons are antiported. These experiments illustrate the feasibility of designing membrane proteins with predefined structural and dynamic properties.
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