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Gating by ionic strength and safety check by cyclic-di-AMP in the ABC transporter OpuA

机译:通过离子强度和安全性检查ABC Transporter OPUA的Cyclic-Di-AMP浇注

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(Micro)organisms are exposed to fluctuating environmental conditions, and adaptation to stress is essential for survival. Increased osmolality (hypertonicity) causes outflow of water and loss of turgor and is dangerous if the cell is not capable of rapidly restoring its volume. The osmoregulatory adenosine triphosphate–binding cassette transporter OpuA restores the cell volume by accumulating large amounts of compatible solute. OpuA is gated by ionic strength and inhibited by the second messenger cyclic-di-AMP, a molecule recently shown to affect many cellular processes. Despite the master regulatory role of cyclic-di-AMP, structural and functional insights into how the second messenger regulates (transport) proteins on the molecular level are lacking. Here, we present high-resolution cryo–electron microscopy structures of OpuA and in vitro activity assays that show how the osmoregulator OpuA is activated by high ionic strength and how cyclic-di-AMP acts as a backstop to prevent unbridled uptake of compatible solutes.
机译:(微)生物面暴露在波动的环境条件下,并适应压力对于存活至关重要。增加渗透压(高渗度)导致水流出和粪鲁丧失,如果细胞不能快速恢复其体积是危险的。 Osmoregulatory腺苷三磷酸腺苷结合盒转运蛋白通过积累大量相容的溶质来恢复细胞体积。通过离子强度(第二信使环菌 - Di-AMP抑制)通过离子强度抑制,最近显示出影响许多细胞过程的分子。尽管跨越循环直径级别的母版监管作用,结构和功能见解缺乏第二信使调节(运输)蛋白质的分子水平如何。这里,我们展示了OPUA和体外活性测定的高分辨率冷冻电子显微镜结构,其显示OSMoreculator OPUA如何通过高离子强度和环状-i-AMP作为逆止器来激活,以防止互相溶质的覆盖吸收。

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