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Structure and mechanisms of sodium-pumping KR2 rhodopsin

机译:钠泵送KR2视紫红质的结构与机理

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摘要

Rhodopsins are the most universal biological light-energy transducers and abundant phototrophic mechanisms that evolved on Earth and have a remarkable diversity and potential for biotechnological applications. Recently, the first sodium-pumping rhodopsin KR2 from Krokinobacter eikastus was discovered and characterized. However, the existing structures of KR2 are contradictory, and the mechanism of Nasup+/sup pumping is not yet understood. Here, we present a structure of the cationic (non Hsup+/sup) light-driven pump at physiological pH in its pentameric form. We also present 13 atomic structures and functional data on the KR2 and its mutants, including potassium pumps, which show that oligomerization of the microbial rhodopsin is obligatory for its biological function. The studies reveal the structure of KR2 at nonphysiological low pH where it acts as a proton pump. The structure provides new insights into the mechanisms of microbial rhodopsins and opens the way to a rational design of novel cation pumps for optogenetics.
机译:视紫红质是最普遍的生物光能换能器,并且是在地球上进化的丰富的光养机制,在生物技术应用中具有显着的多样性和潜力。最近,发现并鉴定了第一株钠钾假单胞菌钠泵视紫红质KR2。然而,KR2的现有结构是相互矛盾的,Na + 泵浦的机理尚不清楚。在这里,我们以五聚体形式介绍了在生理pH值下的阳离子(非H + )光驱动泵的结构。我们还介绍了KR2及其突变体(包括钾泵)的13个原子结构和功能数据,这些数据表明微生物视紫红质的寡聚化对于其生物学功能是必不可少的。研究揭示了KR2在非生理性低pH值下的结构,该结构起质子泵的作用。该结构为微生物视紫红质的机理提供了新的见解,并为合理设计用于光遗传学的新型阳离子泵开辟了道路。

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