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首页> 外文期刊>Science Advances >Can polarity-inverted membranes self-assemble on Titan?
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Can polarity-inverted membranes self-assemble on Titan?

机译:极性倒膜可以自我组装在泰坦吗?

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摘要

The environmental and chemical limits of life are two of the most central questions in astrobiology. Our understanding of life’s boundaries has implications on the efficacy of biosignature identification in exoplanet atmospheres and in the solar system. The lipid bilayer membrane is one of the central prerequisites for life as we know it. Previous studies based on molecular dynamics simulations have suggested that polarity-inverted membranes, azotosomes, made up of small nitrogen-containing molecules, are kinetically persistent and may function on cryogenic liquid hydrocarbon worlds, such as Saturn’s moon Titan. We here take the next step and evaluate the thermodynamic viability of azotosome formation. Quantum mechanical calculations predict that azotosomes are not viable candidates for self-assembly akin to lipid bilayers in liquid water. We argue that cell membranes may be unnecessary for hypothetical astrobiology under stringent anhydrous and low-temperature conditions akin to those of Titan.
机译:生命的环境和化学限制是天体学中最重要的两个问题。我们对生命的界限的理解对生物关键鉴定在外产内部气氛和太阳系中的疗效产生了影响。脂双层膜是我们所知道的终身的中央先决条件之一。基于分子动力学模拟的先前研究表明,极性倒置膜,由含小氮分子组成的泛素,是动力学持续的,并且可以在低温液体烃世界上起作用,例如土星的月亮泰坦。我们在这里迈出了下一步,评价泛络体形成的热力学活力。量子力学计算预测,偶氮瘤不是用于自组装类似于液体水中的脂双层的自由候选者。我们认为,在严格的无水和低温条件下类似于钛的无水和低温条件下可能不需要对细胞膜进行假设的天体膜。

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