首页> 外文期刊>Journal of the Royal Society Interface >Terahertz: dictating the frequency of life. Do macromolecular vibrational modes impose thermal limitations on terrestrial life?
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Terahertz: dictating the frequency of life. Do macromolecular vibrational modes impose thermal limitations on terrestrial life?

机译:太赫兹:决定了生活的频率。 大分子振动模式是否施加了陆地生活的热局限?

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摘要

Conditions on exoplanets include elevated temperatures and pressures. The response of carbon-based biological macromolecules to such conditions is then relevant to the viability of life. The capacity of proteins and ribozymes to catalyse reactions or bind receptors, and nucleic acids to convey information, depends on them sampling different conformational states. These are determined by macromolecular vibrational states, or phonon modes, accessible using terahertz (THz: 10(12)Hz) absorption spectroscopy. THz spectra of biological macromolecules exhibit broad absorption at approximately 6 THz (equating to approx. 280 K) corresponding to dense transitions between phonon modes. There are also troughs at approximately 10 THz (approx. 500 K) implying diminishing numbers of available conformational states at higher temperatures; hence, fewer routes by which biochemical processes can be realized, as equilibrium is approached. Could this conformational bottleneck hinder the operation of biological macromolecules at higher temperatures? We suggest that the troughs at approximately 10 THz in absorbance spectra indicate that the hydrogen bonds, charge interactions and geometry of biological macromolecules associated with terrestrial life impose fundamental vibrational properties that could limit the upper temperature at which they may function.
机译:外产上的条件包括升高的温度和压力。碳基生物大分子对这种条件的反应与生命的可行性相关。蛋白质和核酶以催化反应或结合受体和核酸来传达信息的能力取决于取样不同的构象状态。这些由大分子振动状态或声子模式决定,可使用Terahertz(THz:10(12)Hz)吸收光谱。生物大分子的THz光谱在大约6Thz(等于约280 k)的宽吸收对应于声子模式之间的致密过渡。在大约10Thz(约500k)的槽中也有大约10至500 k),暗示在较高温度下可用构象状态的数量减少;因此,可以实现生物化学过程的更少路线,随着平衡的情况下方。这种构象瓶颈是否阻碍了在较高温度下生物大分子的操作?我们建议在吸光光光谱中大约10 ZHz的槽表明与陆地寿命相关的生物大分子的氢键,电荷相互作用和几何形状施加了可能限制它们可以起作用的上温度的基本振动性质。

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