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研究水溶液中光泵浦原子模型蛋白质中观测到的太赫兹模式的起源。

Examining the origins of observed terahertz modes from an optically pumped atomistic model protein in aqueous solution.

作者信息

Azizi Khatereh, Gori Matteo, Morzan Uriel, Hassanali Ali, Kurian Philip

机构信息

The Abdus Salam International Centre for Theoretical Physics, Strada Costiera 11, 34151 Trieste, Italy.

Quantum Biology Laboratory, Howard University, Washington, DC 20060, USA.

出版信息

PNAS Nexus. 2023 Aug 9;2(8):pgad257. doi: 10.1093/pnasnexus/pgad257. eCollection 2023 Aug.

Abstract

The microscopic origins of terahertz (THz) vibrational modes in biological systems are an active and open area of current research. Recent experiments [Phys Rev X. , 031061 (2018)] have revealed the presence of a pronounced mode at ∼0.3 THz in fluorophore-decorated bovine serum albumin (BSA) protein in aqueous solution under nonequilibrium conditions induced by optical pumping. This result was heuristically interpreted as a collective elastic fluctuation originating from the activation of a low-frequency phonon mode. In this work, we show that the sub-THz spectroscopic response emerges in a statistically significant manner () from such collective behavior, illustrating how photoexcitation can alter specific THz vibrational modes. We revisit the theoretical analysis with proof-of-concept molecular dynamics that introduce optical excitations into the simulations. Using information theory techniques, we show that these excitations can give rise to a multiscale response involving two optically excited chromophores (tryptophans), other amino acids in the protein, ions, and water. Our results motivate new experiments and fully nonequilibrium simulations to probe these phenomena, as well as the refinement of atomistic models of Fröhlich condensates that are fundamentally determined by nonlinear interactions in biology.

摘要

生物系统中太赫兹(THz)振动模式的微观起源是当前一个活跃且开放的研究领域。最近的实验[《物理评论X》,031061(2018)]表明,在光泵浦诱导的非平衡条件下,水溶液中荧光团修饰的牛血清白蛋白(BSA)蛋白在~0.3 THz处存在一个明显的模式。这一结果被直观地解释为源自低频声子模式激活的集体弹性涨落。在这项工作中,我们表明亚太赫兹光谱响应以具有统计学意义的方式()从这种集体行为中出现,说明了光激发如何改变特定的太赫兹振动模式。我们用将光激发引入模拟的概念验证分子动力学重新审视理论分析。使用信息论技术,我们表明这些激发可以产生一个多尺度响应,涉及两个光激发发色团(色氨酸)、蛋白质中的其他氨基酸、离子和水。我们的结果促使开展新的实验和完全非平衡模拟来探究这些现象,以及完善由生物学中的非线性相互作用从根本上决定的弗罗利希凝聚体的原子模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d67c/10416812/e39383a50c47/pgad257f1.jpg

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