Nanosecond Transient IR Spectroscopy of Halorhodopsin in Living Cells.

IF 14.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of the American Chemical Society Pub Date : 2024-07-01 DOI:10.1021/jacs.4c03891
Sabine Oldemeyer, Mariafrancesca La Greca, Pit Langner, Karoline-Luisa Lê Công, Ramona Schlesinger, Joachim Heberle
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Abstract

The ability to track minute changes of a single amino acid residue in a cellular environment is causing a paradigm shift in the attempt to fully understand the responses of biomolecules that are highly sensitive to their environment. Detecting early protein dynamics in living cells is crucial to understanding their mechanisms, such as those of photosynthetic proteins. Here, we elucidate the light response of the microbial chloride pump NmHR from the marine bacterium Nonlabens marinus, located in the membrane of living Escherichia coli cells, using nanosecond time-resolved UV/vis and IR absorption spectroscopy over the time range from nanoseconds to seconds. Transient structural changes of the retinal cofactor and the surrounding apoprotein are recorded using light-induced time-resolved UV/vis and IR difference spectroscopy. Of particular note, we have resolved the kinetics of the transient deprotonation of a single cysteine residue during the photocycle of NmHR out of the manifold of molecular vibrations of the cells. These findings are of high general relevance, given the successful development of optogenetic tools from photoreceptors to interfere with enzymatic and neuronal pathways in living organisms using light pulses as a noninvasive trigger.

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活细胞中晕核素的纳秒级瞬态红外光谱。
跟踪单个氨基酸残基在细胞环境中的微小变化的能力正在试图全面了解对环境高度敏感的生物大分子的反应方面带来范式转变。检测活细胞中早期蛋白质的动态对于理解其机制至关重要,例如光合作用蛋白质的机制。在这里,我们利用纳秒时间分辨紫外/可见光和红外吸收光谱,在纳秒到几秒的时间范围内阐明了海洋细菌Nonlabens marinus中的微生物氯化物泵NmHR的光反应。利用光诱导的时间分辨紫外/可见光和红外差分光谱记录了视网膜辅助因子和周围载脂蛋白的瞬时结构变化。特别值得注意的是,我们从细胞分子振动的多方面解析了 NmHR 光周期中单个半胱氨酸残基瞬时去质子化的动力学。这些发现具有高度的普遍意义,因为我们已经成功开发出光遗传学工具,利用光脉冲作为非侵入性触发器干扰生物体内的酶和神经元通路。
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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