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探究温度和底物对神经递质:钠协同转运蛋白 LeuT 构象动态的影响。

Probing the Impact of Temperature and Substrates on the Conformational Dynamics of the Neurotransmitter:Sodium symporter LeuT.

机构信息

Protein Analysis Group, Department of Pharmacy, University of Copenhagen, 2100 Copenhagen Ø, Denmark.

Laboratory for Membrane Protein Dynamics, Department of Neuroscience, University of Copenhagen, 2200 Copenhagen N, Denmark.

出版信息

J Mol Biol. 2022 Jan 30;434(2):167356. doi: 10.1016/j.jmb.2021.167356. Epub 2021 Nov 12.

DOI:10.1016/j.jmb.2021.167356
PMID:34780780
Abstract

The crucial function of neurotransmitter:sodium symporters (NSS) in facilitating the reuptake of neurotransmitters into neuronal cells makes them attractive drug targets for treating multiple mental diseases. Due to the challenges in working with eukaryotic NSS proteins, LeuT, a prokaryotic amino acid transporter, has served as a model protein for studying structure-function relationships of NSS family proteins. With hydrogen-deuterium exchange mass spectrometry (HDX-MS), slow unfolding/refolding kinetics were identified in multiple regions of LeuT, suggesting that substrate translocation involves cooperative fluctuations of helical stretches. Earlier work has solely been performed at non-native temperatures (25 °C) for LeuT, which is evolutionarily adapted to function at high temperatures (85 - 95 °C). To address the effect of temperature on LeuT dynamics, we have performed HDX-MS experiments at elevated temperatures (45 °C and 60 °C). At these elevated temperatures, multiple regions in LeuT exhibited increased dynamics compared to 25 °C. Interestingly, coordinated slow unfolding/refolding of key regions could still be observed, though considerably faster. We have further investigated the conformational impact of binding the efficiently transported substrate alanine (Ala) relative to the much slower transported substrate leucine (Leu). Comparing the HDX of the Ala-bound versus Leu-bound state of LeuT, we observe distinct differences that could explain the faster transport rate (k) of Ala relative to Leu. Importantly, slow unfolding/refolding dynamics could still be observed in regions of Ala-bound LeuT . Overall, our work brings new insights into the conformational dynamics of LeuT and provides a better understanding of the transport mechanism of LeuT and possibly other transporters bearing the LeuT fold.

摘要

神经递质

钠协同转运体(NSS)在促进神经递质重摄取到神经元细胞中的关键作用,使其成为治疗多种精神疾病的有吸引力的药物靶点。由于真核 NSS 蛋白的工作具有挑战性,LeuT,一种原核氨基酸转运蛋白,已被用作研究 NSS 家族蛋白结构-功能关系的模型蛋白。利用氢氘交换质谱(HDX-MS),在 LeuT 的多个区域中鉴定出缓慢展开/折叠动力学,表明底物转运涉及螺旋伸展的协同波动。早期的工作仅在非天然温度(25°C)下对 LeuT 进行,LeuT 进化适应于高温(85-95°C)下的功能。为了解决温度对 LeuT 动力学的影响,我们在升高的温度(45°C 和 60°C)下进行了 HDX-MS 实验。在这些升高的温度下,与 25°C 相比,LeuT 中的多个区域表现出增加的动力学。有趣的是,尽管速度明显加快,但仍可以观察到关键区域的协调缓慢展开/折叠。我们进一步研究了与更慢转运的底物亮氨酸(Leu)相比,结合有效转运的底物丙氨酸(Ala)对 LeuT 构象的影响。比较 Ala 结合态与 LeuT 的 Leu 结合态的 HDX,我们观察到明显的差异,这可以解释 Ala 相对于 Leu 的更快转运速率(k)。重要的是,在 Ala 结合的 LeuT 区域仍可以观察到缓慢展开/折叠动力学。总的来说,我们的工作为 LeuT 的构象动力学提供了新的见解,并为 LeuT 及可能具有 LeuT 折叠的其他转运蛋白的转运机制提供了更好的理解。

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