Department of Electrical Engineering and Information Systems, The University of Tokyo, Tokyo 113-8656, Japan.
Department of Genetics, Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo 113-0033, Japan.
J Phys Chem B. 2022 Mar 3;126(8):1633-1639. doi: 10.1021/acs.jpcb.1c08343. Epub 2022 Feb 23.
The small biomolecule methionine (Met) is a fundamental amino acid required for a vast range of biological processes such as protein synthesis, cancer metabolism, and epigenetics. However, it is still difficult to visualize the subcellular distribution of small biomolecules including Met in a minimally invasive manner. Here, we demonstrate stimulated Raman scattering (SRS) imaging of cellular uptake of deuterated methionine (d-Met) in live HeLa cells by way of comparison to the previously used alkyne-labeled Met analogue─homopropargylglycine (Hpg). We show that the solutions of d-Met and Hpg have similar SRS signal intensities. Furthermore, by careful image analysis with background subtraction, we succeed in the SRS imaging of cellular uptake of d-Met with a much greater signal intensity than Hpg, possibly reflecting the increased and minimally invasive uptake kinetics of d-Met compared with Hpg. We anticipate that d-Met and other deuterated biomolecules will be useful for investigating metabolic processes with subcellular resolution.
小分子蛋氨酸(Met)是一种基本的氨基酸,对于蛋白质合成、癌症代谢和表观遗传学等广泛的生物过程都至关重要。然而,仍然难以以微创的方式可视化包括 Met 在内的小分子在亚细胞中的分布。在这里,我们通过与先前使用的炔基标记的 Met 类似物——高丙氨酸(Hpg)进行比较,证明了活 HeLa 细胞中氘代蛋氨酸(d-Met)摄取的受激拉曼散射(SRS)成像。我们发现 d-Met 和 Hpg 的溶液具有相似的 SRS 信号强度。此外,通过仔细的图像分析并进行背景扣除,我们成功地对 d-Met 的细胞摄取进行了 SRS 成像,其信号强度远大于 Hpg,这可能反映了 d-Met 与 Hpg 相比,摄取动力学增强且微创。我们预计 d-Met 和其他氘代生物分子将有助于以亚细胞分辨率研究代谢过程。