Dipartimento di Scienze e Tecnologie Agro-Alimentari, Alma Mater Studiorum-Università di Bologna, Piazza Goidanich 60, 47521 Cesena, Italy.
Magnetic Resonance Center, Università degli Studi di Firenze, Via Luigi Sacconi 6, 50019 Sesto Fiorentino, Italy.
Chem Rev. 2022 May 25;122(10):9267-9306. doi: 10.1021/acs.chemrev.1c00790. Epub 2022 Jan 21.
A detailed knowledge of the complex processes that make cells and organisms alive is fundamental in order to understand diseases and to develop novel drugs and therapeutic treatments. To this aim, biological macromolecules should ideally be characterized at atomic resolution directly within the cellular environment. Among the existing structural techniques, solution NMR stands out as the only one able to investigate at high resolution the structure and dynamic behavior of macromolecules directly in living cells. With the advent of more sensitive NMR hardware and new biotechnological tools, modern in-cell NMR approaches have been established since the early 2000s. At the coming of age of in-cell NMR, we provide a detailed overview of its developments and applications in the 20 years that followed its inception. We review the existing approaches for cell sample preparation and isotopic labeling, the application of in-cell NMR to important biological questions, and the development of NMR bioreactor devices, which greatly increase the lifetime of the cells allowing real-time monitoring of intracellular metabolites and proteins. Finally, we share our thoughts on the future perspectives of the in-cell NMR methodology.
为了深入了解疾病并开发新的药物和治疗方法,深入了解使细胞和生物体保持活力的复杂过程是至关重要的。为此,生物大分子应在细胞环境中直接以原子分辨率进行理想的表征。在现有的结构技术中,溶液 NMR 是唯一一种能够在活细胞中直接研究大分子结构和动态行为的技术。随着更灵敏的 NMR 硬件和新生物技术工具的出现,自 21 世纪初以来,现代细胞内 NMR 方法已经建立。在细胞内 NMR 时代的到来之际,我们详细回顾了其在诞生后的 20 年中的发展和应用。我们回顾了细胞样品制备和同位素标记的现有方法、细胞内 NMR 在重要生物学问题中的应用以及 NMR 生物反应器设备的开发,这些方法大大增加了细胞的寿命,从而可以实时监测细胞内代谢物和蛋白质。最后,我们分享了对细胞内 NMR 方法学未来展望的看法。