TY - JOUR
T1 - Organelle Interaction and Drug Discovery
T2 - Towards Correlative Nanoscopy and Molecular Dynamics Simulation
AU - Yang, Zhiwei
AU - Zhang, Zichen
AU - Zhao, Yizhen
AU - Ye, Qiushi
AU - Li, Xuhua
AU - Meng, Lingjie
AU - Long, Jiangang
AU - Zhang, Shengli
AU - Zhang, Lei
N1 - Publisher Copyright:
Copyright © 2022 Yang, Zhang, Zhao, Ye, Li, Meng, Long, Zhang and Zhang.
PY - 2022/6/20
Y1 - 2022/6/20
N2 - The inter-organelle interactions, including the cytomembrane, endoplasmic reticulum, mitochondrion, lysosome, dictyosome, and nucleus, play the important roles in maintaining the normal function and homeostasis of cells. Organelle dysfunction can lead to a range of diseases (e.g., Alzheimer’s disease (AD), Parkinson’s disease (PD), and cancer), and provide a new perspective for drug discovery. With the development of imaging techniques and functional fluorescent probes, a variety of algorithms and strategies have been developed for the ever-improving estimation of subcellular structures, organelle interaction, and organelle-related drug discovery with accounting for the dynamic structures of organelles, such as the nanoscopy technology and molecular dynamics (MD) simulations. Accordingly, this work summarizes a series of state-of-the-art examples of the recent progress in this rapidly changing field and uncovering the drug screening based on the structures and interactions of organelles. Finally, we propose the future outlook for exciting applications of organelle-related drug discovery, with the cooperation of nanoscopy and MD simulations.
AB - The inter-organelle interactions, including the cytomembrane, endoplasmic reticulum, mitochondrion, lysosome, dictyosome, and nucleus, play the important roles in maintaining the normal function and homeostasis of cells. Organelle dysfunction can lead to a range of diseases (e.g., Alzheimer’s disease (AD), Parkinson’s disease (PD), and cancer), and provide a new perspective for drug discovery. With the development of imaging techniques and functional fluorescent probes, a variety of algorithms and strategies have been developed for the ever-improving estimation of subcellular structures, organelle interaction, and organelle-related drug discovery with accounting for the dynamic structures of organelles, such as the nanoscopy technology and molecular dynamics (MD) simulations. Accordingly, this work summarizes a series of state-of-the-art examples of the recent progress in this rapidly changing field and uncovering the drug screening based on the structures and interactions of organelles. Finally, we propose the future outlook for exciting applications of organelle-related drug discovery, with the cooperation of nanoscopy and MD simulations.
KW - drug discovery
KW - molecular dynamics simulation
KW - nanoscopy
KW - organelle interaction
KW - subcellular structure
UR - https://www.scopus.com/pages/publications/85133627764
U2 - 10.3389/fphar.2022.935898
DO - 10.3389/fphar.2022.935898
M3 - 文献综述
AN - SCOPUS:85133627764
SN - 1663-9812
VL - 13
JO - Frontiers in Pharmacology
JF - Frontiers in Pharmacology
M1 - 935898
ER -