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Temporal Patterns of Angular Displacement of Endosomes: Insights into Motor Protein Exchange Dynamics

Title
Temporal Patterns of Angular Displacement of Endosomes: Insights into Motor Protein Exchange Dynamics
Author(s)
Jin, SiwooAhn, YongdeokPark, JiseongPark, MinsooLee, Sang-ChulLee, Wonhee J.Seo, Daeha
Issued Date
2024-08
Citation
Advanced Science, v.11, no.29
Type
Article
Author Keywords
3D rotationbio-imagingendosomematerial transportnanoparticleplasmonicsserial correlation
Keywords
KINESINTRANSPORTDYNEINTRANSFERRINMICROTUBULE INTERSECTIONSEXPLORATIONEVOLUTIONORIGINSPACEGOLD NANORODS
ISSN
2198-3844
Abstract
The material transport system, facilitated by motor proteins, plays a vital role in maintaining a non-equilibrium cellular state. However, understanding the temporal coordination of motor protein activity requires an advanced imaging technique capable of measuring 3D angular displacement in real-time. In this study, a Fourier transform-based plasmonic dark-field microscope has been developed using anisotropic nanoparticles, enabling the prolonged and simultaneous observation of endosomal lateral and rotational motion. A sequence of discontinuous 3D angular displacements has been observed during the pause and run phases of transport. Notably, a serially correlated temporal pattern in the intermittent rotational events has been demonstrated during the tug-of-war mechanism, indicating Markovian switching between the exploitational and explorational modes of motor protein exchange prior to resuming movement. Alterations in transition frequency and the exploitation-to-exploration ratio upon dynein inhibitor treatment highlight the relationship between disrupted motor coordination and reduced endosomal transport efficiency. Collectively, these results suggest the importance of orchestrated temporal motor protein patterns for efficient cellular transport. © 2024 The Authors. Advanced Science published by Wiley-VCH GmbH.
URI
http://hdl.handle.net/20.500.11750/57121
DOI
10.1002/advs.202306849
Publisher
Wiley
Related Researcher
  • 이상철 Lee, Sang-Chul
  • Research Interests 빅데이터 분석; 추천시스템; 스마트팩토리; 이상행동검출;
Files in This Item:
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Appears in Collections:
Department of Physics and Chemistry SMALL LAB(Single Molecule Approaches to ceLL Lab) 1. Journal Articles
Division of Nanotechnology 1. Journal Articles

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