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Formation of cellular close-ended tunneling nanotubes through mechanical deformationopen access

Authors
Chang, MinhyeokLee, O-ChulBu, GayunOh, JaehoYunn, Na-OhRyu, Sung HoKwon, Hyung-BaeKolomeisky, Anatoly B.Shim, Sang-HeeDoh, JunsangJeon, Jae-HyungLee, Jong-Bong
Issue Date
4월-2022
Publisher
AMER ASSOC ADVANCEMENT SCIENCE
Citation
SCIENCE ADVANCES, v.8, no.13
Indexed
SCIE
SCOPUS
Journal Title
SCIENCE ADVANCES
Volume
8
Number
13
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/143108
DOI
10.1126/sciadv.abj3995
ISSN
2375-2548
Abstract
Membrane nanotubes or tunneling nanotubes (TNTs) that connect cells have been recognized as a previously unidentified pathway for intercellular transport between distant cells. However, it is unknown how this delicate structure, which extends over tens of micrometers and remains robust for hours, is formed. Here, we found that a TNT develops from a double filopodial bridge (DFB) created by the physical contact of two filopodia through helical deformation of the DFB. The transition of a DFB to a close-ended TNT is most likely triggered by disruption of the adhesion of two filopodia by mechanical energy accumulated in a twisted DFB when one of the DFB ends is firmly attached through intercellular cadherin-cadherin interactions. These studies pinpoint the mechanistic questions about TNTs and elucidate a formation mechanism.
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