IMECH-IR  > 非线性力学国家重点实验室
Switch of cell migration modes orchestrated by changes of three-dimensional lamellipodium structure and intracellular diffusion
Jiang, Chao; Luo, Hong-Yu; Xu, Xinpeng; Dou, Shuo-Xing; Li, Wei; Guan DS(关东石); Ye, Fangfu; Chen, Xiaosong; Guo, Ming; Wang, Peng-Ye; Li, Hui
Corresponding AuthorWang, Peng-Ye([email protected]) ; Li, Hui([email protected])
Source PublicationNATURE COMMUNICATIONS
2023-08-24
Volume14Issue:1Pages:13
AbstractCell migration plays important roles in many biological processes, but how migrating cells orchestrate intracellular molecules and subcellular structures to regulate their speed and direction is still not clear. Here, by characterizing the intracellular diffusion and the three-dimensional lamellipodium structures of fish keratocyte cells, we observe a strong positive correlation between the intracellular diffusion and cell migration speed and, more importantly, discover a switching of cell migration modes with reversible intracellular diffusion variation and lamellipodium structure deformation. Distinct from the normal fast mode, cells migrating in the newly-found slow mode have a deformed lamellipodium with swollen-up front and thinned-down rear, reduced intracellular diffusion and compartmentalized macromolecule distribution in the lamellipodium. Furthermore, in turning cells, both lamellipodium structure and intracellular diffusion dynamics are also changed, with left-right symmetry breaking. We propose a mechanism involving the front-localized actin polymerization and increased molecular crowding in the lamellipodium to explain how cells spatiotemporally coordinate the intracellular diffusion dynamics and the lamellipodium structure in regulating their migrations.
DOI10.1038/s41467-023-40858-x
Indexed BySCI
Language英语
WOS IDWOS:001054501000003
WOS KeywordPARTICLE TRACKING ; ACTIN ; CYTOPLASM ; FLOW ; MECHANICS ; DYNAMICS ; MOTILITY ; DRIVEN ; SHAPE ; TRANSPORT
WOS Research AreaScience & Technology - Other Topics
WOS SubjectMultidisciplinary Sciences
Funding ProjectWe thank National Center for Protein Sciences at Peking University, particularly Dr. Siying Qin, for technical help with AFM. We thank Dr. Qihui Fan, Dr. Ruipei Xie, and Yuhang Li for their technical help with micromanipulation. We thank Optofem Technology[12074043] ; We thank National Center for Protein Sciences at Peking University, particularly Dr. Siying Qin, for technical help with AFM. We thank Dr. Qihui Fan, Dr. Ruipei Xie, and Yuhang Li for their technical help with micromanipulation. We thank Optofem Technology[11874415] ; We thank National Center for Protein Sciences at Peking University, particularly Dr. Siying Qin, for technical help with AFM. We thank Dr. Qihui Fan, Dr. Ruipei Xie, and Yuhang Li for their technical help with micromanipulation. We thank Optofem Technology[12135003] ; National Natural Science Foundation of China ; [12122402]
Funding OrganizationWe thank National Center for Protein Sciences at Peking University, particularly Dr. Siying Qin, for technical help with AFM. We thank Dr. Qihui Fan, Dr. Ruipei Xie, and Yuhang Li for their technical help with micromanipulation. We thank Optofem Technology ; National Natural Science Foundation of China
Classification一类
Ranking3+
ContributorWang, Peng-Ye ; Li, Hui
Citation statistics
Cited Times:10[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/93335
Collection非线性力学国家重点实验室
Recommended Citation
GB/T 7714
Jiang, Chao,Luo, Hong-Yu,Xu, Xinpeng,et al. Switch of cell migration modes orchestrated by changes of three-dimensional lamellipodium structure and intracellular diffusion[J]. NATURE COMMUNICATIONS,2023,14,1,:13.Rp_Au:Wang, Peng-Ye, Li, Hui
APA Jiang, Chao.,Luo, Hong-Yu.,Xu, Xinpeng.,Dou, Shuo-Xing.,Li, Wei.,...&Li, Hui.(2023).Switch of cell migration modes orchestrated by changes of three-dimensional lamellipodium structure and intracellular diffusion.NATURE COMMUNICATIONS,14(1),13.
MLA Jiang, Chao,et al."Switch of cell migration modes orchestrated by changes of three-dimensional lamellipodium structure and intracellular diffusion".NATURE COMMUNICATIONS 14.1(2023):13.
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