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Interaction between CD82 and integrin αVβ3 selectively regulates collective movement of tumor cells via endolysosomal
Xue Jun Wang1,2, Mekel M Richardson1,3, Yingjun Ding1
1University of Oklahoma Health Science Center, BRC1474, 975 NE 10th Street, Oklahoma City, OK, 73104, USA.
Abstract:
Tetraspanin CD82/KAI1 inhibits cell movement and metastasis of malignant tumors, and reduced and lost expressions of CD82 predict worse outcomes of patients with malignant tumors. Here we found that CD82 inhibits both solitary and collective movement of tumor cells. The CD82 YVAA mutation, which affects CD82 trafficking, selectively abrogates CD82-mediated inhibition of collective migration. Cilengitide, at the concentration that specifically inhibits integrin αVβ3, also selectively blocks collective movement, underscoring a promotive role of integrin αVβ3 in this mode of cell motility. In contrast, integrin αVβ5 appears non-essential for collective migration, and both αVβ3 and αVβ5 are dispensable for solitary movement on fibronectin, highlighting distinct functions of different integrins in different modes of tumor cell movement. CD82 interacts with αVβ3 and αVβ5 integrins and downregulates their protein levels, while CD82 YVAA mutation relinquishes this downregulation without disrupting CD82 interactions with these integrins. Mechanistically, CD82, but not the YVAA mutant, considerably reduces digitation junction-the structure where integrin αVβ3 localizes-and likely directs integrin αVβ3 for lysosomal degradation, thereby lowering its level and suppressing collective migration. Thus, our study reveals that i) integrin αVβ3 promotes collective movement of tumor cells, ii) CD82 counteracts this by diminishing integrin αVβ3 and its presence in microextrusions, and iii) digitation junction likely participates in collective cell movement. Our study further demonstrates that endolysosomal trafficking of CD82 and integrin αVβ3 is needed for their collective movement-regulatory activities and that coupling of metastasis suppressor CD82/KAI1 with different partners regulates different modes of cell movement.
Insights
Tetraspanin CD82 inhibits tumor cell movement and metastasis. CD82 suppresses collective cell migration by reducing integrin αVβ3 levels, a key promoter of this motility.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Tetraspanin CD82 (KAI1) is a known suppressor of malignant tumor metastasis.
- Reduced CD82 expression correlates with poor patient prognosis in various cancers.
- The precise mechanisms by which CD82 regulates tumor cell motility remain incompletely understood.
Purpose of the Study:
- To elucidate the distinct roles of CD82 in solitary versus collective tumor cell migration.
- To investigate the involvement of integrins, specifically αVβ3 and αVβ5, in CD82-mediated regulation of cell movement.
- To determine the molecular mechanisms underlying CD82's control over collective cell migration.
Main Methods:
- Analysis of CD82's effect on solitary and collective cell migration using cell culture models.
- Investigation of integrin αVβ3 and αVβ5 function using specific inhibitors (e.g., Cilengitide).
- Examination of CD82-integrin interactions and protein level regulation via biochemical assays.
- Microscopy techniques to study cellular structures like digitation junctions and microextrusions.
Main Results:
- CD82 inhibits both solitary and collective tumor cell movement.
- A specific CD82 mutation (YVAA) abrogates inhibition of collective migration, impacting CD82 trafficking.
- Integrin αVβ3, but not αVβ5, is essential for collective migration and is downregulated by CD82.
- CD82 reduces digitation junctions and promotes lysosomal degradation of integrin αVβ3, suppressing collective movement.
Conclusions:
- Integrin αVβ3 actively promotes collective tumor cell migration.
- CD82 counteracts collective migration by diminishing integrin αVβ3 levels and its localization in microextrusions.
- Endolysosomal trafficking of CD82 and integrin αVβ3 is crucial for their regulatory roles in cell motility.
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