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Updated: Jan 20, 2026

A Mouse Model to Investigate the Role of Cancer-Associated Fibroblasts in Tumor Growth
Published on: December 22, 2020
Non-centrosomal MTs play a crucial role in organization of MT array in interphase fibroblasts
Yekaterina Zvorykina1, Anna Tvorogova2, Aleena Gladkikh1
1Biology Department, M.V. Lomonosov Moscow State University, Moscow, Russia.
Abstract:
Microtubules in interphase fibroblast-like cells are thought to be organized in a radial array growing from a centrosome-based microtubule-organizing center (MTOC) to the cell edges. However, many morphogenetic processes require the asymmetry of the microtubules (MT) array. One of the possible mechanisms of this asymmetry could be the presence of non-centrosomal microtubules in different intracellular areas. To evaluate the role of centrosome-born and non-centrosomal microtubules in the organization of microtubule array in motile 3T3 fibroblasts, we have performed the high-throughput analysis of microtubule growth in different functional zones of the cell and distinguished three subpopulations of growing microtubules (centrosome-born, marginal and inner cytoplasmic). Centrosome as an active microtubule-organizing center was absent in half of the cell population. However, these cells do not show any difference in microtubule growth pattern. In cells with active centrosome, it was constantly forming short (ephemeral) MTs, and ∼15-20 MT per minute grow outwards for a distance >1 µm. Almost no persistent growth of microtubules was observed in these cells with the average growth length of 5-6 µm and duration of growth periods within 30 s. However, the number of growing ends increased towards cell margin, especially towards the active edges. We found the peripheral cytoplasmic foci of microtubule growth there. During recovery from nocodazole treatment microtubules started to grow around the centrosome in a normal way and independently in all the cell areas. Within 5 minutes microtubules continued to grow mainly near the cell edge. Thus, our data confirm the negligible role of centrosome as MTOC in 3T3 fibroblasts and propose a model of non-centrosomal microtubules as major players that create the cell asymmetry in the cells with a mesenchymal type of motility. We suggest that increased density of dynamic microtubules near the active lamellum could be supported by microtubule-based microtubule nucleation.
Insights
Non-centrosomal microtubules, not the centrosome, drive cell asymmetry in motile 3T3 fibroblasts. This finding challenges the traditional view of microtubule organization and highlights new mechanisms for cell shape regulation.
Area of Science:
- Cell Biology
- Cytoskeleton Dynamics
Background:
- Microtubules (MTs) in fibroblasts typically form a radial array from a centrosome-based microtubule-organizing center (MTOC).
- Cellular asymmetry is crucial for morphogenetic processes, but the mechanisms driving MT array asymmetry are not fully understood.
- Non-centrosomal MTs are hypothesized to contribute to MT array asymmetry.
Purpose of the Study:
- To investigate the roles of centrosome-born and non-centrosomal microtubules in organizing the MT array of motile 3T3 fibroblasts.
- To analyze MT growth patterns in different cellular regions and identify factors contributing to MT array asymmetry.
Main Methods:
- High-throughput analysis of microtubule growth dynamics in live 3T3 fibroblasts.
- Distinguishing and quantifying subpopulations of growing microtubules (centrosome-born, marginal, inner cytoplasmic).
- Observing MT regrowth patterns after nocodazole-induced depolymerization.
Main Results:
- The centrosome's role as an MTOC was found to be negligible in approximately half of the studied 3T3 fibroblast population.
- Microtubule growth predominantly occurred at peripheral cytoplasmic foci, especially near active cell edges.
- During recovery from depolymerization, microtubules initially grew around the centrosome but rapidly shifted to preferential growth near the cell periphery.
Conclusions:
- Centrosome-based MT nucleation plays a minor role in 3T3 fibroblast MT organization.
- Non-centrosomal microtubules are the primary drivers of MT array asymmetry in motile fibroblasts.
- Dynamic MT growth at the cell periphery, potentially supported by MT-based nucleation, is key for mesenchymal cell motility and asymmetry.
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