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Energy metabolism is highly interdependent with adaptive cell migration in vivo. Mechanical confinement is a critical physical cue that induces switchable migration modes of the mesenchymal-to-amoeboid transition (MAT). However, the energy states in distinct migration modes, especially a...

2024-03-25 | MTBLS9657 | MetaboLights
Amoeboid and mesenchymal migration of cancer cells both contribute to metastatic spreading of tumors. To characterize gene expression profiles underlying the different migratory modes, we performed RNA sequencing of HT1080 fibrosarcoma cells undergoing mesenchymal-amoeboid transition induced by eith...
ORGANISM(S): Homo sapiens 
Amoeboid and mesenchymal migration of cancer cells both contribute to metastatic spreading of tumors. To characterize proteome changes underlying the different migratory modes, we performed mass spectrometry profiling of HT1080 fibrosarcoma cells undergoing mesenchymal-amoeboid transition induced by...
ORGANISM(S): Homo sapiens (Human) 
2020-04-23 | PXD010425 | Pride
Microglia, the resident immune cells of the central nervous system (CNS), have two distinct phenotypes in the developing brain: amoeboid form, known to be amoeboid microglial cells (AMC) and ramified form, known to be ramified microglial cells (RMC) alongside several intermediate forms. The AMC are ...
ORGANISM(S): Rattus norvegicus 
Diaphanous-related formin-3 (DIAPH3), a cytoskeletal regulator of the formin family, is lost at high frequency in metastatic breast and prostate cancers and has characteristics of a non-canonical metastasis suppressor. We previously demonstrated that DIAPH3 silencing evokes transition to an “amoeboi...
ORGANISM(S): Homo sapiens (Human) 
2015-07-27 | PXD001192 | Pride
Highly invasive integrin and protease-independent amoeboid migration is often employed by cancer cells at the invasive front, though little is known about the transcriptomic changes underlying the switch to an amoeboid migratory mode. Using a metastatic melanoma cell line expressing photoconvertible...
ORGANISM(S): Homo sapiens 
Cellular plasticity confers cancer cells the ability to adapt to micro-environmental changes, a fundamental requirement for tumour progression and metastasis. The epithelial to mesenchymal transition (EMT) is a transcriptional programme associated with increased cell motility and stemness. Beside EM...
ORGANISM(S): Homo sapiens 
Transcriptomic profiling of HT1080 fibrosarcoma cells of mesenchymal or amoeboid migratory phenotype
Cell plasticity is a crucial hallmark leading to cancer metastasis. Upregulation of Rho/ROCK pathway drives actomyosin contractility, protrusive forces and contributes to the occurrence of highly invasive amoeboid cells in tumors. Cancer stem cells are similarly associated with metastasis, but how t...
ORGANISM(S): Homo sapiens (Human) 
2021-10-07 | PXD026226 | Pride
Amoeboid-Mesenchymal Transition and the Proteolytic Control of Cancer Invasion Plasticity [scRNA-seq]
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