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Localized and reversible TGFbeta signalling switches breast cancer cells from cohesive to single cell motility.


ABSTRACT: Here we use intravital imaging to demonstrate a reversible transition to a motile state as breast cancer cells spread. Imaging primary tumours revealed heterogeneity in cell morphology and motility. Two distinct modes of motility were observed: collective and single-celled. By monitoring the localization of Smad2 and the activity of a TGFbeta-dependent reporter gene during breast cancer cell dissemination, we demonstrate that TGFbeta signalling is transiently and locally activated in motile single cells. TGFbeta1 switches cells from cohesive to single cell motility through a transcriptional program involving Smad4, EGFR, Nedd9, M-RIP, FARP and RhoC. Blockade of TGFbeta signalling prevented cells moving singly in vivo but did not inhibit cells moving collectively. Cells restricted to collective invasion were capable of lymphatic invasion but not blood-borne metastasis. Constitutive TGFbeta signalling promoted single cell motility and intravasation but reduced subsequent growth in the lungs. Thus, transient TGFbeta signalling is essential for blood-borne metastasis.

SUBMITTER: Giampieri S 

PROVIDER: S-EPMC2773241 | biostudies-literature | 2009 Nov

REPOSITORIES: biostudies-literature

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Localized and reversible TGFbeta signalling switches breast cancer cells from cohesive to single cell motility.

Giampieri Silvia S   Manning Cerys C   Hooper Steven S   Jones Louise L   Hill Caroline S CS   Sahai Erik E  

Nature cell biology 20091018 11


Here we use intravital imaging to demonstrate a reversible transition to a motile state as breast cancer cells spread. Imaging primary tumours revealed heterogeneity in cell morphology and motility. Two distinct modes of motility were observed: collective and single-celled. By monitoring the localization of Smad2 and the activity of a TGFbeta-dependent reporter gene during breast cancer cell dissemination, we demonstrate that TGFbeta signalling is transiently and locally activated in motile sing  ...[more]

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