Small molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells

The tumour microenvironment provides signals to support leukaemic stem cells (LSC) maintenance and chemoresistance. Here, the authors show that disrupting niche-associated signalling by inhibiting receptor-mediated endocytosis with a dynamin GTPase inhibitor overcomes chemoresistance of LSC.

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Autores principales: Cedric S. Tremblay, Sung Kai Chiu, Jesslyn Saw, Hannah McCalmont, Veronique Litalien, Jacqueline Boyle, Stefan E. Sonderegger, Ngoc Chau, Kathryn Evans, Loretta Cerruti, Jessica M. Salmon, Adam McCluskey, Richard B. Lock, Phillip J. Robinson, Stephen M. Jane, David J. Curtis
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/9f9ae7f5fae34540a33d8cb9dbda1467
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spelling oai:doaj.org-article:9f9ae7f5fae34540a33d8cb9dbda14672021-12-02T15:39:16ZSmall molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells10.1038/s41467-020-20091-62041-1723https://doaj.org/article/9f9ae7f5fae34540a33d8cb9dbda14672020-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20091-6https://doaj.org/toc/2041-1723The tumour microenvironment provides signals to support leukaemic stem cells (LSC) maintenance and chemoresistance. Here, the authors show that disrupting niche-associated signalling by inhibiting receptor-mediated endocytosis with a dynamin GTPase inhibitor overcomes chemoresistance of LSC.Cedric S. TremblaySung Kai ChiuJesslyn SawHannah McCalmontVeronique LitalienJacqueline BoyleStefan E. SondereggerNgoc ChauKathryn EvansLoretta CerrutiJessica M. SalmonAdam McCluskeyRichard B. LockPhillip J. RobinsonStephen M. JaneDavid J. CurtisNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-18 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Cedric S. Tremblay
Sung Kai Chiu
Jesslyn Saw
Hannah McCalmont
Veronique Litalien
Jacqueline Boyle
Stefan E. Sonderegger
Ngoc Chau
Kathryn Evans
Loretta Cerruti
Jessica M. Salmon
Adam McCluskey
Richard B. Lock
Phillip J. Robinson
Stephen M. Jane
David J. Curtis
Small molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells
description The tumour microenvironment provides signals to support leukaemic stem cells (LSC) maintenance and chemoresistance. Here, the authors show that disrupting niche-associated signalling by inhibiting receptor-mediated endocytosis with a dynamin GTPase inhibitor overcomes chemoresistance of LSC.
format article
author Cedric S. Tremblay
Sung Kai Chiu
Jesslyn Saw
Hannah McCalmont
Veronique Litalien
Jacqueline Boyle
Stefan E. Sonderegger
Ngoc Chau
Kathryn Evans
Loretta Cerruti
Jessica M. Salmon
Adam McCluskey
Richard B. Lock
Phillip J. Robinson
Stephen M. Jane
David J. Curtis
author_facet Cedric S. Tremblay
Sung Kai Chiu
Jesslyn Saw
Hannah McCalmont
Veronique Litalien
Jacqueline Boyle
Stefan E. Sonderegger
Ngoc Chau
Kathryn Evans
Loretta Cerruti
Jessica M. Salmon
Adam McCluskey
Richard B. Lock
Phillip J. Robinson
Stephen M. Jane
David J. Curtis
author_sort Cedric S. Tremblay
title Small molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells
title_short Small molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells
title_full Small molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells
title_fullStr Small molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells
title_full_unstemmed Small molecule inhibition of Dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells
title_sort small molecule inhibition of dynamin-dependent endocytosis targets multiple niche signals and impairs leukemia stem cells
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/9f9ae7f5fae34540a33d8cb9dbda1467
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