Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1

Many of the characteristics ascribed to cancer-associated fibroblasts (CAFs) are shared by activated, autophagic and senescent fibroblasts. Whilst most oral squamous cell carcinomas (OSCCs) are genetically unstable (GU-OSCC), genetically stable variants (GS-OSCC) have been described and, notably, CA...

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Main Authors: Tan, May Leng, Parkinson, E. Kenneth, Yap, Lee Fah, Paterson, Ian C.
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Published: Nature Research 2021
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Online Access:http://eprints.um.edu.my/26393/
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spelling my.um.eprints.263932022-02-25T03:48:43Z http://eprints.um.edu.my/26393/ Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1 Tan, May Leng Parkinson, E. Kenneth Yap, Lee Fah Paterson, Ian C. RK Dentistry Many of the characteristics ascribed to cancer-associated fibroblasts (CAFs) are shared by activated, autophagic and senescent fibroblasts. Whilst most oral squamous cell carcinomas (OSCCs) are genetically unstable (GU-OSCC), genetically stable variants (GS-OSCC) have been described and, notably, CAF activation (myofibroblast differentiation) and senescence are characteristics particularly associated with GU-OSCCs. However, it is not known whether autophagy is disrupted in these cells or whether autophagy regulates the development of the myofibroblast and senescent phenotypes. In this study, we show that senescent CAFs from GU-OSCCs contained more autophagosomes than normal human oral fibroblasts (NHOFs) and CAFs from GS-OSCCs possibly due to autophagic impairment. Further, we show that deregulation of autophagy in normal fibroblasts, either by inhibition with autophagy inhibitor, SAR405, or activation with TGF-beta 1, induced fibroblast activation and senescence: In response to TGF-beta 1, autophagy was induced prior to the development of the activated and senescent phenotypes. Lastly, we show that both SAR405- and TGF-beta 1-treated NHOFs enhance OSCC cell migration but only TGF-beta 1-treated cells increase OSCC invasion through Matrigel, indicating that TGF-beta 1 has additional effects that are independent of fibroblast activation/senescence. These results suggest a functional role for autophagy in the development of myofibroblast and CAF phenotypes. Nature Research 2021-01 Article PeerReviewed Tan, May Leng and Parkinson, E. Kenneth and Yap, Lee Fah and Paterson, Ian C. (2021) Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1. Scientific Reports, 11 (1). ISSN 2045-2322, DOI https://doi.org/10.1038/s41598-020-79789-8 <https://doi.org/10.1038/s41598-020-79789-8>. 10.1038/s41598-020-79789-8
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic RK Dentistry
spellingShingle RK Dentistry
Tan, May Leng
Parkinson, E. Kenneth
Yap, Lee Fah
Paterson, Ian C.
Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1
description Many of the characteristics ascribed to cancer-associated fibroblasts (CAFs) are shared by activated, autophagic and senescent fibroblasts. Whilst most oral squamous cell carcinomas (OSCCs) are genetically unstable (GU-OSCC), genetically stable variants (GS-OSCC) have been described and, notably, CAF activation (myofibroblast differentiation) and senescence are characteristics particularly associated with GU-OSCCs. However, it is not known whether autophagy is disrupted in these cells or whether autophagy regulates the development of the myofibroblast and senescent phenotypes. In this study, we show that senescent CAFs from GU-OSCCs contained more autophagosomes than normal human oral fibroblasts (NHOFs) and CAFs from GS-OSCCs possibly due to autophagic impairment. Further, we show that deregulation of autophagy in normal fibroblasts, either by inhibition with autophagy inhibitor, SAR405, or activation with TGF-beta 1, induced fibroblast activation and senescence: In response to TGF-beta 1, autophagy was induced prior to the development of the activated and senescent phenotypes. Lastly, we show that both SAR405- and TGF-beta 1-treated NHOFs enhance OSCC cell migration but only TGF-beta 1-treated cells increase OSCC invasion through Matrigel, indicating that TGF-beta 1 has additional effects that are independent of fibroblast activation/senescence. These results suggest a functional role for autophagy in the development of myofibroblast and CAF phenotypes.
format Article
author Tan, May Leng
Parkinson, E. Kenneth
Yap, Lee Fah
Paterson, Ian C.
author_facet Tan, May Leng
Parkinson, E. Kenneth
Yap, Lee Fah
Paterson, Ian C.
author_sort Tan, May Leng
title Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1
title_short Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1
title_full Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1
title_fullStr Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1
title_full_unstemmed Autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by TGF-beta 1
title_sort autophagy is deregulated in cancer-associated fibroblasts from oral cancer and is stimulated during the induction of fibroblast senescence by tgf-beta 1
publisher Nature Research
publishDate 2021
url http://eprints.um.edu.my/26393/
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