Cargando…

The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma

A small population of self-renewing stem cells initiate tumors and maintain therapeutic resistance in glioblastoma (GBM). Given the limited treatment options and dismal prognosis for this disease, there is urgent need to identify drivers of stem cells that could be druggable targets. Previous work s...

Descripción completa

Detalles Bibliográficos
Autores principales: Ko, Myungjun, Makena, Monish R, Schiapparelli, Paula, Suarez-Meade, Paola, Mekile, Allatah X, Lal, Bachchu, Lopez-Bertoni, Hernando, Kozielski, Kristen L, Green, Jordan J, Laterra, John, Quiñones-Hinojosa, Alfredo, Rao, Rajini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8974362/
https://www.ncbi.nlm.nih.gov/pubmed/35387234
http://dx.doi.org/10.1093/pnasnexus/pgac013
_version_ 1784680231448084480
author Ko, Myungjun
Makena, Monish R
Schiapparelli, Paula
Suarez-Meade, Paola
Mekile, Allatah X
Lal, Bachchu
Lopez-Bertoni, Hernando
Kozielski, Kristen L
Green, Jordan J
Laterra, John
Quiñones-Hinojosa, Alfredo
Rao, Rajini
author_facet Ko, Myungjun
Makena, Monish R
Schiapparelli, Paula
Suarez-Meade, Paola
Mekile, Allatah X
Lal, Bachchu
Lopez-Bertoni, Hernando
Kozielski, Kristen L
Green, Jordan J
Laterra, John
Quiñones-Hinojosa, Alfredo
Rao, Rajini
author_sort Ko, Myungjun
collection PubMed
description A small population of self-renewing stem cells initiate tumors and maintain therapeutic resistance in glioblastoma (GBM). Given the limited treatment options and dismal prognosis for this disease, there is urgent need to identify drivers of stem cells that could be druggable targets. Previous work showed that the endosomal pH regulator NHE9 is upregulated in GBM and correlates with worse survival prognosis. Here, we probed for aberrant signaling pathways in patient-derived GBM cells and found that NHE9 increases cell surface expression and phosphorylation of multiple receptor tyrosine kinases (RTKs) by promoting their escape from lysosomal degradation. Downstream of NHE9-mediated receptor activation, oncogenic signaling pathways converged on the JAK2-STAT3 transduction axis to induce pluripotency genes Oct4 and Nanog and suppress markers of glial differentiation. We used both genetic and chemical approaches to query the role of endosomal pH in GBM phenotypes. Loss-of-function mutations in NHE9 that failed to alkalinize endosomal lumen did not increase self-renewal capacity of gliomaspheres in vitro. However, monensin, a chemical mimetic of Na(+)/H(+) exchanger activity, and the H(+) pump inhibitor bafilomycin bypassed NHE9 to directly alkalinize the endosomal lumen resulting in stabilization of RTKs and induction of Oct4 and Nanog. Using orthotopic models of primary GBM cells we found that NHE9 increased tumor initiation in vivo. We propose that NHE9 initiates inside-out signaling from the endosomal lumen, distinct from the established effects of cytosolic and extracellular pH on tumorigenesis. Endosomal pH may be an attractive therapeutic target that diminishes stemness in GBM, agnostic of specific receptor subtype.
format Online
Article
Text
id pubmed-8974362
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-89743622022-04-04 The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma Ko, Myungjun Makena, Monish R Schiapparelli, Paula Suarez-Meade, Paola Mekile, Allatah X Lal, Bachchu Lopez-Bertoni, Hernando Kozielski, Kristen L Green, Jordan J Laterra, John Quiñones-Hinojosa, Alfredo Rao, Rajini PNAS Nexus Biological, Health, and Medical Sciences A small population of self-renewing stem cells initiate tumors and maintain therapeutic resistance in glioblastoma (GBM). Given the limited treatment options and dismal prognosis for this disease, there is urgent need to identify drivers of stem cells that could be druggable targets. Previous work showed that the endosomal pH regulator NHE9 is upregulated in GBM and correlates with worse survival prognosis. Here, we probed for aberrant signaling pathways in patient-derived GBM cells and found that NHE9 increases cell surface expression and phosphorylation of multiple receptor tyrosine kinases (RTKs) by promoting their escape from lysosomal degradation. Downstream of NHE9-mediated receptor activation, oncogenic signaling pathways converged on the JAK2-STAT3 transduction axis to induce pluripotency genes Oct4 and Nanog and suppress markers of glial differentiation. We used both genetic and chemical approaches to query the role of endosomal pH in GBM phenotypes. Loss-of-function mutations in NHE9 that failed to alkalinize endosomal lumen did not increase self-renewal capacity of gliomaspheres in vitro. However, monensin, a chemical mimetic of Na(+)/H(+) exchanger activity, and the H(+) pump inhibitor bafilomycin bypassed NHE9 to directly alkalinize the endosomal lumen resulting in stabilization of RTKs and induction of Oct4 and Nanog. Using orthotopic models of primary GBM cells we found that NHE9 increased tumor initiation in vivo. We propose that NHE9 initiates inside-out signaling from the endosomal lumen, distinct from the established effects of cytosolic and extracellular pH on tumorigenesis. Endosomal pH may be an attractive therapeutic target that diminishes stemness in GBM, agnostic of specific receptor subtype. Oxford University Press 2022-03-09 /pmc/articles/PMC8974362/ /pubmed/35387234 http://dx.doi.org/10.1093/pnasnexus/pgac013 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the National Academy of Sciences. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Biological, Health, and Medical Sciences
Ko, Myungjun
Makena, Monish R
Schiapparelli, Paula
Suarez-Meade, Paola
Mekile, Allatah X
Lal, Bachchu
Lopez-Bertoni, Hernando
Kozielski, Kristen L
Green, Jordan J
Laterra, John
Quiñones-Hinojosa, Alfredo
Rao, Rajini
The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma
title The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma
title_full The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma
title_fullStr The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma
title_full_unstemmed The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma
title_short The endosomal pH regulator NHE9 is a driver of stemness in glioblastoma
title_sort endosomal ph regulator nhe9 is a driver of stemness in glioblastoma
topic Biological, Health, and Medical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8974362/
https://www.ncbi.nlm.nih.gov/pubmed/35387234
http://dx.doi.org/10.1093/pnasnexus/pgac013
work_keys_str_mv AT komyungjun theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT makenamonishr theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT schiapparellipaula theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT suarezmeadepaola theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT mekileallatahx theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT lalbachchu theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT lopezbertonihernando theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT kozielskikristenl theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT greenjordanj theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT laterrajohn theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT quinoneshinojosaalfredo theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT raorajini theendosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT komyungjun endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT makenamonishr endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT schiapparellipaula endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT suarezmeadepaola endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT mekileallatahx endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT lalbachchu endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT lopezbertonihernando endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT kozielskikristenl endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT greenjordanj endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT laterrajohn endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT quinoneshinojosaalfredo endosomalphregulatornhe9isadriverofstemnessinglioblastoma
AT raorajini endosomalphregulatornhe9isadriverofstemnessinglioblastoma