Cargando…

Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors

Angiogenesis is essential for the sustained growth of solid tumors. Hypoxia-inducible factor 1 (HIF-1) is a master regulator of angiogenesis and constitutive activation of HIF-1 is frequently observed in human cancers. Therefore, understanding the mechanisms governing the activation of HIF-1 is crit...

Descripción completa

Detalles Bibliográficos
Autores principales: Casillas, Andrea L., Chauhan, Shailender S., Toth, Rachel K., Sainz, Alva G., Clements, Amber N., Jensen, Corbin C., Langlais, Paul R., Miranti, Cindy K., Cress, Anne E., Warfel, Noel A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8364516/
https://www.ncbi.nlm.nih.gov/pubmed/34211090
http://dx.doi.org/10.1038/s41388-021-01915-1
_version_ 1783738542760919040
author Casillas, Andrea L.
Chauhan, Shailender S.
Toth, Rachel K.
Sainz, Alva G.
Clements, Amber N.
Jensen, Corbin C.
Langlais, Paul R.
Miranti, Cindy K.
Cress, Anne E.
Warfel, Noel A.
author_facet Casillas, Andrea L.
Chauhan, Shailender S.
Toth, Rachel K.
Sainz, Alva G.
Clements, Amber N.
Jensen, Corbin C.
Langlais, Paul R.
Miranti, Cindy K.
Cress, Anne E.
Warfel, Noel A.
author_sort Casillas, Andrea L.
collection PubMed
description Angiogenesis is essential for the sustained growth of solid tumors. Hypoxia-inducible factor 1 (HIF-1) is a master regulator of angiogenesis and constitutive activation of HIF-1 is frequently observed in human cancers. Therefore, understanding the mechanisms governing the activation of HIF-1 is critical for successful therapeutic targeting of tumor angiogenesis. Herein, we establish a new regulatory mechanism responsible for the constitutive activation of HIF-1α in cancer, irrespective of oxygen tension. PIM1 kinase directly phosphorylates HIF-1α at threonine 455, a previously uncharacterized site within its oxygen-dependent degradation domain. This phosphorylation event disrupts the ability of prolyl hydroxylases to bind and hydroxylate HIF-1α, interrupting its canonical degradation pathway and promoting constitutive transcription of HIF-1 target genes. Moreover, phosphorylation of the analogous site in HIF-2α (S435) stabilizes the protein through the same mechanism, indicating post-translational modification within the oxygen-dependent degradation domain as a mechanism of regulating the HIF-α subunits. In vitro and in vivo models demonstrate that expression of PIM1 is sufficient to stabilize HIF-1α and HIF-2α in normoxia and stimulate angiogenesis in a HIF-1-dependent manner. CRISPR mutants of HIF-1α (Thr455D) promoted increased tumor growth, proliferation and angiogenesis. Moreover, HIF-1α-T455D xenograft tumors were refractory to the anti-angiogenic and cytotoxic effects of PIM inhibitors. These data identify a new signaling axis responsible for hypoxia-independent activation of HIF-1 and expand our understanding of the tumorigenic role of PIM1 in solid tumors.
format Online
Article
Text
id pubmed-8364516
institution National Center for Biotechnology Information
language English
publishDate 2021
record_format MEDLINE/PubMed
spelling pubmed-83645162022-01-02 Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors Casillas, Andrea L. Chauhan, Shailender S. Toth, Rachel K. Sainz, Alva G. Clements, Amber N. Jensen, Corbin C. Langlais, Paul R. Miranti, Cindy K. Cress, Anne E. Warfel, Noel A. Oncogene Article Angiogenesis is essential for the sustained growth of solid tumors. Hypoxia-inducible factor 1 (HIF-1) is a master regulator of angiogenesis and constitutive activation of HIF-1 is frequently observed in human cancers. Therefore, understanding the mechanisms governing the activation of HIF-1 is critical for successful therapeutic targeting of tumor angiogenesis. Herein, we establish a new regulatory mechanism responsible for the constitutive activation of HIF-1α in cancer, irrespective of oxygen tension. PIM1 kinase directly phosphorylates HIF-1α at threonine 455, a previously uncharacterized site within its oxygen-dependent degradation domain. This phosphorylation event disrupts the ability of prolyl hydroxylases to bind and hydroxylate HIF-1α, interrupting its canonical degradation pathway and promoting constitutive transcription of HIF-1 target genes. Moreover, phosphorylation of the analogous site in HIF-2α (S435) stabilizes the protein through the same mechanism, indicating post-translational modification within the oxygen-dependent degradation domain as a mechanism of regulating the HIF-α subunits. In vitro and in vivo models demonstrate that expression of PIM1 is sufficient to stabilize HIF-1α and HIF-2α in normoxia and stimulate angiogenesis in a HIF-1-dependent manner. CRISPR mutants of HIF-1α (Thr455D) promoted increased tumor growth, proliferation and angiogenesis. Moreover, HIF-1α-T455D xenograft tumors were refractory to the anti-angiogenic and cytotoxic effects of PIM inhibitors. These data identify a new signaling axis responsible for hypoxia-independent activation of HIF-1 and expand our understanding of the tumorigenic role of PIM1 in solid tumors. 2021-07-02 2021-08 /pmc/articles/PMC8364516/ /pubmed/34211090 http://dx.doi.org/10.1038/s41388-021-01915-1 Text en https://www.springernature.com/gp/open-research/policies/accepted-manuscript-termsUsers may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Casillas, Andrea L.
Chauhan, Shailender S.
Toth, Rachel K.
Sainz, Alva G.
Clements, Amber N.
Jensen, Corbin C.
Langlais, Paul R.
Miranti, Cindy K.
Cress, Anne E.
Warfel, Noel A.
Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors
title Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors
title_full Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors
title_fullStr Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors
title_full_unstemmed Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors
title_short Direct phosphorylation and stabilization of HIF-1α by PIM1 kinase drives angiogenesis in solid tumors
title_sort direct phosphorylation and stabilization of hif-1α by pim1 kinase drives angiogenesis in solid tumors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8364516/
https://www.ncbi.nlm.nih.gov/pubmed/34211090
http://dx.doi.org/10.1038/s41388-021-01915-1
work_keys_str_mv AT casillasandreal directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT chauhanshailenders directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT tothrachelk directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT sainzalvag directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT clementsambern directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT jensencorbinc directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT langlaispaulr directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT miranticindyk directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT cressannee directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors
AT warfelnoela directphosphorylationandstabilizationofhif1abypim1kinasedrivesangiogenesisinsolidtumors