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PGRMC1 Phosphorylation Affects Cell Shape, Motility, Glycolysis, Mitochondrial Form and Function, and Tumor Growth

Authors :
Ross D. Hannan
Tanja Fehm
Partho P. Adhikary
Ishith Seth
Ewa M. Goldys
Alexander James
Marina Pajic
Elizabeth J. New
Juan C. Cassano
Megan Pavy
Craig P. Coorey
Leslie A. Weston
Mitra Jazayeri
Sarah L. Teakel
Simon J. Kinder
Lynne Turnbull
Mark P. Molloy
Ashleigh Van Oosterum
Dana Pascovici
Ellis Patrick
Hans Neubauer
Michael Pawlak
Tara L. Roberts
Michael A. Cahill
Bashar M. Thejer
Jalal A. Jazayeri
Amandeep Kaur
Katherine M. Hannan
Marina Ludescher
Thiri Zaw
Perlita Poh
Source :
BMC Molecular and Cell Biology, BMC Molecular and Cell Biology, Vol 21, Iss 1, Pp 1-24 (2020)
Publication Year :
2022
Publisher :
La Trobe, 2022.

Abstract

Background Progesterone Receptor Membrane Component 1 (PGRMC1) is expressed in many cancer cells, where it is associated with detrimental patient outcomes. It contains phosphorylated tyrosines which evolutionarily preceded deuterostome gastrulation and tissue differentiation mechanisms. Results We demonstrate that manipulating PGRMC1 phosphorylation status in MIA PaCa-2 (MP) cells imposes broad pleiotropic effects. Relative to parental cells over-expressing hemagglutinin-tagged wild-type (WT) PGRMC1-HA, cells expressing a PGRMC1-HA-S57A/S181A double mutant (DM) exhibited reduced levels of proteins involved in energy metabolism and mitochondrial function, and altered glucose metabolism suggesting modulation of the Warburg effect. This was associated with increased PI3K/AKT activity, altered cell shape, actin cytoskeleton, motility, and mitochondrial properties. An S57A/Y180F/S181A triple mutant (TM) indicated the involvement of Y180 in PI3K/AKT activation. Mutation of Y180F strongly attenuated subcutaneous xenograft tumor growth in NOD-SCID gamma mice. Elsewhere we demonstrate altered metabolism, mutation incidence, and epigenetic status in these cells. Conclusions Altogether, these results indicate that mutational manipulation of PGRMC1 phosphorylation status exerts broad pleiotropic effects relevant to cancer and other cell biology.

Details

Database :
OpenAIRE
Journal :
BMC Molecular and Cell Biology, BMC Molecular and Cell Biology, Vol 21, Iss 1, Pp 1-24 (2020)
Accession number :
edsair.doi.dedup.....d4de00d56a22e934f8adfe291e000118
Full Text :
https://doi.org/10.26181/19681365