PGRMC1 effects on metabolism, genomic mutation and CpG methylation imply crucial roles in animal biology and disease

PGRMC1 对代谢、基因组突变和 CpG 甲基化的影响意味着它在动物生物学和疾病中起着至关重要的作用

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作者:Bashar M Thejer, Partho P Adhikary, Sarah L Teakel, Johnny Fang, Paul A Weston, Saliya Gurusinghe, Ayad G Anwer, Martin Gosnell, Jalal A Jazayeri, Marina Ludescher, Lesley-Ann Gray, Michael Pawlak, Robyn H Wallace, Sameer D Pant, Marie Wong, Tamas Fischer, Elizabeth J New, Tanja N Fehm, Hans Neubaue

Background

Progesterone receptor membrane component 1 (PGRMC1) is often elevated in cancers, and exists in alternative states of phosphorylation. A motif centered on PGRMC1 Y180 was evolutionarily acquired concurrently with the embryological gastrulation organizer that orchestrates vertebrate tissue differentiation.

Conclusions

A companion manuscript shows that these cell states dramatically affect protein abundances, cell and mitochondrial morphology, and glycolytic metabolism. We propose that PGRMC1 phosphorylation status modulates cellular plasticity mechanisms relevant to early embryological tissue differentiation.

Results

Here, we show that mutagenic manipulation of PGRMC1 phosphorylation alters cell metabolism, genomic stability, and CpG methylation. Each of several mutants elicited distinct patterns of genomic CpG methylation. Mutation of S57A/Y180/S181A led to increased net hypermethylation, reminiscent of embryonic stem cells. Pathways enrichment analysis suggested modulation of processes related to animal cell differentiation status and tissue identity, as well as cell cycle control and ATM/ATR DNA damage repair regulation. We detected different genomic mutation rates in culture. Conclusions: A companion manuscript shows that these cell states dramatically affect protein abundances, cell and mitochondrial morphology, and glycolytic metabolism. We propose that PGRMC1 phosphorylation status modulates cellular plasticity mechanisms relevant to early embryological tissue differentiation.

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