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Publication : PGRMC2 is an intracellular haem chaperone critical for adipocyte function.

First Author  Galmozzi A Year  2019
Journal  Nature Volume  576
Issue  7785 Pages  138-142
PubMed ID  31748741 Mgi Jnum  J:285015
Mgi Id  MGI:6393146 Doi  10.1038/s41586-019-1774-2
Citation  Galmozzi A, et al. (2019) PGRMC2 is an intracellular haem chaperone critical for adipocyte function. Nature 576(7785):138-142
abstractText  Haem is an essential prosthetic group of numerous proteins and a central signalling molecule in many physiologic processes(1,2). The chemical reactivity of haem means that a network of intracellular chaperone proteins is required to avert the cytotoxic effects of free haem, but the constituents of such trafficking pathways are unknown(3,4). Haem synthesis is completed in mitochondria, with ferrochelatase adding iron to protoporphyrin IX. How this vital but highly reactive metabolite is delivered from mitochondria to haemoproteins throughout the cell remains poorly defined(3,4). Here we show that progesterone receptor membrane component 2 (PGRMC2) is required for delivery of labile, or signalling haem, to the nucleus. Deletion of PGMRC2 in brown fat, which has a high demand for haem, reduced labile haem in the nucleus and increased stability of the haem-responsive transcriptional repressors Rev-Erbalpha and BACH1. Ensuing alterations in gene expression caused severe mitochondrial defects that rendered adipose-specific PGRMC2-null mice unable to activate adaptive thermogenesis and prone to greater metabolic deterioration when fed a high-fat diet. By contrast, obese-diabetic mice treated with a small-molecule PGRMC2 activator showed substantial improvement of diabetic features. These studies uncover a role for PGRMC2 in intracellular haem transport, reveal the influence of adipose tissue haem dynamics on physiology and suggest that modulation of PGRMC2 may revert obesity-linked defects in adipocytes.
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