Link: https://www.ncbi.nlm.nih.gov/pubmed/29916093

Cell Mol Life Sci. 2018 Nov;75(21):4021-4040. doi: 10.1007/s00018-018-2847-3. Epub 2018 Jun 9.
Megalin mediates plasma membrane to mitochondria cross-talk and regulates mitochondrial metabolism.
Li Q1, Lei F1,2, Tang Y1,3, Pan JS1, Tong Q4, Sun Y5, Sheikh-Hamad D6.
Author information
Abstract
Mitochondrial intracrines are extracellular signaling proteins, targeted to the mitochondria. The pathway for mitochondrial targeting of mitochondrial intracrines and actions in the mitochondria remains unknown. Megalin/LRP2 mediates the uptake of vitamins and proteins, and is critical for clearance of amyloid-β protein from the brain. Megalin mutations underlie the pathogenesis of Donnai-Barrow and Lowe syndromes, characterized by brain defects and kidney dysfunction; megalin was not previously known to reside in the mitochondria. Here, we show megalin is present in the mitochondria and associates with mitochondrial anti-oxidant proteins SIRT3 and stanniocalcin-1 (STC1). Megalin shuttles extracellularly-applied STC1, angiotensin II and TGF-β to the mitochondria through the retrograde early endosome-to-Golgi transport pathway and Rab32. Megalin knockout in cultured cells impairs glycolytic and respiratory capacities. Thus, megalin is critical for mitochondrial biology; mitochondrial intracrine signaling is a continuum of the retrograde early endosome-to-Golgi-Rab32 pathway and defects in this pathway may underlie disease processes in many systems.

KEYWORDS:
ApoE; OCRL1; PIKfyve; Proteinuria; Sonic hedgehog; Vitamin D

PMID: 29916093 DOI: 10.1007/s00018-018-2847-3
[Indexed for MEDLINE]