Abstract

Autophagy is a tightly regulated lysosomal degradation pathway for maintaining cellular homeostasis and responding to stresses. Beclin 1 and its interacting proteins, including the class III phosphatidylinositol-3 kinase Vps34, play crucial roles in autophagy regulation in mammals. We identified nuclear receptor binding factor 2 (Nrbf2) as a Beclin 1-interacting protein from Becn1(-/-);Becn1-EGFP/+ mouse liver and brain. We also found that Nrbf2-Beclin 1 interaction required the N terminus of Nrbf2. We next used the human retinal pigment epithelial cell line RPE-1 as a model system and showed that transiently knocking down Nrbf2 by siRNA increased autophagic flux under both nutrient-rich and starvation conditions. To investigate the mechanism by which Nrbf2 regulates autophagy, we demonstrated that Nrbf2 interacted and colocalized with Atg14L, suggesting that Nrbf2 is a component of the Atg14L-containing Beclin 1-Vps34 complex. Moreover, ectopically expressed Nrbf2 formed cytosolic puncta that were positive for isolation membrane markers. These results suggest that Nrbf2 is involved in autophagosome biogenesis. Furthermore, we showed that Nrbf2 deficiency led to increased intracellular phosphatidylinositol-3 phosphate levels and diminished Atg14L-Vps34/Vps15 interactions, suggesting that Nrbf2-mediated Atg14L-Vps34/Vps15 interactions likely inhibit Vps34 activity. Therefore, we propose that Nrbf2 may interact with the Atg14L-containing Beclin 1-Vps34 protein complex to modulate protein-protein interactions within the complex, leading to suppression of Vps34 activity, autophagosome biogenesis, and autophagic flux. This work reveals a novel aspect of the intricate mechanism for the Beclin 1-Vps34 protein-protein interaction network to achieve precise control of autophagy.

Highlights

  • The Beclin 1-Vps34 protein-protein interaction network is critical for autophagy regulation

  • Our result shows that anti-nuclear receptor binding factor 2 (Nrbf2) antibody was capable of pulling down endogenous Beclin 1, Vps34, and Vps15 from RPE-1 cells transfected with non-targeting siRNA but not from RPE-1 cells transfected with Nrbf2 siRNA (Fig. 1b)

  • Our results demonstrate that Nrbf2 is a component of the Beclin 1-Vps34 protein-protein interaction network

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Summary

Background

The Beclin 1-Vps protein-protein interaction network is critical for autophagy regulation. Results: Nrbf is a component of the Atg14L-containing Beclin 1-Vps protein complex. Ectopically expressed Nrbf formed cytosolic puncta that were positive for isolation membrane markers These results suggest that Nrbf is involved in autophagosome biogenesis. We propose that Nrbf may interact with the Atg14L-containing Beclin 1-Vps protein complex to modulate protein-protein interactions within the complex, leading to suppression of Vps activity, autophagosome biogenesis, and autophagic flux. Autophagy Regulation by Nrbf complex contains Vps and is involved in the vacuolar protein sorting (Vps) pathway [10]. We set out to determine additional important players in the Beclin 1-Vps protein-protein interaction network and identified nuclear receptor binding factor 2 (Nrbf2) as a Beclin 1-interacting protein. We determined a novel role for Nrbf in autophagy regulation through modulating the Beclin 1-Vps protein-protein interaction network

EXPERIMENTAL PROCEDURES
RESULTS
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