4.4 Article

RTN4B interacting protein FAM134C promotes ER membrane curvature and has a functional role in autophagy

Journal

MOLECULAR BIOLOGY OF THE CELL
Volume 32, Issue 12, Pages 1158-1170

Publisher

AMER SOC CELL BIOLOGY
DOI: 10.1091/mbc.E20-06-0409

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Funding

  1. Electron Microscopy Unit (EMBI) and Light Microscopy Unit of the Institute of Biotechnology, University of Helsinki
  2. Academy of Finland [1287975, 1331998]
  3. Sigrid Juselius Foundation
  4. Biocenter Finland
  5. Helsinki Institute of Life Science Fellow's program

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In this study, FAM134C was identified as a interacting protein with RTN4B in mammalian, nonneuronal cells, playing a role in promoting ER tubulation and impacting the autophagy pathway. Overexpression of FAM134C induces the formation of unbranched long tubules or dense globular structures, affecting the size and number of autophagic structures under starvation conditions. Dominant-negative expression of FAM134C forms with mutated RHD or LC3 interacting region also leads to a reduced number of autophagic structures.
The endoplasmic reticulum (ER) is composed of a controlled ratio of sheets and tubules, which are maintained by several proteins with multiple functions. Reticulons (RTNs), especially RTN4, and DP1Nop1p family members are known to induce ER membrane curvature. RTN4B is the main RTN4 isoform expressed in nonneuronal cells. In this study, we identified FAM134C as a RTN4B interacting protein in mammalian, nonneuronal cells. FAM134C localized specifically to the ER tubules and sheet edges. Ultrastructural analysis revealed that overexpression of FAM134C induced the formation of unbranched, long tubules or dense globular structures composed of heavily branched narrow tubules. In both cases, tubules were nonmotile. ER tubulation was dependent on the reticulon homology domain (RHD) close to the N-terminus. FAM134C plays a role in the autophagy pathway as its level elevated significantly upon amino acid starvation but not during ER stress. Moreover, FAM134C depletion reduced the number and size of autophagic structures and the amount of ER as a cargo within autophagic structures under starvation conditions. Dominant-negative expression of FAM134C forms with mutated RHD or LC3 interacting region also led to a reduced number of autophagic structures. Our results suggest that FAM134C provides a link between regulation of ER architecture and ER turnover by promoting ER tubulation required for subsequent ER fragmentation and engulfment into autophagosomes.

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