Lysosomal release of amino acids at ER three-way junctions regulates transmembrane and secretory protein mRNA translation
Choi, H.; Liao, Y.-C.; Yoon, Y. J.; Grimm, J. B.; Lavis, L.; Singer, R. H.; Lippincott-Schwartz, J.
Show abstract
One-third of the mammalian proteome is comprised of transmembrane and secretory proteins that are synthesized on endoplasmic reticulum (ER). Here, we investigate the spatial distribution and regulation of mRNAs encoding these membrane and secretory proteins (termed "secretome" mRNAs) through live cell, single molecule tracking to directly monitor the position and translation states of secretome mRNAs on ER and their relationship to other organelles. Notably, translation of secretome mRNAs occurred preferentially near lysosomes on ER marked by the ER junction-associated protein, Lunapark. Knockdown of Lunapark reduced the extent of secretome mRNA translation without affecting translation of other mRNAs. Less secretome mRNA translation also occurred when lysosome function was perturbed by raising lysosomal pH or inhibiting lysosomal proteases. Secretome mRNA translation near lysosomes was enhanced during amino acid deprivation. Addition of the integrated stress response inhibitor, ISRIB, reversed the translation inhibition seen in Lunapark knockdown cells, implying an eIF2 dependency. Altogether, these findings uncover a novel coordination between ER and lysosomes, in which local release of amino acids and other factors from ER-associated lysosomes patterns and regulates translation of mRNAs encoding secretory and membrane proteins.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Temporal control of acute protein aggregate turnover by UBE3C and NRF1-dependent proteasomal pathways 96%
- Split-TurboID enables contact-dependent proximity labeling in cells 95%
- A Myosin-7B dependent endocytosis pathway mediates cellular entry of α-Synuclein fibrils and polycation-bearing cargos 95%
Similar papers in this journal
- Endoplasmic reticulum stress activates human IRE1α through reversible assembly of inactive dimers into small oligomers 95%
- Selective clearance of the inner nuclear membrane protein emerin by vesicular transport during ER stress 95%
- Metabolic regulation of misfolded protein import into mitochondria 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.