4.7 Article

Acetyl-CoA flux from the cytosol to the ER regulates engagement and quality of the secretory pathway

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-81447-6

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资金

  1. NIH [NS094154, AG053937, AG057408, DK071801, AG052324, GM108538, GM065386, GM104010, GM134865, NIH-NCRR S10RR029531]
  2. Department of Veterans Affairs [I01 BX004202]
  3. Office of the Vice Chancellor for Research and Graduate Education at the University of Wisconsin-Madison
  4. Wisconsin Alumni Research Foundation
  5. University of Wisconsin-Madison School of Pharmacy
  6. [NICHD-U54 HD090256]
  7. [T32 AG000213]
  8. [T32 GM007183]

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N epsilon-lysine acetylation in the ER is crucial for quality control, with dysfunction of AT-1 leading to severe disease phenotypes. Two models of AT-1 dysregulation showed reorganization of the ER, ERGIC, and Golgi apparatus, highlighting the importance of AT-1 in maintaining proper organization and engagement of the secretory pathway.
N epsilon -lysine acetylation in the ER is an essential component of the quality control machinery. ER acetylation is ensured by a membrane transporter, AT-1/SLC33A1, which translocates cytosolic acetyl-CoA into the ER lumen, and two acetyltransferases, ATase1 and ATase2, which acetylate nascent polypeptides within the ER lumen. Dysfunctional AT-1, as caused by gene mutation or duplication events, results in severe disease phenotypes. Here, we used two models of AT-1 dysregulation to investigate dynamics of the secretory pathway: AT-1 sTg, a model of systemic AT-1 overexpression, and AT-1(S113R/+), a model of AT-1 haploinsufficiency. The animals displayed reorganization of the ER, ERGIC, and Golgi apparatus. In particular, AT-1 sTg animals displayed a marked delay in Golgi-to-plasma membrane protein trafficking, significant alterations in Golgi-based N-glycan modification, and a marked expansion of the lysosomal network. Collectively our results indicate that AT-1 is essential to maintain proper organization and engagement of the secretory pathway.

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