Publication Details

Category Text Publication
Reference Category Journals
DOI 10.1016/j.jcmgh.2026.101824
Licence creative commons licence
Title (Primary) Loss of the mechanistic target of rapamycin complex 1 causes a lethal alpha-1 antitrypsin deficiency–associated liver disease
Author Bewersdorf, L.; Haber, S.; Volkert, I.; Remih, K.; Gross, A.; Preisinger, C.; Kroll, L.; Cramer, T.; Gaisa, N.T.; Leypold, S.; Rolle-Kampczyk, U. ORCID logo ; Brunetti-Pierri, N.; von Bergen, M.; Rosenberger, F.; Weiss, C.; Guldiken, N.; Strnad, P.
Source Titel Cellular and Molecular Gastroenterology and Hepatology
Year 2026
Department MOLTOX
Volume 20
Issue 10
Page From art. 101824
Language englisch
Topic T9 Healthy Planet
Supplements Supplement 1
Supplement 2
Keywords Hyperammonemia; Liver Zonation; Metabolic Reprogramming; Proteostasis
Abstract

Background & Aims

SERPINA1 mutations cause retention of the otherwise secreted alpha-1 antitrypsin and lead to the proteotoxic alpha-1 antitrypsin deficiency–related liver disease. As mechanistic target of rapamycin is a key coordinator of proteostasis, we studied its role in alpha-1 antitrypsin deficiency–related liver disease.

Methods

PiZ mice overexpressing the characteristic SERPINA1 mutation were mated with rodents harboring a hepatocyte specific–ablation of the interaction partners regulatory-associated protein of mechanistic target of rapamycin or rapamycin-insensitive companion of mammalian target of rapamycin, corresponding to mechanistic target of rapamycin complexes 1 or 2, or with mice lacking mechanistic target of rapamycin. Serum proteomics, liver bulk proteomics, spatial proteomics, and metabolomics were applied to characterize molecular and metabolic alterations.

Results

At 2 months of age, PiZ-mTORΔhep and PiZ-RaptorΔhep but not PiZ-RictorΔhep mice showed signs of increased liver injury and mortality despite diminished hepatic alpha-1 antitrypsin accumulation. PiZ-RaptorΔhep animals displayed increased levels of the proapoptotic protein C/EBP homologous protein, but C/EBP homologous protein ablation did not rescue the phenotype. Serum proteomics revealed no signs of advanced synthetic liver failure but immature hepatocellular products. Liver bulk proteomics and small metabolite measurement demonstrated a metabolic reprogramming of PiZ-RaptorΔhep mice. Spatial proteomics revealed alterations in liver zonation with increased ammonia levels as the likely cause of death in PiZ-RaptorΔhep animals.

Conclusions

In summary, in alpha-1 antitrypsin deficiency–related proteotoxic liver injury, regulatory-associated protein of mechanistic target of rapamycin preserves a liver zonation, thereby protecting from lethal metabolic dysregulation.

Bewersdorf, L., Haber, S., Volkert, I., Remih, K., Gross, A., Preisinger, C., Kroll, L., Cramer, T., Gaisa, N.T., Leypold, S., Rolle-Kampczyk, U., Brunetti-Pierri, N., von Bergen, M., Rosenberger, F., Weiss, C., Guldiken, N., Strnad, P. (2026):
Loss of the mechanistic target of rapamycin complex 1 causes a lethal alpha-1 antitrypsin deficiency–associated liver disease
Cell. Mol. Gastroenterol. Hepatol. 20 (10), art. 101824
10.1016/j.jcmgh.2026.101824