| Literature DB >> 22298954 |
Juquan Song1, Xiao-jun Zhang, Darren Boehning, Natasha C Brooks, David N Herndon, Marc G Jeschke.
Abstract
Severe burn-induced liver damage and dysfunction is associated with endoplasmic reticulum (ER) stress. ER stress has been shown to regulate global protein synthesis. In the current study, we induced ER stress in vitro and estimated the effect of ER stress on hepatic protein synthesis. The aim was two-fold: (1) to establish an in vitro model to isotopically measure hepatic protein synthesis and (2) to evaluate protein fractional synthetic rate (FSR) in response to ER stress. Human hepatocellular carcinoma cells (HepG2) were cultured in medium supplemented with stable isotopes 1,2-(13)C(2)-glycine and L-[ring-(13)C(6)]phenylalanine. ER stress was induced by exposing the cells to 100 nM of thapsigargin (TG). Cell content was collected from day 0 to 14. Alterations in cytosolic calcium were measured by calcium imaging and ER stress markers were confirmed by Western blotting. The precursor and product enrichments were detected by GC-MS analysis for FSR calculation. We found that the hepatic protein FSR were 0.97 ± 0.02 and 0.99 ± 0.05%/hr calculated from 1,2-(13)C(2)-glycine and L-[ring-(13)C(6)]phenylalanine, respectively. TG depleted ER calcium stores and induced ER stress by upregulating p-IRE-1 and Bip. FSR dramatically decreased to 0.68 ± 0.03 and 0.60 ± 0.06%/hr in the TG treatment group (p<0.05, vs. control). TG-induced ER stress inhibited hepatic protein synthesis. The stable isotope tracer incorporation technique is a useful method for studying the effects of ER stress on hepatic protein synthesis.Entities:
Keywords: Endoplasmic reticulum (ER) stress; Gas chromatography-mass spectrometry (GC-MS); Hepatic protein synthesis; calcium; in vitro
Mesh:
Substances:
Year: 2012 PMID: 22298954 PMCID: PMC3269609 DOI: 10.7150/ijbs.3660
Source DB: PubMed Journal: Int J Biol Sci ISSN: 1449-2288 Impact factor: 6.580
Figure 1(A) Changes of protein-bound amino acid enrichments till day 14 in HepG2 cultured in DMEM supplemented with stable isotope tracers of 1,2-13C2-glycine and L-[ring-13C6]phenylalanine. Enrichments are expressed as tracer to tracee ratio (TTR). (B) Linear regression analysis for the change of protein-bound amino acid enrichments in HepG2 with glycine and phenylalanine isotopes from 0 to 72 hours.
Protein FSR calculated with different precursors in HepG2 cells.
| Precursor | Ep (TTR) (%) | Et2-Et1 (TTR) (%) | FSR (%/hr) |
|---|---|---|---|
| bound glycine | |||
| Product plateau | 18.53 ± 0.61 | 12.99 ± 0.32 | 0.97 ± 0.02 |
| Intracellular free pool | 20.22 ± 0.51 | 12.99 ± 0.32 | 0.93 ± 0.04 |
| bound phenylalanine | |||
| Product plateau | 26.02 ± 1.15 | 18.58 ± 0.89 | 0.99 ± 0.05 |
| Intracellular free pool | 26.21 ± 1.51 | 18.58 ± 0.89 | 0.99 ± 0.01 |
Data were collected in hepatocytes cultured in DMEM supplemented with stable isotope tracers of 1,2-13C2-glycine and L-[ring-13C6]phenylalanine. Enrichments are expressed as TTR. Et2 - Et1 is the change in product enrichment (protein) between time-points t2 and t1, and Ep is the mean precursor enrichment over the time (t2 to t1) or the mean of product plateau. Data are expressed as means ± SEM.
Figure 2TG induced alterations in hepatic calcium homeostasis. (A) Representative fura-2 ratio images of cytosolic calcium in HepG2 cells from different dose of TG treatment for 24 hours. Ratio values are pseudocolored as per the scale bar. (B) Single-cell imaging of depletion of ER calcium stores with different dose of TG treatment. Each trace is an average of 20 cells from a single experiment. Fluorescence Ratio A at 350 nm to 380 nm stands for intracellular calcium level.
Figure 3TG induced ER stress in a dose- and time-dependent manner in HepG2 cells. (A) Cells were treated with TG from 1 nM to 1 µM for 24 hours; (B) Cells were treated with 100 nM of TG from 1 hour to 24 hours. Two of ER stress markers p-IRE-1 and GRP78/Bip were detected by Western blot analysis. The expression of GAPDH was served as a loading control.
Figure 4Hepatic FSR (%/hr) significantly decreased in HepG2 cell with 24-hour TG treatment by detecting with both stable isotope tracers of 1,2-13C2-glycine and L-[ring-13C6]phenylalanine. * p<0.05, TG-treated group vs. DMSO-treated vehicle group. Data are expressed as means ± SEM.