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Inhibition of the endoplasmic reticulum stress-associated IRE-1 pathway alleviates preterm birth
Liyin Qiu1, Hui Liu2, Shali Chen1
1Department of Obstetrics, Fujian Maternity and Child Health Hospital College of Clinical Medicine for Obstetrics & Gynecology and Pediatrics, Fujian Medical University, Fuzhou, Fujian, China.
Insights
Upregulation of Inositol-requiring enzyme type 1 (IRE-1) in premature birth (PTB) placental tissues contributes to PTB pathogenesis. Inhibiting the endoplasmic reticulum stress (ERS)-associated IRE-1/XBP1/CHOP pathway may mitigate PTB.
Area of Science:
- Reproductive biology
- Cellular stress responses
- Maternal-fetal medicine
Background:
- Premature birth (PTB) is a significant global health issue linked to neonatal complications.
- The unfolded protein response (UPR) mediated by Inositol-requiring enzyme type 1 (IRE-1) plays a crucial role in cellular regulation.
- Understanding the endoplasmic reticulum stress (ERS)-related IRE-1 pathway's role in PTB is essential.
Purpose of the Study:
- To investigate the role of the ERS-related IRE-1 pathway in the pathogenesis of PTB.
- To assess the impact of IRE-1 on placental trophoblast cell function under ER stress conditions.
Main Methods:
- Human placental trophoblast cells (HTR8/Svneo) were subjected to tunicamycin (TM) to induce ER stress.
- Expression of IRE-1 and associated proteins (ATF6, GRP78, XBP-1) was analyzed in placental tissues and cells.
- Cellular viability, migration, invasion, apoptosis, and autophagy were evaluated, with interventions using the ERS inhibitor TUDCA and IRE-1 knockdown.
Main Results:
- Elevated levels of ATF6, GRP78, and XBP-1 were found in PTB tissues and TM-treated cells.
- TM treatment reduced cell viability, migration, and invasion while increasing apoptosis; TUDCA counteracted these effects.
- IRE-1 overexpression was observed in PTB; IRE-1 knockdown improved cell viability, migration, and invasion, and suppressed apoptosis and autophagy under TM stimulation, modulating the IRE-1/XBP1/CHOP pathway.
Conclusions:
- Upregulated IRE-1 in PTB placental tissues is implicated in PTB development.
- Targeting the IRE-1/XBP1/CHOP pathway presents a potential therapeutic strategy for mitigating PTB.
Background:
Premature birth (PTB) remains a major global health concern due to its association with neonatal morbidity and mortality. The unfolded protein response (UPR) within the endoplasmic reticulum (ER) is tightly regulated by Inositol-requiring enzyme type 1 (IRE-1), a pivotal cellular modulator. This study seeks to elucidate the role of the ER stress (ERS)-related IRE-1 pathway in PTB.
Methods:
Human placental trophoblast cells HTR8/Svneo were exposed to the ER-stress inducer tunicamycin (TM). The expression of IRE-1 and ERS-associated proteins ATF6, GRP78, and XBP-1 was assessed in placental tissues and TM-treated cells. Cellular viability, migration, invasion, and apoptosis were evaluated through a series of experimental assays. Additionally, various methods were employed to assess and verify the activation of autophagy, using the autophagy marker, microtubule-associated protein 1A/1B-light chain 3 (LC3). Additionally, TUDCA (an ERS inhibitor) was used to assess its potential to counteract the TM-induced cell effects.
Results:
Elevated levels of ATF6, GRP78, and XBP-1 were observed in PTB tissues and cells. TM treatment substantially reduced cell viability, migration, and invasion while promoting apoptosis. Treatment with TUDCA (an ERS inhibitor) counteracted the effects of TM on the cells. Furthermore, we identified an overexpression of IRE-1 in PTB tissues and cells and its knockdown enhanced cell viability, migration, and invasion while suppressed apoptosis and autophagy under TM stimulation. Notably, IRE-1 was found to modulate the activity of the IRE-1/XBP1/CHOP signaling pathway in TM-treated cells.
Conclusion:
The upregulation of IRE-1 in PTB placental tissues is implicated in the pathogenesis of PTB. Importantly, inhibiting the ERS-associated IRE-1/XBP1/CHOP pathway may be a good strategy in mitigating PTB.
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