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A Simple and Effective Method to Consistently Isolate Mouse Cardiomyocytes
Published on: November 11, 2022
The effects of Tel2 on cardiomyocyte survival
Naaiko Yorichika1, Yuichi Baba2, Briana K Shimada1
1Department of Anatomy, Biochemistry & Physiology, John A. Burns School of Medicine, University of Hawai'i at Manoa, HI, United States of America.
Aims:
Overexpression of the mechanistic target of rapamycin (mTOR), a member of the PIKK (phosphoinositide kinase-related kinase) family, protects cardiomyocytes from cell death induced by pathological stimuli such as ischemia. We previously reported that posttranslational modification of mTOR plays an important role in regulating cardiac mTOR expression. The aim of this study was to see if Tel2 (telomere maintenance 2), a protein that regulates the abundance of PIKKs, confers similar cardioprotective effects as mTOR. Tel2 is not well-characterized in cardiomyocytes, therefore we examined the effects of Tel2 on cardiomyocyte viability under ischemic stress conditions.
Materials And Methods:
We overexpressed Tel2 or silenced Tel2 with siRNA in the HL-1 cardiomyocyte cell line to survey the effects of Tel2 overexpression and downregulation on cell survival during hypoxia. Adult mouse cardiomyocytes transfected with Tel2 adenoviruses were used to test whether Tel2 sufficiently prevented cardiomyocyte cell death against hydrogen peroxide (H2O2).
Key Findings:
Overexpressing Tel2 increased mTOR expression with a concomitant increase in mTOR Complex 1 (mTORC1) and mTORC2 activity in HL-1 cells. Tel2 deletion decreased mTOR expression, and mTORC1 and mTORC2 activity accordingly. In both HL-1 cells and adult mouse cardiomyocytes, Tel2 overexpression protected cardiomyocytes under ischemic stress. These effects were mTOR-dependent, as mTOR inhibitors blunted the effects of Tel2. While gene silencing of Tel2 did not affect cell survival under normoxia, Tel2 silencing made cardiomyocytes more vulnerable to cell death under hypoxia.
Significance:
Upregulating Tel2 expression increases mTOR-mediated cardiomyocyte survival and targeting Tel2 could be another therapeutic strategy against ischemic heart disease.
Insights
Telomere maintenance 2 (Tel2) enhances mechanistic target of rapamycin (mTOR) signaling, protecting heart cells from death during ischemia. Upregulating Tel2 offers a potential therapeutic strategy for ischemic heart disease.
Area of Science:
- Cardiology
- Molecular Biology
- Cell Biology
Background:
- Mechanistic target of rapamycin (mTOR) protects cardiomyocytes from death due to pathological stimuli like ischemia.
- Posttranslational modification of mTOR is crucial for regulating cardiac mTOR expression.
- Telomere maintenance 2 (Tel2) is a protein that regulates PIKK abundance and its role in cardiomyocytes is not well-understood.
Purpose of the Study:
- To investigate the cardioprotective effects of Tel2, similar to those of mTOR.
- To examine the impact of Tel2 on cardiomyocyte viability under ischemic stress conditions.
Main Methods:
- Tel2 was overexpressed or silenced using siRNA in HL-1 cardiomyocyte cell lines to assess effects on cell survival during hypoxia.
- Adult mouse cardiomyocytes were transfected with Tel2 adenoviruses to evaluate Tel2's ability to prevent cell death induced by hydrogen peroxide.
Main Results:
- Tel2 overexpression led to increased mTOR expression and enhanced mTOR Complex 1 (mTORC1) and mTOR Complex 2 (mTORC2) activity in HL-1 cells.
- Tel2 deletion decreased mTOR expression and activity.
- Tel2 overexpression protected cardiomyocytes from ischemic stress in both HL-1 cells and adult mouse cardiomyocytes, an effect dependent on mTOR signaling.
- Tel2 silencing did not affect cell survival under normal conditions but increased vulnerability to cell death under hypoxia.
Conclusions:
- Upregulating Tel2 expression promotes mTOR-mediated cardiomyocyte survival.
- Targeting Tel2 presents a potential therapeutic approach for treating ischemic heart disease.
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