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Senolysis by GLS1 Inhibition Ameliorates Kidney Aging by Inducing Excessive mPTP Opening Through MFN1
Yuting Chen1,2, Nan Zhao1,2, Yu Zhang1,2
1Division of Nephrology, Department of Geriatrics, The First Affiliated Hospital of Nanjing Medical University, Nanjing, Jiangsu, China.
Abstract:
Cellular senescence is a pivotal contributor to aging and age-related diseases. The targeted elimination of senescent cells, known as senolysis, has emerged as a promising therapeutic strategy for mitigating these conditions. Glutaminase 1 (GLS1), a key enzyme in the glutaminolysis pathway, has been implicated in various cellular senescence processes. However, its specific role in senescent renal tubular epithelial cells (TECs) remains unclear. This study investigates the role and underlying mechanisms of GLS1 in senescent TECs. Using d-galactose (d-gal)-induced senescence of HK-2 cells, we found that GLS1 inhibition eliminated senescent TECs by promoting excessive mitochondrial permeability transition pore (mPTP) opening. Mechanistically, the excessive mPTP opening is associated with the upregulation of mitofusin 1 (MFN1). Inhibition of GLS1 in d-gal-treated HK-2 cells induced a shift in mitochondrial dynamics from fission to fusion, accompanied by a significant increase in MFN1 expression. Knocking down MFN1 reduced the mPTP opening and the expression of mPTP-related genes (PPIF, VDAC, and BAX) in cells co-treated with d-gal and the GLS1 inhibitor BPTES. Moreover, treatment of aged mice with BPTES specifically eliminated senescent TECs and ameliorated age-associated kidney disease. These findings reveal that GLS1 inhibition eliminate senescent TECs by promoting excessive mPTP opening, suggesting that targeting GLS1 may be a novel senolytic strategy for alleviating aging-related kidney diseases.
Insights
Targeting Glutaminase 1 (GLS1) eliminates senescent renal cells by inducing mitochondrial dysfunction. This novel senolytic strategy shows promise for treating age-related kidney diseases.
Area of Science:
- Cellular biology
- Gerontology
- Biochemistry
Background:
- Cellular senescence drives aging and related diseases.
- Senolysis, the elimination of senescent cells, is a potential therapeutic approach.
- The role of Glutaminase 1 (GLS1) in senescent renal tubular epithelial cells (TECs) is not well understood.
Purpose of the Study:
- To investigate the role and mechanisms of GLS1 in senescent TECs.
- To explore GLS1 inhibition as a senolytic strategy for aging-related kidney diseases.
Main Methods:
- Induced senescence in HK-2 cells using d-galactose.
- Utilized GLS1 inhibitor BPTES and MFN1 knockdown.
- Administered BPTES to aged mice to assess in vivo efficacy.
Main Results:
- GLS1 inhibition in senescent TECs promoted excessive mitochondrial permeability transition pore (mPTP) opening.
- MFN1 upregulation was linked to excessive mPTP opening and a shift towards mitochondrial fusion.
- GLS1 inhibition in aged mice cleared senescent TECs and improved kidney function.
Conclusions:
- GLS1 inhibition eliminates senescent TECs via excessive mPTP opening, mediated by MFN1.
- Targeting GLS1 represents a potential senolytic therapy for age-associated kidney conditions.
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