Senolysis by GLS1 Inhibition Ameliorates Kidney Aging by Inducing Excessive mPTP Opening through MFN1.

Yuting Chen, Nan Zhao, Yu Zhang, Xueqi Chen, Yi Chen, Yifan Wang, Jianqing Wu, Weihong Zhao
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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 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.

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GLS1抑制的衰老通过MFN1诱导mPTP过度开放来改善肾脏衰老。
细胞衰老是衰老和年龄相关疾病的关键因素。靶向消除衰老细胞,被称为衰老溶解,已成为缓解这些疾病的一种有希望的治疗策略。谷氨酰胺酶1 (GLS1)是谷氨酰胺水解途径的关键酶,参与多种细胞衰老过程。然而,其在衰老肾小管上皮细胞(tec)中的具体作用尚不清楚。本研究探讨GLS1在衰老tec中的作用及其潜在机制。利用d -半乳糖(D-gal)诱导的HK-2细胞衰老,我们发现GLS1抑制通过促进线粒体通透性过渡孔(mPTP)过度开放来消除衰老的tec。从机制上讲,mPTP过度开放与丝裂酶1 (MFN1)的上调有关。在d -gal处理的HK-2细胞中,抑制GLS1诱导线粒体动力学从裂变向融合转变,同时MFN1表达显著增加。在与D-gal和GLS1抑制剂BPTES共处理的细胞中,敲除MFN1降低mPTP开放和mPTP相关基因(PPIF, VDAC和BAX)的表达。此外,用BPTES治疗老年小鼠特异性地消除了衰老的tec并改善了与年龄相关的肾脏疾病。这些研究结果表明,GLS1抑制通过促进mPTP过度开放来消除衰老的tec,这表明靶向GLS1可能是缓解衰老相关肾脏疾病的一种新的抗衰老策略。
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