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Updated: Jul 11, 2025

Assessment of Mitochondrial Functions and Cell Viability in Renal Cells Overexpressing Protein Kinase C Isozymes
Published on: January 7, 2013
PIM1 attenuates cisplatin-induced AKI by inhibiting Drp1 activation
Yuzhen Li1, Lang Shi1, Fan Zhao1
1Department of Nephrology, Renmin Hospital of Wuhan University, Wuhan, Hubei Province, China.
Abstract:
Cisplatin, an effective anti-cancer drug, always causes acute kidney injury (AKI) by inducing mitochondrial damage. PIM1 is a serine/threonine kinase, which has been shown to regulate mitochondrial function. However, the role and mechanisms of PIM1 in cisplatin-induced AKI remain unexplored. This study aimed to investigate the effects of PIM1 in cisplatin-induced AKI and its underlying mechanisms. To established Cisplatin-induced AKI model, mice were given a single intraperitoneal injection(20 mg/kg) and BUMPT cells were treated with cisplatin(20 μM). PIM1 inhibitor AZD1208 was used to inhibit PIM1 and PIM1-experssing adenovirus was used to overexpress PIM1. Drp1 inhibitor P110 and pcDNA3-Drp1K38A were used to inhibit the activation of Drp1 and mitochondrial fission. The indicators of renal function, renal morphology, apoptosis and mitochondrial dysfunction were assessed to evaluate cisplatin-induced nephrotoxicity. We observed that PIM1 was activated in cisplatin-induced AKI in vivo and cisplatin-induced tubular cells injury in vitro. PIM1 inhibition aggravated cisplatin-induced AKI in vivo, while PIM1 overexpression attenuated cisplatin-induced kidney injury in vivo and in vitro. Moreover, inhibiting PIM1 exacerbated mitochondrial damage in mice, but overexpressing PIM1 relieved mitochondrial damage in mice and BUMPT cells. In mice and BUMPT cells, inhibiting PIM1 deregulated the expression of p-Drp1S637, overexpressing PIM1 upregulated the ex-pression of p-Drp1S637. And inhibiting Drp1 activity alleviated cell damage in BUMPT cells with PIM1 knockdown or inhibition. This study demonstrated the protective effect of PIM1 in cisplatin-induced AKI, and regulation of Drp1 activation might be the underlying mechanism. Altogether, PIM1 may be a potential therapeutic target for cisplatin-induced AKI.
Insights
PIM1 kinase protects against cisplatin-induced acute kidney injury (AKI) by preserving mitochondrial function and regulating Drp1 activation. Overexpressing PIM1 offers a potential therapeutic strategy for AKI.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Background:
- Cisplatin is a vital chemotherapy agent but frequently causes acute kidney injury (AKI) through mitochondrial damage.
- PIM1, a serine/threonine kinase, is known to influence mitochondrial function, yet its specific role in cisplatin-induced AKI is uncharacterized.
Purpose of the Study:
- To investigate the protective role and underlying mechanisms of PIM1 in cisplatin-induced AKI.
Main Methods:
- Established cisplatin-induced AKI models in mice and BUMPT cells.
- Utilized PIM1 inhibitor (AZD1208) and PIM1-overexpressing adenovirus.
- Assessed renal function, morphology, apoptosis, and mitochondrial dysfunction; analyzed Drp1 activation and mitochondrial fission.
Main Results:
- PIM1 was activated during cisplatin-induced AKI.
- PIM1 inhibition worsened AKI and mitochondrial damage, while PIM1 overexpression attenuated kidney injury and protected mitochondria.
- PIM1 modulated Drp1 activation at serine 637, and inhibiting Drp1 activity mitigated cisplatin-induced cell damage.
Conclusions:
- PIM1 exhibits a protective effect against cisplatin-induced AKI.
- The mechanism involves the regulation of Drp1 activation and mitochondrial function.
- PIM1 represents a potential therapeutic target for mitigating cisplatin nephrotoxicity.
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