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Myokine SIRPα exacerbates kidney disease in diabetes
Jiao Wu1, Elisa Russo2, Daniela Verzola2
1Nephrology Division, Department of Medicine, Baylor College of Medicine (BCM), Houston, Texas, USA.
Abstract:
Mechanisms responsible for skeletal muscle kidney crosstalk have not been defined. We have determined that a circulating mediator, signal regulatory protein α (SIRPα), impairs intracellular insulin-mediated functions. To elucidate the effect of myokine SIRPα on diabetic kidney disease (DKD), flox mice and muscle-specific (m-specific) SIRPα-KO mice were subjected to an obesity-induced model of diabetes, high-fat diet (HFD; 60%) or insulin-deficient hyperglycemia model, streptozotocin (STZ), and were subsequently exposed to anti-SIRPα monoclonal antibodies. In the obesity-induced diabetic mice, serum SIRPα increased. Genetic deletion of muscle SIRPα protected against obesity and improved intracellular insulin signaling in muscle and adipose tissue, with reduced intramuscular fat deposition when compared with flox mice on HFD. Moreover, mSIRPα-KO mice displayed enhanced kidney tubular fatty acid oxidation (FAO) expression with suppressed intraorgan triglycerides deposition, and importantly, protection against DKD. Conversely, exogenous SIRPα impaired kidney proximal tubular cell FAO, ATP production, and exacerbated fibrosis. Finally, suppressing SIRPα in skeletal muscles or treatment with anti-SIRPα monoclonal antibodies in STZ-treated mice mitigated cachexia, hyperlipidemia, kidney triglyceride deposition, and renal dysfunction in spite of significant hyperglycemia. Importantly, serum SIRPα was upregulated in patients with DKD. In conclusion, SIRPα serves as a potential biomarker and therapeutic target in DKD.
Insights
Signal regulatory protein alpha (SIRPα) links skeletal muscle and kidney health. This study shows that targeting SIRPα can protect against diabetic kidney disease (DKD) by improving metabolic function.
Area of Science:
- Metabolic and Renal Physiology
- Molecular Biology
- Endocrinology
Background:
- Skeletal muscle and kidney crosstalk mechanisms remain unclear.
- Signal regulatory protein alpha (SIRPα), a circulating mediator, is implicated in impairing insulin signaling.
- Diabetic kidney disease (DKD) pathogenesis requires further investigation into contributing factors.
Purpose of the Study:
- To investigate the role of myokine SIRPα in diabetic kidney disease (DKD).
- To determine if targeting SIRPα can ameliorate DKD.
- To explore SIRPα as a potential biomarker and therapeutic target for DKD.
Main Methods:
- Utilized muscle-specific SIRPα knockout (mSIRPα-KO) and flox mice.
- Induced diabetes using high-fat diet (HFD) or streptozotocin (STZ).
- Administered anti-SIRPα monoclonal antibodies and analyzed metabolic and renal parameters.
Main Results:
- Genetic deletion of muscle SIRPα protected against obesity, improved insulin signaling, and reduced fat deposition.
- mSIRPα-KO mice showed enhanced kidney tubular fatty acid oxidation (FAO) and suppressed triglyceride deposition, protecting against DKD.
- Exogenous SIRPα impaired kidney FAO and exacerbated fibrosis; antibody treatment mitigated DKD symptoms in STZ-mice.
- Serum SIRPα levels were elevated in human DKD patients.
Conclusions:
- SIRPα mediates skeletal muscle-kidney crosstalk and contributes to DKD.
- Targeting SIRPα, particularly in skeletal muscle, offers a protective strategy against DKD.
- SIRPα is a promising biomarker and therapeutic target for diabetic kidney disease.
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