4.7 Article

Sirtuin 7 Deficiency Reduces Inflammation and Tubular Damage Induced by an Episode of Acute Kidney Injury

期刊

出版社

MDPI
DOI: 10.3390/ijms23052573

关键词

histone deacetylase; NFkB signaling; immune cells infiltration; tubular injury

资金

  1. Mexican Council of Science and Technology (Consejo Nacional de Ciencias y Tecnologia [A-1S8715, 300151]
  2. National University of Mexico (Universidad Nacional Autonoma de Mexico [IN223915, IN201022]
  3. Swiss National Science Foundation [31003A_179435]
  4. [607517]
  5. Swiss National Science Foundation (SNF) [31003A_179435] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

Sirt7 deficiency protects mice from acute kidney injury by reducing albuminuria and tubular damage markers, as well as decreasing inflammation. This suggests that Sirt7 plays a critical role in promoting renal damage and inflammation.
Acute kidney injury (AKI) is a public health problem worldwide. Sirtuins are a family of seven NAD+-dependent deacylases, Overexpression of Sirtuin 1, 3, and 5 protect against AKI. However, the role of Sirtuin 7 (Sirt7) in AKI is not known. Here, we analyzed how Sirt7 deficient mice (KO-Sirt7) were affected by AKI. As expected, wild-type and Sirt7 heterozygotes mice that underwent renal ischemia/reperfusion (IR) exhibited the characteristic hallmarks of AKI: renal dysfunction, tubular damage, albuminuria, increased oxidative stress, and renal inflammation. In contrast, the KO-Sirt7+IR mice were protected from AKI, exhibiting lesser albuminuria and reduction in urinary biomarkers of tubular damage, despite similar renal dysfunction. The renoprotection in the Sirt7-KO+IR group was associated with reduced kidney weight, minor expression of inflammatory cytokines and less renal infiltration of inflammatory cells. This anti-inflammatory effect was related to diminished p65 expression and in its active phosphorylation, as well as by a reduction in p65 nuclear translocation. Sirt7 deficient mice are protected from AKI, suggesting that this histone deacetylase promotes tubular damage and renal inflammation. Therefore, our findings indicate that Sirt7 inhibitors may be an attractive therapeutic target to reduce NF kappa B signaling.

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