分解代谢
肾功能
肾
医学
功能(生物学)
内分泌学
内科学
新陈代谢
生物
细胞生物学
作者
Eliza Bollinger,George Williams,Mary Piper,Kimberly L. Steen,Kay Neale,Xian Chen,Mackenzie Marshall,Srinath Jagarlapudi,Yasaman Jami‐Alahmadi,Pierre M. Jean Beltran,LouJin Song,Joshua Chiou,Frank J. Geoly,Sarah Regina Vargas,Ying Zhang,Elaine Kuang,Daniel H. Callahan,John C. Stansfield,Marco Russo,John H. Griffin
标识
DOI:10.1016/j.kint.2025.04.025
摘要
Patients with metabolic syndrome and heart failure (HF) often have accompanying kidney dysfunction, which was recently defined as cardiovascular-kidney-metabolic (CKM) syndrome. Prior metabolomics profiling of metabolic syndrome patients identified a plasma branched chain amino acid (BCAA) signature, and BCAAs themselves are elevated in the myocardium of patients with HF, potentially due to a defect in BCAA catabolic breakdown. The rate limiting step of BCAA catabolism is the decarboxylation by the enzyme branched chain ketoacid dehydrogenase (BCKDH), which is negatively regulated by BCKDH kinase (BCKDK or BDK), and BDK inhibitors improve metabolism and heart failure preclinically. Here, using two pre-clinical CKM models, the hyperphagic ZSF1 obese rat and the uninephrectomized SDT fatty rat with high salt drinking water, we show that BCAA catabolic impairment is associated with and may be causal to CKM. Unbiased proteomic, transcriptomic and metabolomic profiling demonstrated impairment in BCAA catabolism within ZSF1 obese rat kidneys. In both CKM animal models, treatment with the BDK inhibitor BT2 improved urine protein content, kidney hypertrophy, and kidney pathology. Furthermore, coadministration of BT2 and the sodium-glucose cotransporter-2 inhibitor empagliflozin demonstrated additive effects to improve kidney parameters, kidney gene expression signatures, and kidney mitochondrial density and function. Our study suggests that in addition to its previously reported effects on metabolism and cardiac function, BDK inhibition may also improve kidney health and therefore could represent a new therapeutic avenue for CKM.
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