Division of Genetics, Department of Medicine, Brigham and Women's Hospital Harvard Medical School, Boston, MA 02115, USA.
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Dis Model Mech. 2023 Sep 1;16(9). doi: 10.1242/dmm.050092. Epub 2023 Sep 5.
Rhabdomyolysis is a clinical emergency characterized by severe muscle damage, resulting in the release of intracellular muscle components, which leads to myoglobinuria and, in severe cases, acute kidney failure. Rhabdomyolysis is caused by genetic factors linked to increased disease susceptibility in response to extrinsic triggers. Recessive mutations in TANGO2 result in episodic rhabdomyolysis, metabolic crises, encephalopathy and cardiac arrhythmia. The underlying mechanism contributing to disease onset in response to specific triggers remains unclear. To address these challenges, we created a zebrafish model of Tango2 deficiency. Here, we demonstrate that the loss of Tango2 in zebrafish results in growth defects, early lethality and increased susceptibility of skeletal muscle defects in response to extrinsic triggers, similar to TANGO2-deficient patients. Using lipidomics, we identified alterations in the glycerolipid pathway in tango2 mutants, which is critical for membrane stability and energy balance. Therefore, these studies provide insight into key disease processes in Tango2 deficiency and have increased our understanding of the impacts of specific defects on predisposition to environmental triggers in TANGO2-related disorders.
横纹肌溶解症是一种以严重肌肉损伤为特征的临床急症,导致细胞内肌肉成分释放,从而导致肌红蛋白尿,在严重情况下会导致急性肾衰竭。横纹肌溶解症是由与外在诱因引起的疾病易感性增加相关的遗传因素引起的。TANGO2 的隐性突变导致阵发性横纹肌溶解症、代谢危象、脑病和心律失常。导致对特定诱因出现疾病发作的潜在机制仍不清楚。为了解决这些挑战,我们创建了 Tango2 缺乏的斑马鱼模型。在这里,我们证明斑马鱼中 Tango2 的缺失导致生长缺陷、早期致死和对外界诱因的骨骼肌缺陷易感性增加,类似于 TANGO2 缺陷患者。通过脂质组学分析,我们发现 tango2 突变体中甘油脂途径发生改变,这对膜稳定性和能量平衡至关重要。因此,这些研究深入了解了 Tango2 缺乏症的关键疾病过程,并增加了我们对特定缺陷对 TANGO2 相关疾病中环境诱因易感性的影响的理解。