一二三四区视频,亚洲少妇熟女色,日本久热无码视频网,欧美国产日韩大尺度,亚洲a视频,久久少妇一区二区,日韩999无码视频,刺激久久久久久久,啊啊啊啊不要啊在线

ChemicalBook >> journal list >> Cell Communication and Signaling >>article
Cell Communication and Signaling

Cell Communication and Signaling

IF: 8.2
Download PDF

ALCAT1-mediated abnormal cardiolipin remodelling promotes mitochondrial injury in podocytes in diabetic kidney disease

Published:10 January 2024 DOI:
Yiqun Hao, Yanqin Fan, Jun Feng, Zijing Zhu, Zilv Luo, Hongtu Hu, Weiwei Li, Hongxia Yang, Guohua Ding

Abstract

Cardiolipin (CL) plays a critical role in maintaining mitochondrial membrane integrity and overall mitochondrial homeostasis. Recent studies have suggested that mitochondrial damage resulting from abnormal cardiolipin remodelling is associated with the pathogenesis of diabetic kidney disease (DKD). Acyl-coenzyme A:lyso-cardiolipin acyltransferase-1 (ALCAT1) was confirmed to be involved in the progression of Parkinson’s disease, diet-induced obesity and other ageing-related diseases by regulating pathological cardiolipin remodelling. Thus, the purpose of this investigation was to determine the role of ALCAT1-mediated CL remodelling in DKD and to explore the potential underlying mechanism. In vivo study, the mitochondrial structure was examined by transmission electron microscopy (TEM). The colocalization of ALCAT1 and synaptopodin was evaluated by double immunolabelling. Western blotting (WB) was performed to assess ALCAT1 expression in glomeruli. Lipidomics analysis was conducted to evaluate the composition of reconstructed cardiolipins. In vitro study, the lipidomics, TEM and WB analyses were similar to those in vivo. Mitochondrial function was evaluated by measuring the mitochondrial membrane potential (MMP) and the production of ATP and ROS. Here, we showed that increased oxidized cardiolipin (ox-CL) and significant mitochondrial damage were accompanied by increased ALCAT1 expression in the glomeruli of patients with DKD. Similar results were found in db/db mouse kidneys and in cultured podocytes stimulated with high glucose (HG). ALCAT1 deficiency effectively prevented HG-induced ox-CL production and mitochondrial damage in podocytes. In contrast, ALCAT1 upregulation enhanced ox-CL levels and podocyte mitochondrial dysfunction. Moreover, treatment with the cardiolipin antioxidant SS-31 markedly inhibited mitochondrial dysfunction and cell injury, and SS-31 treatment partly reversed the damage mediated by ALCAT1 overexpression. We further found that ALCAT1 could mediate the key regulators of mitochondrial dynamics and mitophagy through the AMPK pathway. Collectively, our studies demonstrated that ALCAT1-mediated cardiolipin remodelling played a crucial role in DKD, which might provide new insights for DKD treatment.

Similar articles

IF:14.3

Tubular MYDGF Slows Progression of Chronic Kidney Disease by Maintaining Mitochondrial Homeostasis

Advanced Science Xiaohan Liu, Yang Zhang,etc Published: 26 November 2024
IF:5.3

HBSP inhibits tubular cell pyroptosis and apoptosis, promotes macrophage M2 polarization, and protects LPS‐induced acute kidney injury

JOURNAL OF CELLULAR AND MOLECULAR MEDICINE Lili Huang, Yuanyuan Wu,etc Published: 25 November 2024
IF:0.7

Alfacalcidol-Induced Kidney Injury in Patients with Severe Motor and Intellectual Disabilities.

Journal of nutritional science and vitaminology Osamu Uemura,?Yuka Hasegawa,etc Published: 1 January 2024
攀枝花市| 饶河县| 乌鲁木齐市| 湘潭县| 泰兴市| 通许县| 祁门县| 荔波县| 响水县| 张掖市| 岗巴县| 株洲县| 崇仁县| 扎鲁特旗| 喀什市| 泸定县| 齐齐哈尔市| 西充县| 泾源县| 沐川县| 改则县| 渝北区| 宁武县| 福安市| 泰州市| 神木县| 南阳市| 阳新县| 溆浦县| 霍城县| 龙井市| 彭阳县| 栾川县| 哈尔滨市| 湟源县| 荥经县| 通道| 滨海县| 讷河市| 开封县| 乾安县|