癌症研究
基因剔除小鼠
细胞生物学
线粒体
表型
病理
衰老
血管生成
医学
化学
血栓形成
激酶
柠檬酸循环
内皮
生物
CD38
P-选择素
血小板活化
表型转换
条件基因敲除
运动性
卡尔帕因
内皮干细胞
作者
Sivareddy Kotla,Jonghae Lee,Kyung Ae Ko,Weiqing Chen,Venkata Subrahman K Samanthapudi,Oanh Hoang,Gilbert F. Mejia,Shengyu Li,Hani Lee,Angie Zhang,Min Soon Cho,Keri L. Schadler,Luis Antonio Rivera,Masaki Imanishi,Kay Carlene Tavares Samperio,Jung Hyun Kim,Kelia C. Ostos-Mendoza,Karla N. Mariscal-Reyes,Anita Deswal,John P. Cooke
标识
DOI:10.1161/circresaha.125.327427
摘要
BACKGROUND: Atherothrombosis, which underlies most acute coronary syndromes and is driven by intraplaque thrombosis, preferentially occurs in regions of disturbed blood flow (d-flow). Although LATS1/2 (large tumor suppressor kinases 1 and 2) are known regulators of endothelial mechanotransduction, the mechanisms by which d-flow connects endothelial senescence, proliferation, and intraplaque thrombosis remain poorly understood. METHODS: We investigated endothelial cell (EC)-specific roles of LATS1/2 using inducible EC-specific knockout mice in a partial carotid ligation model. Spatial multiomics of human and mouse plaques was performed using imaging mass cytometry, COMET sequential immunofluorescence, and spatial metabolomics. RESULTS: -EC-specific knockout mice survived and developed spontaneous atherothrombotic plaques with neovascularization. Spatial proteomics revealed that LATS1/2 loss induced a senescence-associated stemness phenotype driven by CD38 upregulation. Spatial metabolomics showed sulfite and taurine accumulation, indicating SUOX (sulfite oxidase) deficiency. CD38 suppressed SUOX, demonstrated a switch into the reverse mode of mitochondrial complex V, increased succinate dehydrogenase activity, and promoted ATP consumption. Despite ATP depletion, glutamate metabolism and the citric acid cycle flux increased, sustaining EC proliferation under energetic stress. This senescence-associated stemness state promoted both proliferation and senescence, leading to fragile, leaky neovessels and intraplaque thrombotic lesions. Pharmacological CD38 inhibition attenuated these phenotypes. Similar EC states were observed in human plaques. CONCLUSIONS: Loss of LATS1/2 in ECs induces a CD38-associated senescence-associated stemness-like phenotype that promotes intraplaque thrombosis through mitochondrial metabolic reprogramming, including changes consistent with reverse-mode operation of mitochondrial complex V. These findings define a mechanistic link between disturbed flow, endothelial metabolic reprogramming, and intraplaque thrombosis and hemorrhage.
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