首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Abnormal Lysosomal Positioning and Small Extracellular Vesicle Secretion in Arterial Stiffening and Calcification of Mice Lacking Mucolipin 1 Gene
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Abnormal Lysosomal Positioning and Small Extracellular Vesicle Secretion in Arterial Stiffening and Calcification of Mice Lacking Mucolipin 1 Gene

机译:异常溶酶体定位和小细胞外囊泡分泌在缺少粘膜1基因的小鼠动脉加固和钙化中

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摘要

Recent studies have shown that arterial medial calcification is mediated by abnormal release of exosomes/small extracellular vesicles from vascular smooth muscle cells (VSMCs) and that small extracellular vesicle (sEV) secretion from cells is associated with lysosome activity. The present study was designed to investigate whether lysosomal expression of mucolipin-1, a product of the mouse Mcoln1 gene, contributes to lysosomal positioning and sEV secretion, thereby leading to arterial medial calcification (AMC) and stiffening. In Mcoln1−/− mice, we found that a high dose of vitamin D (Vit D; 500,000 IU/kg/day) resulted in increased AMC compared to their wild-type littermates, which was accompanied by significant downregulation of SM22-α and upregulation of RUNX2 and osteopontin in the arterial media, indicating a phenotypic switch to osteogenic. It was also shown that significantly decreased co-localization of lysosome marker (Lamp-1) with lysosome coupling marker (Rab 7 and ALG-2) in the aortic wall of Mcoln1−/− mice as compared to their wild-type littermates. Besides, Mcoln1−/− mice showed significant increase in the expression of exosome/ sEV markers, CD63, and annexin-II (AnX2) in the arterial medial wall, accompanied by significantly reduced co-localization of lysosome marker (Lamp-1) with multivesicular body (MVB) marker (VPS16), suggesting a reduction of the lysosome-MVB interactions. In the plasma of Mcoln1−/− mice, the number of sEVs significantly increased as compared to the wild-type littermates. Functionally, pulse wave velocity (PWV), an arterial stiffening indicator, was found significantly increased in Mcoln1−/− mice, and Vit D treatment further enhanced such stiffening. All these data indicate that the Mcoln1 gene deletion in mice leads to abnormal lysosome positioning and increased sEV secretion, which may contribute to the arterial stiffness during the development of AMC.
机译:最近的研究表明,动脉内侧钙化是通过血管平滑肌细胞(VSMC)的外虫/小细胞内囊泡的异常释放介导的,并且小细胞外囊泡(SEV)与细胞分泌与溶酶体活性有关。本研究设计用于研究粘液素-1的溶酶体表达是否有助于溶酶体定位和SEV分泌,从而导致动脉内侧钙化(AMC)和加强。在MColn1 - / - 小鼠中,我们发现高剂量的维生素D(VIT D; 500,000 IU / kg /天)导致AMC增加,与其野生型凋落物相比,伴随着SM22-α的显着下调和动脉介质中runx2和骨桥蛋白的上调,表明表型切换到骨质发生。还表明,与Mcoln1 - / - 小鼠的主动脉膜中的裂解物偶联标记(RAB 7和ALG-2)相比,与其野生型凋落物相比,有显着降低了溶酶体标记物(灯-1)的共定位。此外,MColn1 - / - 小鼠表现出动脉内侧壁的外出组/ SEV标记,CD63和Annexin-II(ANXEXIN-II(ANX2)的表达显着增加,伴随着显着减少了溶酶体标记物(灯-1)的共定位多物体(MVB)标记(VPS16),表明溶酶体-MVB相互作用的降低。在MColn1 - / - 小鼠的血浆中,与野生型凋落物相比,SED的数量显着增加。在Mcoln1 - / - 小鼠中发现脉搏波速度(PWV),动脉升降指示剂,在MICOLN1 - / - 小鼠中显着增加,并且vit D处理进一步增强了这种加强。所有这些数据表明小鼠中的MColN1基因缺失导致异常的溶酶体定位和增加的SEC分泌,这可能导致AMC发育过程中的动脉僵硬度。

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