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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Pharmacological sequestration of intracellular cholesterol in late endosomes disrupts ruffled border formation in osteoclasts.
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Pharmacological sequestration of intracellular cholesterol in late endosomes disrupts ruffled border formation in osteoclasts.

机译:晚期内体中细胞内胆固醇的药理隔离破坏了破骨细胞中皱纹边缘的形成。

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We showed that the ruffled border lacks a late endosomal lipid, LBPA, but is enriched incholesterol. A hydrophobic amine, U18666A, causes cholesterol accumulation in LBPA+ late endosomes in osteoclasts. Specific targeting of cathepsin K and the vacuolar H+-ATPase at the ruffled border is blocked by U18666A. A membrane trafficking pathway from baso-lateral membrane toward the resorptive organelle is also arrested by the inhibitor. These results indicate cholesterol homeostasis regulates late endosomal/lysosomal trafficking and polarized secretion in resorbing osteoclasts. INTRODUCTION: Protons and acidic proteases are secreted into the resorption lacuna through the ruffled border to solubilize bone mineral and digest the organic bone matrix, respectively. Whereas evidence suggests this event occurs through a vesicular trafficking mechanism, this issue remains unresolved. MATERIALS AND METHODS: The distribution of lysobisphosphatidic acid (LBPA) and cholesterol in resorbing osteoclasts was examined by laser scanning confocal microscopy. The effects of U18666A on ruffled border formation were observed by electron microscopy. RESULTS AND CONCLUSIONS: The ruffled border does not contain LBPA but is enriched in cholesterol. We found a hydrophobic amine, U18666A, which blocks the efflux of cholesterol from late endosomes in other cells, causes cholesterol accumulation in LBPA-containing late endosomes in osteoclasts, leading to diminished cholesterol at the ruffled border. Reflecting the U18666A-mediated inhibition of late endosome/lysosome transport, the resorptive membrane is disrupted and contains a paucity of cathepsin K and the vacuolar H+-ATPase. These results indicate that the ruffled border is formed by the fusion of lysosomes with the plasma membrane in osteoclasts through a process that is cholesterol regulated.
机译:我们表明,褶皱的边界缺少后期的内体脂质LBPA,但富含胆固醇。疏水性胺U18666A会导致破骨细胞中LBPA +晚期内体中的胆固醇蓄积。 U18666A阻止组织蛋白酶K和液泡H + -ATPase在皱边的特异性靶向。从基底外侧膜向吸收性细胞器的膜运输途径也被抑制剂阻止。这些结果表明胆固醇稳态调节了内体/溶酶体的后期运输和破骨细胞吸收中的极化分泌。简介:质子和酸性蛋白酶通过褶皱的边界分泌到吸收腔中,分别溶解骨矿物质和消化有机骨基质。尽管有证据表明该事件是通过水泡运输机制发生的,但这一问题仍未解决。材料与方法:通过激光扫描共聚焦显微镜检查了溶血双磷脂酸(LBPA)和胆固醇在吸收破骨细胞中的分布。通过电子显微镜观察到U18666A对褶皱边界形成的影响。结果与结论:皱纹的边框不含LBPA,但富含胆固醇。我们发现了一种疏水性胺U18666A,它阻止胆固醇从其他细胞中的晚期内体流出,导致胆固醇在破骨细胞中的含LBPA的晚期内体中积累,从而导致皱纹边缘的胆固醇减少。反映了U18666A介导的对内体/溶酶体晚期转运的抑制,该吸收膜被破坏,并含有少量的组织蛋白酶K和液泡H + -ATPase。这些结果表明,皱纹状边界是由溶酶体与破骨细胞中质膜通过胆固醇调节的过程融合而形成的。

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