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钙调节血管平滑肌细胞来源的基质小泡的关键成分,以增强矿化。

Calcium regulates key components of vascular smooth muscle cell-derived matrix vesicles to enhance mineralization.

机构信息

British Heart Foundation Centre, Cardiovascular Division, Kings College London, London, United Kingdom.

出版信息

Circ Res. 2011 Jun 24;109(1):e1-12. doi: 10.1161/CIRCRESAHA.110.238808. Epub 2011 May 12.

Abstract

RATIONALE

Matrix vesicles (MVs) are specialized structures that initiate mineral nucleation during physiological skeletogenesis. Similar vesicular structures are deposited at sites of pathological vascular calcification, and studies in vitro have shown that elevated levels of extracellular calcium (Ca) can induce mineralization of vascular smooth muscle cell (VSMC)-derived MVs.

OBJECTIVES

To determine the mechanisms that promote mineralization of VSMC-MVs in response to calcium stress.

METHODS AND RESULTS

Transmission electron microscopy showed that both nonmineralized and mineralized MVs were abundantly deposited in the extracellular matrix at sites of calcification. Using cultured human VSMCs, we showed that MV mineralization is calcium dependent and can be inhibited by BAPTA-AM. MVs released by VSMCs in response to extracellular calcium lacked the key mineralization inhibitor matrix Gla protein and showed enhanced matrix metalloproteinase-2 activity. Proteomics revealed that VSMC-MVs share similarities with chondrocyte-derived MVs, including enrichment of the calcium-binding proteins annexins (Anx) A2, A5, and A6. Biotin cross-linking and flow cytometry demonstrated that in response to calcium, AnxA6 shuttled to the plasma membrane and was selectively enriched in MVs. AnxA6 was also abundant at sites of vascular calcification in vivo, and small interfering RNA depletion of AnxA6 reduced VSMC mineralization. Flow cytometry showed that in addition to AnxA6, calcium induced phosphatidylserine exposure on the MV surface, thus providing hydroxyapatite nucleation sites.

CONCLUSIONS

In contrast to the coordinated signaling response observed in chondrocyte MVs, mineralization of VSMC-MVs is a pathological response to disturbed intracellular calcium homeostasis that leads to inhibitor depletion and the formation of AnxA6/phosphatidylserine nucleation complexes.

摘要

理由

基质小泡(MVs)是在生理骨骼发生过程中启动矿化核形成的特殊结构。类似的囊泡结构沉积在病理性血管钙化部位,体外研究表明,细胞外钙(Ca)水平升高可诱导血管平滑肌细胞(VSMC)衍生的 MV 矿化。

目的

确定促进 VSMC-MV 对钙应激矿化的机制。

方法和结果

透射电子显微镜显示,在钙化部位的细胞外基质中,大量沉积了未矿化和矿化的 MV。使用培养的人 VSMC,我们表明 MV 矿化是钙依赖性的,可以被 BAPTA-AM 抑制。VSMC 响应细胞外钙释放的 MV 缺乏关键的矿化抑制剂基质 Gla 蛋白,并显示增强的基质金属蛋白酶-2 活性。蛋白质组学显示,VSMC-MV 与软骨细胞衍生的 MV 具有相似性,包括富含钙结合蛋白 Annexin(Anx)A2、A5 和 A6。生物素交联和流式细胞术表明,在钙的作用下,AnxA6 易位到质膜,并在 MV 中选择性富集。AnxA6 在体内血管钙化部位也很丰富,用小干扰 RNA 耗尽 AnxA6 可减少 VSMC 矿化。流式细胞术显示,除了 AnxA6,钙还诱导 MV 表面的磷脂酰丝氨酸暴露,从而提供羟基磷灰石成核位点。

结论

与软骨细胞 MV 中观察到的协调信号反应相反,VSMC-MV 的矿化是对细胞内钙稳态紊乱的病理性反应,导致抑制剂耗竭和形成 AnxA6/磷脂酰丝氨酸成核复合物。

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