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Biomineral Precursor Formation Is Initiated by Transporting Calcium and Phosphorus Clusters from the Endoplasmic Reticulum to Mitochondria

机译:通过将钙和磷团簇从内质网运输到线粒体来启动生物矿物前体的形成。

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摘要

Mineral granules in the mitochondria of bone‐forming cells are thought to be the origin of biomineral precursors, which are transported to extracellular matrices to initiate cell‐mediated biomineralization. However, no evidence has revealed how mitochondrial granules form. This study indicates that mitochondrial granules are initiated by transporting calcium and phosphorus clusters from the endoplasmic reticulum (ER) to mitochondria based on detailed observations of the continuous process of mouse parietal bone development as well as in vitro biomineralization in bone‐forming cells. Nanosized biomineral precursors (≈30 nm in diameter), which originate from mitochondrial granules, initiate intrafibrillar mineralization of collagen as early as embryonic day 14.5. Both in vivo and in vitro studies further reveal that formation of mitochondrial granules is induced by the ER. Elevated levels of intracellular calcium or phosphate ions, which can be induced by treatment with ionomycin and black phosphorus, respectively, accelerate formation of the calcium and phosphorus clusters on ER membranes and ultimately promote biomineralization. These findings provide a novel insight into biomineralization and bone formation.
机译:骨形成细胞线粒体中的矿物质颗粒被认为是生物矿物质前体的起源,其被转运到细胞外基质以启动细胞介导的生物矿化作用。但是,没有证据显示线粒体颗粒是如何形成的。这项研究表明,线粒体颗粒是通过将钙和磷簇从内质网(ER)转运到线粒体而引发的,这是基于对小鼠顶叶骨发育连续过程以及成骨细胞体外生物矿化的详细观察得出的。源自线粒体颗粒的纳米级生物矿物前体(直径约30 nm)最早在胚胎第14.5天就开始胶原蛋白的纤维内矿化。体内和体外研究均进一步揭示了线粒体颗粒的形成是由ER诱导的。分别用离子霉素和黑磷处理可以诱导细胞内钙或磷酸根离子水平升高,从而加速了ER膜上钙和磷簇的形成,并最终促进了生物矿化作用。这些发现为生物矿化和骨骼形成提供了新颖的见解。

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