粒体自噬
细胞生物学
生物矿化
细胞内
化学
线粒体
细胞外
胞浆
无定形磷酸钙
胞吐
生物化学
生物
自噬
磷酸盐
细胞凋亡
分泌物
古生物学
酶
作者
Dandan Pei,Jinlong Sun,Chunhui Zhu,Fucong Tian,Kai Jiao,Matthew Anderson,Cynthia Kar Yung Yiu,Cui Huang,Changxiong Jin,Brian E. Bergeron,Jihua Chen,Franklin R. Tay,Li‐na Niu
标识
DOI:10.1002/advs.201800873
摘要
Abstract Biomineralization in vertebrates is initiated via amorphous calcium phosphate (ACP) precursors. These precursors infiltrate the extracellular collagen matrix where they undergo phase transformation into intrafibrillar carbonated apatite. Although it is well established that ACP precursors are released from intracellular vesicles through exocytosis, an unsolved enigma in this cell‐mediated mineralization process is how ACP precursors, initially produced in the mitochondria, are translocated to the intracellular vesicles. The present study proposes that mitophagy provides the mechanism for transfer of ACP precursors from the dysfunctioned mitochondria to autophagosomes, which, upon fusion with lysosomes, become autolysosomes where the mitochondrial ACP precursors coalesce to form larger intravesicular granules, prior to their release into the extracellular matrix. Apart from endowing the mitochondria with the function of ACP delivery through mitophagy, the present results indicate that mitophagy, triggered upon intramitochondrial ACP accumulation in osteogenic lineage‐committed mesenchymal stem cells, participates in the biomineralization process through the BMP/Smad signaling pathway.
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