From the Center for Osteoporosis and Metabolic Bone Diseases, Division of Endocrinology and Metabolism, Department of Internal Medicine, University of Arkansas for Medical Sciences and the Central Arkansas Veterans Healthcare System, Little Rock, Arkansas 72205.
From the Center for Osteoporosis and Metabolic Bone Diseases, Division of Endocrinology and Metabolism, Department of Internal Medicine, University of Arkansas for Medical Sciences and the Central Arkansas Veterans Healthcare System, Little Rock, Arkansas 72205.
J Biol Chem. 2013 Oct 18;288(42):30064-30074. doi: 10.1074/jbc.M113.478750. Epub 2013 Aug 29.
Iron is essential for osteoclast differentiation, and iron overload in a variety of hematologic diseases is associated with excessive bone resorption. Iron uptake by osteoclast precursors via the transferrin cycle increases mitochondrial biogenesis, reactive oxygen species production, and activation of cAMP response element-binding protein, a critical transcription factor downstream of receptor activator of NF-κB-ligand-induced calcium signaling. These changes are required for the differentiation of osteoclast precursors to mature bone-resorbing osteoclasts. However, the molecular mechanisms regulating cellular iron metabolism in osteoclasts remain largely unknown. In this report, we provide evidence that Steap4, a member of the six-transmembrane epithelial antigen of prostate (Steap) family proteins, is an endosomal ferrireductase with a critical role in cellular iron utilization in osteoclasts. Specifically, we show that Steap4 is the only Steap family protein that is up-regulated during osteoclast differentiation. Knocking down Steap4 expression in vitro by lentivirus-mediated short hairpin RNAs inhibits osteoclast formation and decreases cellular ferrous iron, reactive oxygen species, and the activation of cAMP response element-binding protein. These results demonstrate that Steap4 is a critical enzyme for cellular iron uptake and utilization in osteoclasts and, thus, indispensable for osteoclast development and function.
铁对于破骨细胞的分化是必不可少的,而各种血液疾病中的铁过载与过度的骨吸收有关。破骨细胞前体通过转铁蛋白循环摄取铁会增加线粒体生物发生、活性氧的产生以及 cAMP 反应元件结合蛋白的激活,cAMP 反应元件结合蛋白是核因子-κB 配体诱导的钙信号下游的关键转录因子。这些变化是破骨细胞前体分化为成熟的骨吸收破骨细胞所必需的。然而,调节破骨细胞中细胞铁代谢的分子机制在很大程度上仍然未知。在本报告中,我们提供了证据表明,六跨膜上皮抗原的前列腺(Steap)家族蛋白的成员 Steap4 是一种内体铁还原酶,在破骨细胞中的细胞铁利用中起关键作用。具体而言,我们表明 Steap4 是在破骨细胞分化过程中唯一上调的 Steap 家族蛋白。通过慢病毒介导的短发夹 RNA 在体外敲低 Steap4 表达会抑制破骨细胞的形成,并降低细胞亚铁、活性氧和 cAMP 反应元件结合蛋白的激活。这些结果表明 Steap4 是破骨细胞中细胞铁摄取和利用的关键酶,因此对于破骨细胞的发育和功能是不可或缺的。