DeNichilo Mark O, Shoubridge Alexandra J, Panagopoulos Vasilios, Liapis Vasilios, Zysk Aneta, Zinonos Irene, Hay Shelley, Atkins Gerald J, Findlay David M, Evdokiou Andreas
Breast Cancer Research Unit, Discipline of Surgery, The University of Adelaide, Adelaide, Australia.
TQEH, Basil Hetzel Research Institute, 28 Woodville Road, Woodville, SA, 5011, Australia.
Calcif Tissue Int. 2016 Mar;98(3):294-305. doi: 10.1007/s00223-015-0090-6. Epub 2015 Dec 7.
The early recruitment of inflammatory cells to sites of bone fracture and trauma is a critical determinant in successful fracture healing. Released by infiltrating inflammatory cells, myeloperoxidase (MPO) and eosinophil peroxidase (EPO) are heme-containing enzymes, whose functional involvement in bone repair has mainly been studied in the context of providing a mechanism for oxidative defense against invading microorganisms. We report here novel findings that show peroxidase enzymes have the capacity to stimulate osteoblastic cells to secrete collagen I protein and generate a mineralized extracellular matrix in vitro. Mechanistic studies conducted using cultured osteoblasts show that peroxidase enzymes stimulate collagen biosynthesis at a post-translational level in a prolyl hydroxylase-dependent manner, which does not require ascorbic acid. Our studies demonstrate that osteoblasts rapidly bind and internalize both MPO and EPO, and the catalytic activity of these peroxidase enzymes is essential to support collagen I biosynthesis and subsequent release of collagen by osteoblasts. We show that EPO is capable of regulating osteogenic gene expression and matrix mineralization in culture, suggesting that peroxidase enzymes may play an important role not only in normal bone repair, but also in the progression of pathological states where infiltrating inflammatory cells are known to deposit peroxidases.
炎症细胞早期募集至骨折和创伤部位是骨折成功愈合的关键决定因素。髓过氧化物酶(MPO)和嗜酸性粒细胞过氧化物酶(EPO)由浸润的炎症细胞释放,是含血红素的酶,其在骨修复中的功能作用主要是在为抵御入侵微生物提供氧化防御机制的背景下进行研究的。我们在此报告新的发现,即过氧化物酶具有刺激成骨细胞分泌I型胶原蛋白并在体外生成矿化细胞外基质的能力。使用培养的成骨细胞进行的机制研究表明,过氧化物酶以脯氨酰羟化酶依赖性方式在翻译后水平刺激胶原蛋白生物合成,这不需要抗坏血酸。我们的研究表明,成骨细胞能迅速结合并内化MPO和EPO,这些过氧化物酶的催化活性对于支持成骨细胞合成I型胶原蛋白及随后释放胶原蛋白至关重要。我们表明EPO能够调节培养中的成骨基因表达和基质矿化,这表明过氧化物酶不仅可能在正常骨修复中发挥重要作用,而且在已知浸润性炎症细胞会沉积过氧化物酶的病理状态进展中也发挥重要作用。