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Conditional Deletion of Cytochrome P450 Reductase in Osteoprogenitor Cells Affects Long Bone and Skull Development in Mice Recapitulating Antley-Bixler Syndrome: Role of a Redox Enzyme in Development

机译:骨祖细胞中细胞色素P450还原酶的条件性删除会影响重现Antley-Bixler综合征的小鼠的长骨和头骨发育:氧化还原酶在发育中的作用

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摘要

NADPH-cytochrome P450 oxidoreductase (POR) is the primary electron donor for cytochromes P450, dehydrocholesterol reductase, heme oxygenase, and squalene monooxygenase. Human patients with specific mutations in POR exhibit severe developmental malformations including disordered steroidogenesis, sexual ambiguities and various bone defects, similar to those seen in patients with Antley-Bixler syndrome (ABS). To probe the role of POR during bone development, we generated a conditional knockout mouse (CKO) by cross breeding Por lox/lox and Dermo1 Cre mice. CKO mice were smaller than their littermate controls and exhibited significant craniofacial and long bone abnormalities. Differential staining of the CKO mice skull bases shows premature fusion of the sphenooccipital and basioccipital-exoccipital synchondroses. Class III malocclusion was noted in adult knockout mice with an unusual overgrowth of the lower incisors. Shorter long bones were observed along with a reduction in the bone volume fraction, measured by microCT, in the Por-deleted mice compared to age- and sex-matched littermate controls. Concerted up- or down-regulation of proteins in the FGF signaling pathway observed by immunohistochemistry in the tibia samples of CKO mice compared to wild type controls shows a decrease in the FGF signaling pathway. To our knowledge, this is the first report of a mouse model that recapitulates both skull and long bone defects upon Por deletion, offering an approach to study the sequelae of POR mutations. This unique model demonstrates that P450 metabolism in bone itself is potentially important for proper bone development, and that an apparent link exists between the POR and FGF signaling pathways, begging the question of how an oxidation-reduction flavoprotein affects developmental and cellular signaling processes.
机译:NADPH-细胞色素P450氧化还原酶(POR)是细胞色素P450,脱氢胆固醇还原酶,血红素加氧酶和角鲨烯单加氧酶的主要电子供体。具有POR特定突变的人类患者表现出严重的发育畸形,包括异常的类固醇生成,性模棱两可和各种骨缺损,类似于在Antley-Bixler综合征(ABS)患者中所见的情况。为了探究POR在骨骼发育中的作用,我们通过交叉繁殖Por lox / lox 和Dermo1 Cre小鼠产生了条件敲除小鼠(CKO)。 CKO小鼠比同窝小鼠小,并且显示出明显的颅面和长骨异常。 CKO小鼠颅底的差异染色显示蝶枕和枕枕-枕外软骨间的融合过早。在成年基因敲除小鼠中发现了III类错牙合,其下门牙异常生长。与年龄和性别相匹配的同窝幼仔对照相比,在删除了Por的小鼠中观察到了较短的长骨,并通过microCT测量了骨体积分数的减少。与野生型对照相比,在CKO小鼠胫骨样品中通过免疫组织化学观察到的FGF信号通路中蛋白质的协同上调或下调显示出FGF信号通路的减少。据我们所知,这是小鼠模型的首次报道,该模型概括了Por缺失后颅骨和长骨的缺损,为研究POR突变的后遗症提供了一种方法。这个独特的模型表明,骨骼本身中的P450代谢对于骨骼的正常发育潜在重要,并且POR和FGF信号传导途径之间存在明显的联系,这引发了氧化还原黄素蛋白如何影响发育和细胞信号传导过程的问题。

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