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Massive osteopetrosis caused by non-functional osteoclasts in R51Q SNX10 mutant mice

机译:在R51Q SNX10突变小鼠中的非功能性骨核华引起的巨大骨脑血管症

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摘要

The R51Q mutation in sorting nexin 10 (SNX10) was shown to cause a lethal genetic disease in humans, namely autosomal recessive osteopetrosis (ARO). We describe here the first R51Q SNX10 knock-in mouse model and show that mice homozygous for this mutation exhibit massive, early-onset, and widespread osteopetrosis. The mutant mice exhibit multiple additional characteristics of the corresponding human disease, including stunted growth, failure to thrive, missing or impacted teeth, occasional osteomyelitis, and a significantly-reduced life-span. Osteopetrosis in this model is the result of osteoclast inactivity that, in turn, is caused by absence of ruffled borders in the mutant osteoclasts and by their inability to secrete protons. These results confirm that the R51Q mutation in SNX10 is a causative factor in ARO and provide a model system for studying this rare disease.
机译:将Nexin 10(SNX10)分类中的R51Q突变显示在人类中引起致死的遗传疾病,即常染色体隐性骨质血管症(ARO)。 我们在这里描述了第一个R51Q SNX10敲击鼠标模型,并表明该突变的小鼠纯合,表现出巨大,早期发作和普遍的骨质血管症。 突变小鼠表现出相应的人类疾病的多种额外特征,包括发育不良的生长,未能茁壮成长,缺失或撞击牙齿,偶尔骨髓炎和显着降低的寿命。 该模型中的骨脑血管症是骨质骨蛋白不活跃的结果,又是由于突变骨骨细胞中的无褶皱边界引起的并且无法分泌质子。 这些结果证实SNX10中的R51Q突变是ARO的致病因素,并为研究这种罕见疾病提供模型系统。

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