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Molecular Characterization of Three Canine Models of Human Rare Bone Diseases: Caffey, van den Ende-Gupta, and Raine Syndromes.

机译:人稀有骨疾病的三种犬科动物模型的分子表征:Caffey,van den Ende-Gupta和Raine综合征。

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摘要

One to two percent of all children are born with a developmental disorder requiring pediatric hospital admissions. For many such syndromes, the molecular pathogenesis remains poorly characterized. Parallel developmental disorders in other species could provide complementary models for human rare diseases by uncovering new candidate genes, improving the understanding of the molecular mechanisms and opening possibilities for therapeutic trials. We performed various experiments, e.g. combined genome-wide association and next generation sequencing, to investigate the clinico-pathological features and genetic causes of three developmental syndromes in dogs, including craniomandibular osteopathy (CMO), a previously undescribed skeletal syndrome, and dental hypomineralization, for which we identified pathogenic variants in the canine SLC37A2 (truncating splicing enhancer variant), SCARF2 (truncating 2-bp deletion) and FAM20C (missense variant) genes, respectively. CMO is a clinical equivalent to an infantile cortical hyperostosis (Caffey disease), for which SLC37A2 is a new candidate gene. SLC37A2 is a poorly characterized member of a glucose-phosphate transporter family without previous disease associations. It is expressed in many tissues, including cells of the macrophage lineage, e.g. osteoclasts, and suggests a disease mechanism, in which an impaired glucose homeostasis in osteoclasts compromises their function in the developing bone, leading to hyperostosis. Mutations in SCARF2 and FAM20C have been associated with the human van den Ende-Gupta and Raine syndromes that include numerous features similar to the affected dogs. Given the growing interest in the molecular characterization and treatment of human rare diseases, our study presents three novel physiologically relevant models for further research and therapy approaches, while providing the molecular identity for the canine conditions.
机译:所有儿童中有1-2%出生时患有发育障碍,需要入院儿科。对于许多这样的综合症,分子发病机理仍然没有很好的表征。通过发现新的候选基因,增进对分子机制的理解并为治疗性试验提供可能性,其他物种的平行发育障碍可以为人类罕见疾病提供补充模型。我们进行了各种实验,例如结合全基因组关联和下一代测序,以研究狗的三种发育综合征的临床病理特征和遗传原因,包括颅下颌骨病(CMO),先前未描述的骨骼综合征和牙齿矿化作用不足,我们为此确定了致病变异犬SLC37A2(截短剪接增强子变体),SCARF2(截短2-bp缺失)和FAM20C(错义变体)基因中的基因分别存在。 CMO在临床上等同于婴儿皮质肥大症(咖啡因病),SLC37A2是其新的候选基因。 SLC37A2是葡萄糖磷酸转运蛋白家族的一个特征较弱的成员,没有以前的疾病关联。它在许多组织中表达,包括巨噬细胞谱系的细胞,例如肝细胞。破骨细胞,并提出了一种疾病机制,其中破骨细胞的葡萄糖稳态失衡会损害其在发育中的骨骼中的功能,从而导致骨质增生。 SCARF2和FAM20C中的突变已与人类范登·恩德古普塔和雷因综合征相关,其中包括与患狗相似的许多特征。鉴于人们对人类罕见疾病的分子表征和治疗的兴趣日益浓厚,我们的研究提出了三种新颖的生理相关模型,用于进一步的研究和治疗方法,同时提供了犬病条件的分子特征。

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