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Insights from a transgenic mouse model on the role of SLC26A2 in health and disease

机译:转基因小鼠模型关于SLC26A2在健康和疾病中的作用的见解

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Mutations in the SLC26A2 cause a family of recessive chondrodysplasias that includes in order of decreasing severity achondrogenesis 1B, atelosteogenesis 2, dias-trophic dysplasia and recessive multiple epiphyseal dysplasia. The gene encodes for a widely distributed sulfate/chloride antiporter of the cell membrane whose function is crucial for the uptake of inorganic sulfate that is needed for proteoglycan sulfation. To investigate the mechanisms leading to skeletal dysplasia, we generated a transgenic mouse with a mutation in Slc26a2 causing a partial loss of function of the sulfate transporter. Homozygous mutant mice were characterized by skeletal dysplasia with chondro-cytes of irregular size, delay in the formation of the secondary ossification centre and osteoporosis of long bones. Impaired sulfate uptake was demonstrated in chondrocytes, osteoblasts and fibroblasts, but proteoglycan undersulfation was detected only in cartilage. The similarity with human diastrophic dysplasia makes this mouse a model to explore pathogenetic and therapeutic aspects of SLC26A2-related disorders.
机译:SLC26A2中的突变导致一个家庭隐性软骨细胞叠,其包括减少严重性致病性1B,Etelosteogenesis 2,DiaS-营养发育不良和隐性多重骨骺发育不良。该基因对细胞膜的广泛分布的硫酸盐/氯化物炔醇的编码,其功能对于蛋白多糖硫化所需的无机硫酸盐的吸收至关重要。为了探讨导致骨骼发育不良的机制,我们在SLC26a2中产生了转基因小鼠,导致硫酸盐转运蛋白的部分丧失。纯合突变小鼠的特征在于骨骼发育不良,具有不规则的细胞细胞的软骨细胞,延迟形成次级骨化中心和长骨骨质疏松症。在软骨细胞,成骨细胞和成纤维细胞中证明了硫酸盐损伤,但仅在软骨中检测蛋白质增生术。与人律学发育不良的相似性使得这只小鼠成为探索SLC26A2相关疾病的致病和治疗方面的模型。

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