Laboratory of Laboratory Animal Science and Medicine, Co-Department of Veterinary Medicine, Faculty of Agriculture, Iwate University, Morioka, Japan.
Department of Laboratory Animal Medicine, Research Institute, National Center for Global Health and Medicine (NCGM), Tokyo, Japan.
FEBS Open Bio. 2020 Jun;10(6):1096-1103. doi: 10.1002/2211-5463.12859. Epub 2020 Apr 23.
Desbuquois dysplasia (DD) type 1 is a rare skeletal dysplasia characterized by a short stature, round face, progressive scoliosis, and joint laxity. The causative gene has been identified as calcium-activated nucleotidase 1 (CANT1), which encodes a nucleotidase that preferentially hydrolyzes UDP to UMP and phosphate. In this study, we generated Cant1 KO mice using CRISPR/Cas9-mediated genome editing. All F0 mice possessing frameshift deletions at both Cant1 alleles exhibited a dwarf phenotype. Germline transmission of the edited allele was confirmed in an F0 heterozygous mouse, and KO mice were generated by crossing of the heterozygous breeding pairs. Cant1 KO mice exhibited skeletal defects, including short stature, thoracic kyphosis, and delta phalanx, all of which are observed in DD type 1 patients. The glycosaminoglycan (GAG) content and extracellular matrix space were reduced in the growth plate cartilage of mutants, and proliferating chondrocytes lost their typical flat shape and became round. Chondrocyte differentiation, especially terminal differentiation to hypertrophic chondrocytes, was impaired in Cant1 KO mice. These findings indicate that CANT1 is involved in the synthesis of GAG and regulation of chondrocyte differentiation in the cartilage and contribute to a better understanding of the pathogenesis of DD type 1.
Desbuquois 发育不良(DD)1 型是一种罕见的骨骼发育不良,其特征为身材矮小、圆脸、进行性脊柱侧凸和关节松弛。致病基因已被确定为钙激活核苷酸酶 1(CANT1),其编码一种优先水解 UDP 为 UMP 和磷酸盐的核苷酸酶。在这项研究中,我们使用 CRISPR/Cas9 介导的基因组编辑生成了 Cant1 KO 小鼠。所有在 Cant1 等位基因上均具有移码缺失的 F0 小鼠均表现出矮小表型。在 F0 杂合子小鼠中证实了编辑等位基因的种系传递,并且通过杂合子繁殖对的杂交生成了 KO 小鼠。Cant1 KO 小鼠表现出骨骼缺陷,包括身材矮小、胸椎后凸和 delta 指骨,所有这些都在 DD 1 型患者中观察到。生长板软骨中的糖胺聚糖(GAG)含量和细胞外基质空间减少,并且突变体中的增殖软骨细胞失去了典型的扁平形状并变成圆形。Cant1 KO 小鼠中的软骨细胞分化,特别是终末分化为肥大软骨细胞,受损。这些发现表明 CANT1 参与 GAG 的合成以及软骨中软骨细胞分化的调节,并有助于更好地理解 DD 1 型的发病机制。
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