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新型 NPR2 基因突变通过内质网应激影响矮小身材中软骨细胞的功能。

Novel NPR2 Gene Mutations Affect Chondrocytes Function via ER Stress in Short Stature.

机构信息

Department of Pediatric Endocrinology and Inherited Metabolic Diseases, Children's Hospital of Fudan University, National Children's Medical Center, Shanghai 201102, China.

Department of Pediatrics, The Second Affiliated Hospital of Guangxi Medical University, Nanning 530003, China.

出版信息

Cells. 2022 Apr 8;11(8):1265. doi: 10.3390/cells11081265.

Abstract

Natriuretic peptide receptor 2 (NPR2) plays a key role in cartilage and bone morphogenesis. The gene mutations result in acromesomelic dysplasia, Maroteaux type (AMDM), short stature with nonspecific skeletal abnormalities (SNSK), and epiphyseal chondrodysplasia, Miura type (ECDM). However, the pathogenic mechanism remains unclear. In our study, we identified one de novo (R557C) and six novel variants (G602W, V970F, R767*, R363*, F857S, and Y306S) in five independent Chinese families with familial short stature. Three patients with heterozygous mutations (G602W, V970F, and R767*) were diagnosed with SNSK (height SD score ranged from -2.25 to -5.60), while another two with compound heterozygous mutations (R363* and F857S, R557C and Y306S) were diagnosed with AMDM (height SD score ranged from -3.10 to -5.35). Among three patients with heterozygous status, two patients before puberty initiation with rhGH treatment significantly improved their growth (height velocity 7.2 cm/year, 6.0 cm/year), and one patient in puberty had a poor response to the rhGH treatment (height velocity 2.5 cm/year). Seven gene variants were constructed and overexpressed in HEK293T and ATDC5 cells, and we found that ATDC5 cells with mutant gene showed decreased differentiation, as evidenced by lower expression of , , and and higher expression of . Moreover, the apoptosis rate was elevated in ATDC5 cells expressing the mutant gene. N-glycosylation modification, plasma membrane localization, and ER stress resulted from the accumulation of mutant protein in ER, as shown by the higher expression of GRP78 and p-IRE1α. Overall, our results provide a novel insight into NPR2 loss of function, which could promote chondrocyte apoptosis and repress cell differentiation through ER stress and the unfolded protein response.

摘要

利钠肽受体 2 (NPR2) 在软骨和骨骼形态发生中发挥关键作用。该基因突变导致肢-躯型短小畸形,Maroteaux 型(AMDM)、身材矮小伴非特异性骨骼异常(SNSK)和骨骺软骨发育不良,Miura 型(ECDM)。然而,发病机制尚不清楚。在我们的研究中,我们在五个独立的中国家族中发现了一个新生突变(R557C)和六个新的变体(G602W、V970F、R767*、R363*、F857S 和 Y306S)与家族性身材矮小有关。三位杂合突变患者(G602W、V970F 和 R767*)被诊断为 SNSK(身高标准差评分范围从-2.25 到-5.60),而另外两位复合杂合突变患者(R363*和 F857S、R557C 和 Y306S)被诊断为 AMDM(身高标准差评分范围从-3.10 到-5.35)。在三位杂合状态的患者中,两位在青春期开始前接受 rhGH 治疗的患者生长显著改善(身高增长率为 7.2cm/年和 6.0cm/年),而一位在青春期的患者对 rhGH 治疗反应不佳(身高增长率为 2.5cm/年)。我们构建并在 HEK293T 和 ATDC5 细胞中过表达了 7 种基因变异体,发现 ATDC5 细胞中携带突变基因的细胞分化能力下降,表现为、、的表达降低,而的表达升高。此外,表达突变基因的 ATDC5 细胞的凋亡率升高。突变蛋白在 ER 中的积累导致 N-糖基化修饰、质膜定位和 ER 应激,表现为 GRP78 和 p-IRE1α 的表达升高。总的来说,我们的研究结果提供了 NPR2 功能丧失的新见解,这可能通过 ER 应激和未折叠蛋白反应促进软骨细胞凋亡并抑制细胞分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27fc/9024524/4fc5d0c11e02/cells-11-01265-g001.jpg

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