Aga2OI 小鼠 Sox9 和 FGF 信号转导基因表达的改变会对线性生长产生负面影响。

Altered Sox9 and FGF signaling gene expression in Aga2 OI mice negatively affects linear growth.

机构信息

Department of Orthopaedic Surgery, David Geffen School of Medicine at University of California, Los Angeles, Los Angeles, California, USA.

Department of Molecular Cell and Developmental Biology, University of California, Los Angeles, Los Angeles, California, USA.

出版信息

JCI Insight. 2023 Nov 8;8(21):e171984. doi: 10.1172/jci.insight.171984.

Abstract

Osteogenesis imperfecta (OI), or brittle bone disease, is a disorder characterized by bone fragility and increased fracture incidence. All forms of OI also feature short stature, implying an effect on endochondral ossification. Using the Aga2+/- mouse, which has a mutation in type I collagen, we show an affected growth plate primarily due to a shortened proliferative zone. We used single-cell RNA-Seq analysis of tibial and femoral growth plate tissues to understand transcriptional consequences on growth plate cell types. We show that perichondrial cells, which express abundant type I procollagen, and growth plate chondrocytes, which were found to express low amounts of type I procollagen, had ER stress and dysregulation of the same unfolded protein response pathway as previously demonstrated in osteoblasts. Aga2+/- proliferating chondrocytes showed increased FGF and MAPK signaling, findings consistent with accelerated differentiation. There was also increased Sox9 expression throughout the growth plate, which is expected to accelerate early chondrocyte differentiation but reduce late hypertrophic differentiation. These data reveal that mutant type I collagen expression in OI has an impact on the cartilage growth plate. These effects on endochondral ossification indicate that OI is a biologically complex phenotype going beyond its known impacts on bone to negatively affect linear growth.

摘要

成骨不全症(OI),又称脆骨病,是一种以骨骼脆弱和骨折发生率增加为特征的疾病。所有类型的 OI 还表现为身材矮小,这表明其对软骨内成骨有影响。我们使用 Aga2+/- 小鼠,其存在 I 型胶原突变,发现其生长板受到影响,主要是由于增殖区缩短。我们对胫骨和股骨生长板组织进行了单细胞 RNA-Seq 分析,以了解生长板细胞类型的转录后果。我们发现,表达丰富的 I 型前胶原的软骨膜细胞和被发现表达低水平 I 型前胶原的生长板软骨细胞都存在内质网应激和未折叠蛋白反应途径的失调,这与之前在成骨细胞中观察到的情况一致。Aga2+/- 增殖软骨细胞显示出 FGF 和 MAPK 信号的增加,这与加速分化一致。整个生长板中 Sox9 的表达也增加,这预计会加速早期软骨细胞分化,但减少晚期肥大分化。这些数据表明,OI 中突变型 I 型胶原的表达对软骨生长板有影响。这些对软骨内成骨的影响表明,OI 是一种生物学上复杂的表型,其影响超出了已知的骨骼影响,对线性生长产生负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a274/10721276/31cf889f8ef3/jciinsight-8-171984-g135.jpg

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