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丝氨酸蛋白酶抑制剂 A3 是软骨分化的标志物,对于早期软骨形成过程中细胞外基质基因的表达至关重要。

SERPINA3 is a marker of cartilage differentiation and is essential for the expression of extracellular matrix genes during early chondrogenesis.

机构信息

Skeletal Research Group, Biosciences Institute, Newcastle University, Central Parkway, Newcastle upon Tyne NE1 3BZ, UK.

Institute of Life Course and Medical Sciences, Faculty of Health and Life Sciences, University of Liverpool, William Henry Duncan Building, 6 West Derby St, Liverpool L7 8TX, UK.

出版信息

Matrix Biol. 2024 Nov;133:33-42. doi: 10.1016/j.matbio.2024.07.004. Epub 2024 Aug 2.

Abstract

Serine proteinase inhibitors (serpins) are a family of structurally similar proteins which regulate many diverse biological processes from blood coagulation to extracellular matrix (ECM) remodelling. Chondrogenesis involves the condensation and differentiation of mesenchymal stem cells (MSCs) into chondrocytes which occurs during early development. Here, and for the first time, we demonstrate that one serpin, SERPINA3 (gene name SERPINA3, protein also known as alpha-1 antichymotrypsin), plays a critical role in chondrogenic differentiation. We observed that SERPINA3 expression was markedly induced at early time points during in vitro chondrogenesis. We examined the expression of SERPINA3 in human cartilage development, identifying significant enrichment of SERPINA3 in developing cartilage compared to total limb, which correlated with well-described markers of cartilage differentiation. When SERPINA3 was silenced using siRNA, cartilage pellets were smaller and contained lower proteoglycan as determined by dimethyl methylene blue assay (DMMB) and safranin-O staining. Consistent with this, RNA sequencing revealed significant downregulation of genes associated with cartilage ECM formation perturbing chondrogenesis. Conversely, SERPINA3 silencing had a negligible effect on the gene expression profile during osteogenesis suggesting the role of SERPINA3 is specific to chondrocyte differentiation. The global effect on cartilage formation led us to investigate the effect of SERPINA3 silencing on the master transcriptional regulator of chondrogenesis, SOX9. Indeed, we observed that SOX9 protein levels were markedly reduced at early time points suggesting a role for SERPINA3 in regulating SOX9 expression and activity. In summary, our data support a non-redundant role for SERPINA3 in enabling chondrogenesis via regulation of SOX9 levels.

摘要

丝氨酸蛋白酶抑制剂(serpins)是一类结构相似的蛋白质家族,它们调节着从血液凝固到细胞外基质(ECM)重塑等多种不同的生物学过程。软骨发生涉及间充质干细胞(MSCs)的凝聚和分化为软骨细胞,这发生在早期发育过程中。在这里,我们首次证明了一种丝氨酸蛋白酶抑制剂,SERPINA3(基因名称 SERPINA3,蛋白也称为α-1 抗胰蛋白酶),在软骨形成分化中起着关键作用。我们观察到 SERPINA3 的表达在体外软骨发生的早期时间点明显上调。我们研究了 SERPINA3 在人类软骨发育中的表达,发现 SERPINA3 在发育中的软骨中明显富集,与软骨分化的典型标志物相关。当使用 siRNA 沉默 SERPINA3 时,软骨球状体更小,二甲基甲脒蓝测定法(DMMB)和番红-O 染色法测定的蛋白聚糖含量也更低。与此一致,RNA 测序显示与软骨 ECM 形成相关的基因显著下调,扰乱了软骨发生。相反,SERPINA3 沉默对成骨过程中的基因表达谱几乎没有影响,这表明 SERPINA3 的作用是特异性的,仅针对软骨细胞分化。SERPINA3 对软骨形成的整体影响促使我们研究 SERPINA3 沉默对软骨发生的主转录调节因子 SOX9 的影响。事实上,我们观察到 SOX9 蛋白水平在早期时间点明显降低,这表明 SERPINA3 在调节 SOX9 表达和活性方面起着作用。总之,我们的数据支持 SERPINA3 通过调节 SOX9 水平在软骨发生中发挥非冗余作用。

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