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Mustn1 is expressed during chondrogenesis and is necessary for chondrocyte proliferation and differentiation in vitro.

机译:Mustn1在软骨形成过程中表达,是软骨细胞在体外增殖和分化所必需的。

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Mustn1 encodes a small nuclear protein expressed specifically in the musculoskeletal system that was originally identified as a strongly up-regulated gene during bone regeneration, especially in fracture callus proliferating chondrocytes. Further experiments were undertaken to investigate its expression and role during chondrogenesis. Initially, whole mount mouse in situ hybridization was carried out and revealed Mustn1 expression in areas of active chondrogenesis that included limb buds, branchial arches and tail bud. To elucidate its function, experiments were carried out to perturb Mustn1 by overexpression and silencing in the pre-chondrocytic RCJ3.1C5.18 (RCJ) cell line. In these cells, Mustn1 is normally differentially regulated, with a spike in expression 2 days after induction of differentiation. Further, Mustn1 was successfully overexpressed in multiple RCJ cell lines by approximately 2-6 fold, and reduced to approximately 32-52% in silenced cell lines as compared to parental Mustn1 levels. Overexpressing, silenced, control, and parental RCJ cell lines were assayed for proliferation and differentiation. No statistically significant changes were observed in either proliferation or proteoglycan production when Mustn1 overexpressing lines were compared to parental and control. By contrast, both proliferation rate and differentiation were significantly reduced in Mustn1 silenced cell lines. Specifically, RNAi silenced cell lines showed reductions in populations of approximately 55-75%, and also approximately 34-40% less matrix (proteoglycan) production as compared to parental and random control lines. Further, this reduction in matrix production was accompanied by significant downregulation of chondrogenic marker genes, such as Sox9, Collagen type II (Col II), and Collagen type X (Col X). Lastly, reintroduction of Mustn1 into a silenced cell line rescued this phenotype, returning proliferation rate, matrix production, and chondrogenic marker gene expression back to parental levels. Taken together these data suggest that Mustn1 is a necessary regulator of chondrocyte function.
机译:Mustn1编码一种在核骨骼系统中特异性表达的小核蛋白,该蛋白最初被鉴定为骨骼再生过程中强烈上调的基因,特别是在骨折愈伤组织增殖的软骨细胞中。进行了进一步的实验以研究其在软骨形成过程中的表达和作用。最初,进行了整装小鼠原位杂交,并揭示了Mustn1在活跃的软骨形成区域表达,包括肢芽,arch弓和尾芽。为了阐明其功能,进行了实验,通过软骨前RCJ3.1C5.18(RCJ)细胞系中的过表达和沉默来干扰Mustn1。在这些细胞中,Mustn1通常受到差异调节,诱导分化后2天表达高峰。此外,与多个母体Mustn1水平相比,Mustn1在多个RCJ细胞系中成功过表达约2-6倍,在沉默细胞系中降至约32-52%。测定过表达,沉默,对照和亲代RCJ细胞系的增殖和分化。将Mustn1过表达株系与亲本和对照进行比较,在增殖或蛋白聚糖生产方面均未观察到统计学上的显着变化。相比之下,在Mustn1沉默的细胞系中,增殖速率和分化均显着降低。具体而言,与亲本和随机对照品系相比,RNAi沉默细胞系显示出群体减少约55-75%,基质(蛋白聚糖)产量减少约34-40%。此外,基质产生的减少伴随着软骨生成标记基因的显着下调,例如Sox9,II型胶原(Col II)和X型胶原(Col X)。最后,将Mustn1重新引入沉默细胞中可挽救该表型,使增殖率,基质产生和软骨生成标记基因表达恢复至亲本水平。综合这些数据,表明Mustn1是软骨细胞功能的必要调节剂。

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