Blaise Régis, Mahjoub Mouna, Salvat Colette, Barbe Ullah, Brou Christel, Corvol Marie-Thérèse, Savouret Jean-François, Rannou François, Berenbaum Francis, Bausero Pedro
CNRS, UMR 7079, Paris Universitas Université Pierre-et-Marie-Curie Paris 6, Paris, France.
Arthritis Rheum. 2009 Feb;60(2):428-39. doi: 10.1002/art.24250.
To demonstrate the activation of the Notch signaling pathway during changes in the phenotype of chondrocytes in vitro, and to assess the influence of Notch on the production of chondrocyte markers.
Serial monolayer primary cultures of murine articular chondrocytes (MACs), as a model of chondrocyte dedifferentiation, were prepared. MACs were cultured with or without a Notch inhibitor and transfected with different Notch-expressing vectors. The Notch pathway and chondrocyte marker profiles were assessed by quantitative reverse transcription-polymerase chain reaction, immunoblotting, and immunocytochemistry.
Successive passages of MACs resulted in a loss of type II collagen and aggrecan (chondrocyte differentiation markers), an increase in type I collagen (dedifferentiation marker), an increase in Notch ligands, and augmented target gene activity. The Notch inhibitor decreased the type II collagen protein content but had no effect on Col2a1 messenger RNA, while transfection with the constitutive active forms of the Notch1 receptor led to a decrease in type II collagen in transfected cells. In assays to investigate the mechanism of type II collagen breakdown, matrix metalloproteinase 13 (MMP-13) synthesis was regulated in a Notch-dependent manner, whereas MMP-2 synthesis was unchanged.
The Notch signaling pathway is associated with decreased type II collagen production during the dedifferentiation of MACs in vitro. This may be correlated with the increase in MMP-13 production linked to activation of Notch.
证明体外软骨细胞表型变化过程中Notch信号通路的激活,并评估Notch对软骨细胞标志物产生的影响。
制备小鼠关节软骨细胞(MACs)的连续单层原代培养物,作为软骨细胞去分化的模型。MACs在有或无Notch抑制剂的情况下培养,并用不同的Notch表达载体转染。通过定量逆转录-聚合酶链反应、免疫印迹和免疫细胞化学评估Notch通路和软骨细胞标志物谱。
MACs的连续传代导致II型胶原蛋白和聚集蛋白聚糖(软骨细胞分化标志物)丢失,I型胶原蛋白(去分化标志物)增加,Notch配体增加,以及靶基因活性增强。Notch抑制剂降低了II型胶原蛋白的蛋白质含量,但对Col2a1信使核糖核酸没有影响,而用Notch1受体的组成型活性形式转染导致转染细胞中II型胶原蛋白减少。在研究II型胶原蛋白降解机制的实验中,基质金属蛋白酶13(MMP-13)的合成以Notch依赖的方式受到调节,而MMP-2的合成没有变化。
Notch信号通路与体外MACs去分化过程中II型胶原蛋白产生的减少有关。这可能与Notch激活导致的MMP-13产生增加有关。