Zhang Wei, Green Colin, Stott N Susan
Department of Surgery, Faculty of Medicine and Health Sciences, University of Auckland, Auckland, New Zealand.
J Cell Physiol. 2002 Nov;193(2):233-43. doi: 10.1002/jcp.10168.
Undifferentiated mesenchymal cells in the limb bud integrate a complex array of local and systemic signals during the process of cell condensation and chondrogenic differentiation. To address the relationship between bone morphogenetic protein (BMP) signaling and gap junction-mediated intercellular communication, we examined the effects of BMP-2 and a gap junction blocker 18 alpha glycyrrhetinic acid (18alpha-GCA) on mesenchymal cell condensation and chondrogenic differentiation in an in vitro chondrogenic model. We find that connexin43 protein expression significantly correlates with early mesenchymal cellular condensation and chondrogenesis in high-density limb bud cell culture. The level of connexin43 mRNA is maximally upregulated 48 h after treatment with recombinant human BMP-2 with corresponding changes in protein expression. Inhibition of gap junction-mediated intercellular communication with 2.5 microM 18alpha-GCA decreases chondrogenic differentiation by 50% at 96 h without effects on housekeeping genes. Exposure to 18alpha-GCA for only the first 24-48 h after plating does not affect condensation or later chondrogenic differentiation suggesting that gap junction-mediated intercellular communication is not critical for the initial phase of condensation but is important for the onset of differentiation. 18alpha-GCA can also block the chondrogenic effects of BMP-2 without effects on cell number or connexin43 expression. These observations demonstrate 18alpha-GCA-sensitive regulation of intercellular communication in limb mesenchymal cells undergoing chondrogenic differentiation and suggest that BMP-2 induced chondrogenic differentiation may be mediated in part through the modulation of connexin43 expression and gap junction-mediated intercellular communication.
肢芽中的未分化间充质细胞在细胞凝聚和软骨形成分化过程中整合了一系列复杂的局部和全身信号。为了研究骨形态发生蛋白(BMP)信号与间隙连接介导的细胞间通讯之间的关系,我们在体外软骨形成模型中检测了BMP-2和间隙连接阻滞剂18α甘草次酸(18α-GCA)对间充质细胞凝聚和软骨形成分化的影响。我们发现,在高密度肢芽细胞培养中,连接蛋白43的蛋白表达与早期间充质细胞凝聚和软骨形成显著相关。用重组人BMP-2处理48小时后,连接蛋白43的mRNA水平上调至最高,同时蛋白表达也发生相应变化。用2.5 microM 18α-GCA抑制间隙连接介导的细胞间通讯,在96小时时可使软骨形成分化降低50%,而对管家基因无影响。仅在接种后的最初24 - 48小时暴露于18α-GCA并不影响凝聚或后期的软骨形成分化,这表明间隙连接介导的细胞间通讯对凝聚的初始阶段并不关键,但对分化的开始很重要。18α-GCA还可以阻断BMP-2的软骨形成作用,而不影响细胞数量或连接蛋白43的表达。这些观察结果表明,在经历软骨形成分化的肢体间充质细胞中,细胞间通讯受18α-GCA敏感调节,并且提示BMP-2诱导的软骨形成分化可能部分通过连接蛋白43表达的调节和间隙连接介导的细胞间通讯来介导。