Starkman Bela G, Cravero John D, Delcarlo Marcello, Loeser Richard F
Department of Biochemistry, Rush Medical College of Rush University Medical Center, Chicago, IL 60612, USA.
Biochem J. 2005 Aug 1;389(Pt 3):723-9. doi: 10.1042/BJ20041636.
The IGF-I (insulin-like growth factor-I) signalling pathway responsible for regulation of proteoglycan synthesis in chondrocytes has not been defined and is the focus of the present study. Chondrocytes isolated from normal human articular cartilage were stimulated with IGF-I in monolayer culture or in suspension in alginate. IGF-I activated members of both the PI3K (phosphoinositide 3-kinase) pathway and the ERK (extracellular-signal-regulated kinase)/MAPK (mitogen-activated protein kinase) pathway. The PI3K inhibitors LY294002 and wortmannin blocked IGF-I-stimulated Akt phosphorylation without blocking ERK phosphorylation and this was associated with complete inhibition of proteoglycan synthesis. A decrease in IGF-I-stimulated proteoglycan synthesis was also observed upon inhibition of mTOR (mammalian target of rapamycin) and p70S6 kinase, both of which are downstream of Akt. The MEK (MAPK/ERK kinase) inhibitors PD98059 and U0126 blocked IGF-I-stimulated ERK phosphorylation but did not block the phosphorylation of Akt and did not decrease proteoglycan synthesis. Instead, in alginate- cultured chondrocytes, the MEK inhibitors increased IGF-I-stimulated proteoglycan synthesis when compared with cells treated with IGF-I alone. This is the first study to demonstrate that IGF-I stimulation of the PI3K signalling pathway is responsible for the ability of IGF-I to increase proteoglycan synthesis. Although IGF-I also activates the ERK/MAPK pathway, ERK activity is not required for proteoglycan synthesis and may serve as a negative regulator.
负责调节软骨细胞中蛋白聚糖合成的胰岛素样生长因子-I(IGF-I)信号通路尚未明确,是本研究的重点。从正常人关节软骨分离出的软骨细胞,在单层培养中或在藻酸盐悬浮液中用IGF-I刺激。IGF-I激活了磷脂酰肌醇3激酶(PI3K)通路和细胞外信号调节激酶(ERK)/丝裂原活化蛋白激酶(MAPK)通路的成员。PI3K抑制剂LY294002和渥曼青霉素可阻断IGF-I刺激的Akt磷酸化,而不阻断ERK磷酸化,这与蛋白聚糖合成的完全抑制相关。在抑制雷帕霉素靶蛋白(mTOR)和p70S6激酶时,也观察到IGF-I刺激的蛋白聚糖合成减少,这两者均为Akt的下游分子。MEK(MAPK/ERK激酶)抑制剂PD98059和U0126可阻断IGF-I刺激的ERK磷酸化,但不阻断Akt的磷酸化,也不减少蛋白聚糖合成。相反,在藻酸盐培养的软骨细胞中,与单独用IGF-I处理的细胞相比,MEK抑制剂增加了IGF-I刺激的蛋白聚糖合成。这是第一项证明IGF-I对PI3K信号通路的刺激作用是其增加蛋白聚糖合成能力的原因的研究。尽管IGF-I也激活ERK/MAPK通路,但蛋白聚糖合成不需要ERK活性,ERK活性可能起负调节作用。