Hiscock D R, Caterson B, Flannery C R
Connective Tissue Biology Laboratories, Cardiff School of Biosciences, Cardiff University, Wales, UK.
Osteoarthritis Cartilage. 2000 Mar;8(2):120-6. doi: 10.1053/joca.1999.0280.
To investigate the mRNA expression profiles of three mammalian hyaluronan synthases (HAS1, HAS2 and HAS3) in chondrocytes from normal (undiseased) animal cartilage and osteoarthritic human cartilage maintained in experimental culture systems and exposed to catabolic or anabolic stimuli provided by cytokines, growth factors and retinoic acid.
Chondrocytes isolated from normal bovine, porcine or from osteoarthritic human cartilage were cultured as monolayers or embedded in agarose. Cultures were maintained for 3-5 days in the presence or absence of catabolic stimuli (IL-1, TNF-alpha or retinoic acid) or anabolic stimuli (TGF-beta or IGF-1) followed by extraction of RNA and analysis of HAS mRNA expression by RT-PCR.
Whereas mRNA for HAS1 was not detected in any sample, the mRNAs for HAS2 and HAS3 were expressed in human, bovine and porcine chondrocytes. HAS2 mRNA was present in chondrocytes from all cartilages and under all culture conditions, whereas HAS3 did not show such constitutive expression. In agarose cultures of bovine and porcine chondrocytes HAS2 mRNA was present in control, IL-1 and retinoic acid treated cultures, whereas HAS3 mRNA was only detected in IL-1 stimulated cultures. Mature bovine chondrocytes cultured in monolayers expressed mRNAs for both HAS2 and HAS3 in the presence of IL-1, TNF-alpha, TGF-beta and IGF-1, however immature bovine chondrocytes in monolayer cultures displayed virtually no HAS3 mRNA expression in the presence of these cytokines and growth factors. HAS2 and HAS3 mRNAs were also expressed by bovine chondrocytes isolated from either the superficial or deep zone of articular cartilage, and by human chondrocytes cultured either in the absence or presence of IL-1 and retinoic acid.
Our data indicate that HAS2 and HAS3 (but not HAS1) mRNAs are expressed in several mammalian cartilages. Chondrocyte HAS2 mRNA appears to be constitutively expressed while chondrocyte HAS3 mRNA expression can be differentially regulated in an age-dependent fashion, and may be affected by local and/or systemic catabolic or anabolic stimuli provided by cytokines or growth factors.
研究三种哺乳动物透明质酸合成酶(HAS1、HAS2和HAS3)在正常(未患病)动物软骨和骨关节炎患者软骨的软骨细胞中的mRNA表达谱,这些软骨细胞在实验培养系统中培养,并暴露于细胞因子、生长因子和视黄酸提供的分解代谢或合成代谢刺激下。
从正常牛、猪或骨关节炎患者软骨中分离出的软骨细胞培养成单层或包埋在琼脂糖中。在有或没有分解代谢刺激(白细胞介素-1、肿瘤坏死因子-α或视黄酸)或合成代谢刺激(转化生长因子-β或胰岛素样生长因子-1)的情况下,将培养物维持3-5天,然后提取RNA并通过逆转录-聚合酶链反应分析HAS mRNA表达。
虽然在任何样品中均未检测到HAS1的mRNA,但HAS2和HAS3的mRNA在人、牛和猪软骨细胞中表达。HAS2 mRNA存在于所有软骨的软骨细胞中以及所有培养条件下,而HAS3没有这种组成性表达。在牛和猪软骨细胞的琼脂糖培养物中,HAS2 mRNA存在于对照、白细胞介素-1和视黄酸处理的培养物中,而HAS3 mRNA仅在白细胞介素-1刺激的培养物中检测到。在单层培养中,成熟牛软骨细胞在白细胞介素-1、肿瘤坏死因子-α、转化生长因子-β和胰岛素样生长因子-1存在的情况下表达HAS2和HAS3的mRNA,然而,单层培养中的未成熟牛软骨细胞在这些细胞因子和生长因子存在的情况下几乎不表达HAS3 mRNA。从关节软骨表层或深层分离的牛软骨细胞以及在有无白细胞介素-1和视黄酸的情况下培养的人软骨细胞也表达HAS2和HAS3的mRNA。
我们的数据表明,HAS2和HAS3(而非HAS1)的mRNA在几种哺乳动物软骨中表达。软骨细胞HAS2 mRNA似乎是组成性表达,而软骨细胞HAS3 mRNA表达可以以年龄依赖的方式受到差异调节,并且可能受到细胞因子或生长因子提供的局部和/或全身分解代谢或合成代谢刺激的影响。