Blain E J, Mason D J, Duance V C
Connective Tissue Biology Laboratories, School of Biosciences, Cardiff University, Museum Avenue, Wales, UK.
Biochem Soc Trans. 2002 Nov;30(Pt 6):879-82. doi: 10.1042/bst0300879.
Mechanical loading is paramount in regulating both the anabolic and catabolic activities of articular cartilage chondrocytes, essential for the matrix to retain its functional integrity. We have identified thymosin beta(4) as a putative mechanically regulated gene that may mediate load-enhanced synthesis and activation of matrix metalloproteinases (MMPs) 2 and 9 in articular cartilage. The objective of this study was to confirm the mechanical regulation of thymosin beta(4) and determine its effect on cartilage chondrocyte MMP production. Thymosin beta(4) mRNA expression, analysed by quantitative PCR, revealed a significant 20-fold increase in cartilage loaded for 10 min which was still evident after 30 min of loading. Treatment of primary chondrocytes with 2 and 4 micro x ml(-1) thymosin beta(4) peptide for 4 h significantly increased pro-MMP 9 expression and activation. We postulate a functional role for load-induced thymosin beta(4) in modulating the cytoskeletal organization of articular cartilage chondrocytes to affect MMP expression.
机械负荷对于调节关节软骨细胞的合成代谢和分解代谢活动至关重要,而这对于基质保持其功能完整性必不可少。我们已将胸腺素β4鉴定为一种可能受机械调节的基因,它可能介导负荷增强关节软骨中基质金属蛋白酶(MMPs)2和9的合成与激活。本研究的目的是证实胸腺素β4的机械调节作用,并确定其对软骨细胞MMP产生的影响。通过定量PCR分析,胸腺素β4 mRNA表达显示,加载10分钟的软骨中其显著增加了20倍,加载30分钟后仍很明显。用2和4微克/毫升胸腺素β4肽处理原代软骨细胞4小时,显著增加了前MMP 9的表达和激活。我们推测负荷诱导的胸腺素β4在调节关节软骨细胞的细胞骨架组织以影响MMP表达方面具有功能性作用。