Ray Alpana, Bal B Sonny, Ray Bimal K
Department of Veterinary Pathobiology, University of Missouri, Columbia, MO 65211, USA.
J Immunol. 2005 Sep 15;175(6):4039-48. doi: 10.4049/jimmunol.175.6.4039.
Increased expression of matrix metalloproteinase-9 (MMP-9) by IL-1beta and TNF-alpha is regarded as a key factor in the degradation of cartilage during arthritis. However, the underlying molecular mechanism of this induction process especially in the cells of the joint capsule remains elusive. Chondrocytes and synoviocytes, the resident cells of joint capsule, markedly increase transcription of MMP-9 in response to IL-1beta- and TNF-alpha-mediated stimulation. Using progressively deleted and mutant promoter constructs of MMP-9, we show that serum amyloid A-activating factor (SAF)-1, a novel transcription factor, and the AP-1 family of proteins cooperatively regulate cytokine-mediated induction of MMP-9 in the resident cells of the joint capsule. In the MMP-9 promoter, SAF-1 and AP-1 DNA-binding elements are present in close proximity with only 14 nucleotides apart. SAF-1 DNA-binding activity is increased in both cytokine-stimulated cells as well as in osteoarthritic cartilage tissues. Although overexpression of SAF-1 could increase expression of the MMP-9 promoter and endogenous MMP-9 gelatinolytic activity, for maximal induction of MMP-9 gene concurrent participation of SAF-1 and AP-1 is required. Mutation of either one of these two elements resulted in a severe reduction in cytokine responsiveness of MMP-9 promoter and compromised the transactivation potential of both SAF-1 and AP-1. Simultaneous requirement for two distinct DNA-binding elements suggests that SAF-1 and AP-1 function in a mutually beneficial manner acting as essential coactivators to drive cytokine-mediated transcriptional activation of MMP-9.
白细胞介素-1β(IL-1β)和肿瘤坏死因子-α(TNF-α)介导的基质金属蛋白酶-9(MMP-9)表达增加被认为是关节炎期间软骨降解的关键因素。然而,这一诱导过程的潜在分子机制,尤其是在关节囊细胞中的机制,仍不清楚。关节囊的驻留细胞软骨细胞和滑膜细胞,在IL-1β和TNF-α介导的刺激下,MMP-9的转录显著增加。通过使用逐步缺失和突变的MMP-9启动子构建体,我们发现血清淀粉样蛋白A激活因子(SAF)-1,一种新型转录因子,与AP-1蛋白家族协同调节关节囊驻留细胞中细胞因子介导的MMP-9诱导。在MMP-9启动子中,SAF-1和AP-1 DNA结合元件紧密相邻,仅相隔14个核苷酸。SAF-1 DNA结合活性在细胞因子刺激的细胞以及骨关节炎软骨组织中均增加。虽然SAF-1的过表达可以增加MMP-9启动子的表达和内源性MMP-9的明胶酶活性,但MMP-9基因的最大诱导需要SAF-1和AP-1的同时参与。这两个元件中的任何一个发生突变都会导致MMP-9启动子的细胞因子反应性严重降低,并损害SAF-1和AP-1的反式激活潜能。对两个不同DNA结合元件的同时需求表明,SAF-1和AP-1以互利的方式发挥作用,作为驱动细胞因子介导的MMP-9转录激活的必需共激活因子。