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犬组织金属蛋白酶抑制剂-2:纯化、特性鉴定及分子检测

Canine TIMP-2: purification, characterization and molecular detection.

作者信息

Bee A, Barnes A, Jones M D, Robertson D H, Clegg P D, Carter S D

机构信息

Connective Tissue Research Group, Faculty of Veterinary Science, University of Liverpool, Liverpool, UK.

出版信息

Vet J. 2000 Sep;160(2):126-34. doi: 10.1053/tvjl.2000.0467.

Abstract

Matrix metalloproteinases (MMPs), which degrade tissues in health and disease are under the control of the tissue inhibitors of MMPs, the TIMPs. TIMP-2 is particularly important for control of MMP-2 and both have been implicated in many pathological processes from arthritis to tumour invasion. This study characterized and detected TIMP-2 from canine cells; including synovial fibroblasts and three tumour-derived canine cell lines, K1, K6 and DH82. Gelatin zymography demonstrated that pro-MMP-2 is produced by synovial fibroblasts and the three cells lines. Reverse zymograms showed that all the cell sources tested secrete both TIMP-1 and TIMP-2. The 22 kDa band was purified and n-terminal amino acid sequencing showed it to be highly homologous to equine and human TIMP-2. Analysis of purified canine MMP-2 and MMP-9 showed that TIMP-2 is associated, and co-purifies with MMP-2. Polymerase chain reaction, using consensus primers, was used to detect TIMP-2 mRNA from the cell sources and proved positive in all cases. This work highlights the importance of TIMP-2 as the main inhibitor for MMP-2 and, therefore, opens the possibilities of targeting TIMP-2 for therapeutic intervention against connective amino acid tissue degradation in a range of diseases.

摘要

基质金属蛋白酶(MMPs)在健康和疾病状态下都会降解组织,其受基质金属蛋白酶组织抑制剂(TIMPs)的调控。TIMP-2对MMP-2的控制尤为重要,二者都与从关节炎到肿瘤侵袭等许多病理过程有关。本研究对犬类细胞中的TIMP-2进行了表征和检测,这些细胞包括滑膜成纤维细胞以及三种肿瘤衍生的犬类细胞系K1、K6和DH82。明胶酶谱分析表明,滑膜成纤维细胞和这三种细胞系都能产生前体MMP-2。反向酶谱显示,所有测试的细胞来源都能分泌TIMP-1和TIMP-2。对22 kDa条带进行纯化,N端氨基酸测序表明其与马和人的TIMP-2高度同源。对纯化的犬MMP-2和MMP-9的分析表明,TIMP-2与MMP-2相关且能与之共同纯化。使用共有引物进行聚合酶链反应,以检测细胞来源中的TIMP-2 mRNA,结果在所有情况下均呈阳性。这项工作突出了TIMP-2作为MMP-2主要抑制剂的重要性,因此为针对一系列疾病中结缔组织氨基酸降解进行治疗干预而靶向TIMP-2开辟了可能性。

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