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异噻唑啉酮会干扰正常的基质金属蛋白酶激活,并抑制软骨蛋白聚糖降解。

Isothiazolones interfere with normal matrix metalloproteinase activation and inhibit cartilage proteoglycan degradation.

作者信息

Arner E C, Pratta M A, Freimark B, Lischwe M, Trzaskos J M, Magolda R L, Wright S W

机构信息

DuPont Merck Pharmaceutical Company, Experimental Station, Wilmington, DE 19880-0400, USA.

出版信息

Biochem J. 1996 Sep 1;318 ( Pt 2)(Pt 2):417-24. doi: 10.1042/bj3180417.

Abstract

A series of isothiazolones that inhibit pro-(matrix metallo-proteinase) (proMMP) activation but do not inhibit the active enzyme are effective as cartilage protectants in bovine nasal cartilage organ culture, preventing interleukin-1 (IL-1)-induced proteoglycan (aggrecan) degradation without affecting its synthesis. These compounds were found to bind to prostromelysin (proMMP-3) in a non-dialysable and stoichiometric manner. Preincubation with cartilage-protectant isothiazolones prevented the binding of [14C]iodoacetamide to Cys75 of the MMP-3 propeptide, suggesting that the activity of these compounds involves their binding to the Cys75 of the MMP zymogen. Studies following chymotrypsin activation of proMMP-3 by SDS/PAGE indicated that altered processing of the 57 kDa zymogen to the active form occurred in the presence of compound. The 53 kDa intermediate seen on normal activation was not formed; instead a different intermediate appeared with a molecular mass of approx. 46 kDa. N-terminal sequence analysis indicated that this intermediate was formed by cleavage at the putative 4-aminophenylmercuric acid cleavage site. Importantly the 45 kDa active MMP-3 species formed in the presence of compound was one amino acid residue shorter than the native MMP-3. These results suggest that the inhibition of cartilage proteoglycan degradation by isothiazolones might be due to their ability to bind to the Cys75 in the propeptide region of the MMP zymogen and interfere with its normal activation process.

摘要

一系列抑制前(基质金属蛋白酶)(proMMP)激活但不抑制活性酶的异噻唑啉酮,在牛鼻软骨器官培养中作为软骨保护剂有效,可防止白细胞介素-1(IL-1)诱导的蛋白聚糖(聚集蛋白聚糖)降解而不影响其合成。发现这些化合物以不可透析且化学计量的方式与前基质溶素(proMMP-3)结合。用软骨保护剂异噻唑啉酮预孵育可防止[14C]碘乙酰胺与MMP-3前肽的Cys75结合,表明这些化合物的活性涉及其与MMP酶原Cys75的结合。通过SDS/PAGE对proMMP-3进行胰凝乳蛋白酶激活后的研究表明,在化合物存在下,57 kDa酶原向活性形式的加工发生改变。正常激活时出现的53 kDa中间体未形成;相反,出现了一种分子量约为46 kDa的不同中间体。N端序列分析表明,该中间体是在假定的对氨基苯基汞酸切割位点处切割形成的。重要的是,在化合物存在下形成的45 kDa活性MMP-3比天然MMP-3短一个氨基酸残基。这些结果表明,异噻唑啉酮对软骨蛋白聚糖降解的抑制作用可能是由于它们能够与MMP酶原前肽区域的Cys75结合并干扰其正常激活过程。

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