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人成纤维细胞基质溶解素催化结构域:C末端截短形式的表达、纯化及特性分析

Human fibroblast stromelysin catalytic domain: expression, purification, and characterization of a C-terminally truncated form.

作者信息

Marcy A I, Eiberger L L, Harrison R, Chan H K, Hutchinson N I, Hagmann W K, Cameron P M, Boulton D A, Hermes J D

机构信息

Department of Biophysical Chemistry, Merck Sharp & Dohme Research Laboratories, Rahway, New Jersey 07065.

出版信息

Biochemistry. 1991 Jul 2;30(26):6476-83. doi: 10.1021/bi00240a018.

Abstract

Stromelysin-1 is a member of a tissue metalloproteinase family whose members are all capable of degrading extracellular matrix components. A truncated form of human fibroblast prostromelysin 1 lacking the C-terminal, hemopexin-like domain has been expressed in Escherichia coli and purified to homogeneity. Treatment of this short form of prostromelysin with (aminophenyl)mercuric acetate resulted in activation and loss of the propeptide in a manner identical with the wild-type, full-length protein. Kinetic comparisons using Nle11-substance P as a substrate showed that the wild-type stromelysin and the truncated form of the enzyme had similar kcat and Km values. Likewise, both enzymes displayed similar Ki values for a hydroxamate-containing peptide inhibitor. Taken together, these results indicate that the C-terminal portion of stromelysin is not required for proper folding of the catalytic domain, maintenance of the enzyme in a latent form, activation with an organomercurial, cleavage of a peptide substrate, or interaction with an inhibitor. Moreover, the active short form of stromelysin displayed a reduction in the C-terminal heterogeneity, a characteristic degradation of the full-length stromelysin, and thereby provides a more suitable protein for future structural studies.

摘要

基质溶解素-1是组织金属蛋白酶家族的成员之一,该家族成员均能够降解细胞外基质成分。一种缺失C末端血色素结合蛋白样结构域的人成纤维细胞前基质溶解素1的截短形式已在大肠杆菌中表达并纯化至同质。用乙酸(氨基苯基)汞处理这种短形式的前基质溶解素会导致其激活并失去前肽,其方式与野生型全长蛋白相同。使用Nle11-物质P作为底物进行的动力学比较表明,野生型基质溶解素和该酶的截短形式具有相似的kcat和Km值。同样,两种酶对含异羟肟酸的肽抑制剂均显示出相似的Ki值。综上所述,这些结果表明,基质溶解素的C末端部分对于催化结构域的正确折叠、酶以潜伏形式的维持、用有机汞激活、肽底物的切割或与抑制剂的相互作用并非必需。此外,活性短形式的基质溶解素显示出C末端异质性的降低,这是全长基质溶解素的一种特征性降解,因此为未来的结构研究提供了更合适的蛋白质。

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