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相互作用的基质金属蛋白酶激活:一种由间质胶原酶和前明胶酶A执行的过程。

Reciprocated matrix metalloproteinase activation: a process performed by interstitial collagenase and progelatinase A.

作者信息

Crabbe T, O'Connell J P, Smith B J, Docherty A J

机构信息

Department of Oncology, Celltech Research, Slough, U.K.

出版信息

Biochemistry. 1994 Dec 6;33(48):14419-25. doi: 10.1021/bi00252a007.

DOI:10.1021/bi00252a007
PMID:7981201
Abstract

Gelatinase A, a member of the matrix metalloproteinase (MMP) family, is secreted possessing an 80 amino acid N-terminal propeptide that must be removed in order to generate the active enzyme. Purified progelatinase A was activated to 38% of maximum by a 6 h incubation at 37 degrees C with equimolar concentrations of trypsin-activated interstitial collagenase (another MMP). The increase in activity was accompanied by cleavage of the M(r) 72,000 progelatinase A to the M(r) 66,000 active enzyme that has Y81 as its N-terminus. At low concentrations, progelatinase A was processed via an inactive intermediate, suggesting that its activation is a biphasic process. This was confirmed by the action of collagenase on proE375-->A (a mutant of progelatinase A that cannot become active) because, in this instance, only an M(r) 68,000 species with L38 as the N-terminus was produced. The remaining propeptide amino acids to Y81 could be readily removed by added active gelatinase A, indicating that collagenase works by generating an intermediate that is susceptible to autolytic activation. Although relatively slow, the rate of activation could be increased approximately 10-fold by the addition of 100 micrograms/mL heparin. This binds to the C-terminal domain of collagenase and progelatinase A and presumably acts as a template that positions the reactants close to one another. Collagenase activated by trypsin retains 8 or 14 amino acids of its propeptide.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

明胶酶A是基质金属蛋白酶(MMP)家族的成员之一,其分泌时带有一个80个氨基酸的N端前肽,必须去除该前肽才能产生活性酶。纯化的前明胶酶A在37℃下与等摩尔浓度的胰蛋白酶激活的间质胶原酶(另一种MMP)孵育6小时后,被激活至最大活性的38%。活性的增加伴随着分子量为72,000的前明胶酶A裂解为分子量为66,000的活性酶,该活性酶以Y81作为其N端。在低浓度下,前明胶酶A通过一个无活性的中间体进行加工,这表明其激活是一个双相过程。胶原酶对proE375→A(前明胶酶A的一个不能变得有活性的突变体)的作用证实了这一点,因为在这种情况下,只产生了一种以L38作为N端、分子量为68,000的物质。到Y81的其余前肽氨基酸可以很容易地被添加的活性明胶酶A去除,这表明胶原酶通过产生一个易受自溶激活的中间体起作用。尽管激活速度相对较慢,但通过添加100微克/毫升肝素,激活速度可以提高约10倍。肝素与胶原酶和前明胶酶A的C端结构域结合,大概起到了一个将反应物彼此靠近定位的模板作用。经胰蛋白酶激活的胶原酶保留了其前肽的8个或14个氨基酸。(摘要截短至250字)

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