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亲和标记试剂对半胱氨酰外肽酶组织蛋白酶H和组织蛋白酶C的失活作用。

The inactivation of the cysteinyl exopeptidases cathepsin H and C by affinity-labelling reagents.

作者信息

Angliker H, Wikstrom P, Kirschke H, Shaw E

机构信息

Friedrich Miescher-Institut, Basel, Switzerland.

出版信息

Biochem J. 1989 Aug 15;262(1):63-8. doi: 10.1042/bj2620063.

Abstract

An attempt has been made to extend to the cysteinyl exopeptidases cathepsins H and C affinity-labelling approaches shown to be effective with cysteinyl endopeptidases such as cathepsins B and L and the calcium-activated proteinase. This involved the preparation of amino acid and dipeptide derivatives with unblocked N-termini to satisfy the aminopeptidase and dipeptidyl aminopeptidase characteristics of cathepsins H and C respectively. For covalent reactivity, the possibilities examined included diazomethanes (-CHN2), fluoromethanes (-CH2F) and dimethylsulphonium salt [-CH2S+(CH3)2]. A dipeptidylfluoromethane with a free amino group could not be prepared, perhaps due to inherent instability. Cathepsin H was inactivated by 1 microM-H2N-Phe-CH2F (the 'H2N' indicates a free unblocked amino group) (k2 = 1878 M-1.s-1); this reagent was without effect on cathepsins C and B, even at 100-fold this concentration. Analogous selectivity was shown by H2N-Ser(OBzl)-CHN2 and H2N-Phe-CH2S+(CH3)2, members of other classes of covalently binding reagents. For cathepsin C the dipeptide derivatives H2N-Gly-Phe-CHN2 and H2N-Phe-Ala-CH2S+(CH3)2 caused rapid inactivation near 10(-7) M. Higher concentrations inactivated cathepsins H and B, but the rates were slower by two to three orders of magnitude than for cathepsin C.

摘要

有人尝试将已证明对诸如组织蛋白酶B和L以及钙激活蛋白酶等半胱氨酸内肽酶有效的亲和标记方法扩展至半胱氨酸外肽酶组织蛋白酶H和C。这涉及制备具有未封闭N端的氨基酸和二肽衍生物,以分别满足组织蛋白酶H和C的氨肽酶和二肽基氨肽酶特性。对于共价反应性,研究的可能性包括重氮甲烷(-CHN2)、氟甲烷(-CH2F)和二甲基锍盐[-CH2S+(CH3)2]。由于内在不稳定性,可能无法制备具有游离氨基的二肽基氟甲烷。组织蛋白酶H被1 microM-H2N-Phe-CH2F(“H2N”表示游离未封闭的氨基)灭活(k2 = 1878 M-1·s-1);即使在该浓度的100倍时,该试剂对组织蛋白酶C和B也没有影响。其他类别的共价结合试剂成员H2N-Ser(OBzl)-CHN2和H2N-Phe-CH2S+(CH3)2也表现出类似的选择性。对于组织蛋白酶C,二肽衍生物H2N-Gly-Phe-CHN2和H2N-Phe-Ala-CH2S+(CH3)2在接近10(-7) M时会导致快速失活。更高浓度会使组织蛋白酶H和B失活,但速率比组织蛋白酶C慢两到三个数量级。

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