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Triple-Helical Peptide Analysis of Collagenolytic Protease Activity

机译:胶原酶活性的三螺旋肽分析

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Matrix metalloproteinase (MMP) family members are involved in the physiological remodeling of tissues and embryonic development as well as pathological destruction of extracellular matrix components. To study the mechanisms of MMP action on collagenous substrates, non-fluorogenic and fluorogenic triple-helical peptide models of MMP-1 cleavage sites in interstitial collagens have been constructed. Triple-helical peptides were assembled by either (a) covalent branching or (b) self-association driven by hydrophobic interactions. Fluorogenic triple-helical peptide (fTHF) substrates contained the fluorophore/quencher pair of (7-methoxycoumarin-4-yl)acetyl(Mca) and N-2,4-dinitrophenyl(Dnp) in the P_5 and P_5' positions, respectively. Investigation of MMP family hydrolysis of THPs showed k_(cat)/K_m values in the order of MMP-3. Studies on the effect of temperature on fTHP and an analogous fluorogenic single-stranded peptide (fSSP) hydrolysis by MMP-1 showed that the activation energies between these two substrates differed by 3.4-fold, similar to the difference in activation energies for MMP-1 hydrolysis of type I collagen and gelatin. The general proteases trypsin and thermolysin were also studied for triple-helical peptidase activity. Both of these enzymes exhibited similar activation energies to MMP-1 for hydrolysis of fTHF versus fSSP. These results suggest that 'triple-helical peptidase' activity can be distinguished from 'collagenolytic' activity, and that mechanistically distinct enzymes convergently evolved to develop collagenolytic activity.
机译:基质金属蛋白酶(MMP)家族成员参与组织的生理重塑和胚胎发育,以及细胞外基质成分的病理破坏。为了研究MMP对胶原底物的作用机理,已经建立了间质胶原中MMP-1切割位点的非荧光性和荧光性三螺旋肽模型。通过(a)共价分支或(b)由疏水相互作用驱动的自缔合来组装三螺旋肽。荧光三螺旋肽(fTHF)底物分别在P_5和P_5'位置包含(7-甲氧基香豆素-4-基)乙酰基(Mca)和N-2,4-二硝基苯基(Dnp)的荧光团/猝灭剂对。对THPs的MMP家族水解的研究显示k_(cat)/ K_m值按MMP-3的顺序排列。温度对fTHP和MMP-1水解类似的荧光单链肽(fSSP)影响的研究表明,这两种底物之间的活化能相差3.4倍,类似于MMP-1的活化能差异水解I型胶原蛋白和明胶。还研究了普通蛋白酶胰蛋白酶和嗜热菌蛋白酶的三螺旋肽酶活性。这两种酶都显示出与MMP-1相似的活化能,以水解fTHF和fSSP。这些结果表明,“三螺旋肽酶”活性可以与“ collagenolytic”活性区分开,并且机理上不同的酶会聚在一起以发展胶原蛋白水解活性。

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