Knäuper V, Docherty A J, Smith B, Tschesche H, Murphy G
Department of Cell and Molecular Biology, Strangeways Research Laboratory, Cambridge, UK.
FEBS Lett. 1997 Mar 17;405(1):60-4. doi: 10.1016/s0014-5793(97)00158-0.
Analysis of the hinge region of neutrophil collagenase by alanine scanning mutagenesis revealed that this sequence motif has a pronounced effect on the stability and collagenolytic activity of the active enzyme. The mutagenesis of the amino acid residues in the P1' position of the two autoproteolytically cleaved peptide bonds (Leu243 and Ile248) to Ala showed that the mutant enzymes were more resistant to autoproteolysis. However, these mutants were not completely stable and autoproteolysis occurred mainly at the Ala239-Ile240 peptide bond and the half-life of the active enzyme was increased by 50%. In contrast, mutagenesis of Pro247 --> Ala (P1 of the minor cleavage site Pro247-Ile248) lead to increased susceptibility of the enzyme to autoproteolysis. However, when the other P1 position Gly242 was altered to Ala no effect on stability was observed. The analysis of the ability of the mutant active enzymes to hydrolyse 14C-type I collagen was assessed and our results demonstrate that the hinge sequence motif of neutrophil collagenase is important for collagenolytic activity. The alteration of the Gly242-Leu-Ser-Ser-Asn-Pro-Ile-Gln-Pro247 sequence motif to Gly242-Ala-Ala-Ala-Ala-Pro-Ala-Ala-Pro247 showed that the collagenolytic activity was reduced by 68.4%. In addition, mutagenesis of the downstream sequence motif Pro247-Thr-Gly-Pro-Ser-Thr-Pro-Lys-Pro258 to Pro247-Ala-Ala-Pro-Ala-Ala-Pro-Ala-Pro258 had an even more marked effect on the collagenolytic activity, which was reduced by 87.4%. When the Pro residues in the hinge motif (Pro247, Pro250, Pro253 and Pro256) were altered to Ala the collagenolytic activity dropped to 1.5% of the value observed for wild-type enzyme.
通过丙氨酸扫描诱变分析中性粒细胞胶原酶的铰链区发现,该序列基序对活性酶的稳定性和胶原olytic活性有显著影响。将两个自蛋白水解切割肽键(Leu243和Ile248)的P1'位置的氨基酸残基突变为Ala表明,突变酶对自蛋白水解更具抗性。然而,这些突变体并不完全稳定,自蛋白水解主要发生在Ala239-Ile240肽键处,活性酶的半衰期增加了50%。相比之下,将Pro247突变为Ala(次要切割位点Pro247-Ile248的P1)导致酶对自蛋白水解的敏感性增加。然而,当另一个P1位置的Gly242改变为Ala时,未观察到对稳定性的影响。评估了突变活性酶水解14C-I型胶原的能力,我们的结果表明中性粒细胞胶原酶的铰链序列基序对胶原olytic活性很重要。将Gly242-Leu-Ser-Ser-Asn-Pro-Ile-Gln-Pro247序列基序改变为Gly242-Ala-Ala-Ala-Ala-Pro-Ala-Ala-Pro247表明,胶原olytic活性降低了68.4%。此外,将下游序列基序Pro247-Thr-Gly-Pro-Ser-Thr-Pro-Lys-Pro258突变为Pro247-Ala-Ala-Pro-Ala-Ala-Pro-Ala-Pro258对胶原olytic活性有更显著的影响,降低了87.4%。当铰链基序中的Pro残基(Pro247、Pro250、Pro253和Pro256)改变为Ala时,胶原olytic活性降至野生型酶观察值的1.5%。