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Anomalous pH-dependence of the activity of human matrilysin (matrix metalloproteinase-7) as revealed by nitration and amination of its tyrosine residues

机译:pH依赖性的人类基质溶解素(基质金属蛋白酶7)的活性通过酪氨酸残基的硝化和胺化来揭示

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摘要

Matrilysin activity exhibits a broad bell-shaped pH-dependence profile, with pKa values of 4.0 and 9.8. A maximum of five out of eight tyrosine residues in matrilysin were nitrated with tetranitromethane. On nitration of between one and five tyrosines, pKa at the alkaline side (pKe2) was shifted from 9.8 to 10.3–10.6, while that at the acidic side (pKe1) was not altered. The pKe2 that was shifted by nitration to 10.3–10.6 was restored to 9.4–9.7 by subsequent amination, suggesting that the shift in pKe2 is induced by a negative charge introduced on the most reactive tyrosine, Tyr-150. The Michaelis constant (Km) observed at pH 10 was decreased by nitration as a result of the increase in pKe2, suggesting that the residue with pKe2 may play a role in the recognition of substrate. When four or five tyrosines were nitrated, the activity at pH <7 decreased significantly, while that at pH 7–10 was unchanged, and thus the pH-dependence was not bell-shaped, but anomalous, with a third pKa (pKe3) of 6.2–6.4 in addition to pKe1 and pKe2. This suggests the possibility that a newly introduced nitrotyrosine residue has a strong influence on the activity as an ionizable group.
机译:基质溶素活性表现出宽的钟形pH依赖性分布,pKa值为4.0和9.8。用四硝基甲烷硝化母溶菌素中八个酪氨酸残基中的最多五个。硝化一到五个酪氨酸时,碱性侧的pKa(pKe2)从9.8变为10.3–10.6,而酸性侧的pKa(pKe1)不变。通过硝化作用被硝化转变为10.3–10.6的pKe2在随后的胺化反应中恢复为9.4–9.7,这表明pKe2的转变是由活性最高的酪氨酸Tyr-150上引入的负电荷诱导的。由于pKe2的增加,硝化作用降低了pH值为10时的米氏常数(Km),这表明带有pKe2的残基可能在底物识别中起作用。当四或五个酪氨酸被硝化时,pH <7时的活性显着下降,而pH值7-10时的活性没有改变,因此pH依赖性不是钟形的,而是反常的,第三pKa(pKe3)为除了pKe1和pKe2之外,还有6.2–6.4。这表明新引入的硝基酪氨酸残基可能强烈影响作为可电离基团的活性。

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