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Human glandular kallikrein, hK2, shows arginine-restricted specificity and forms complexes with plasma protease inhibitors.

机译:人腺激肽释放酶,hK2,显示精氨酸限制的特异性,并与血浆蛋白酶抑制剂形成复合物。

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BACKGROUND: Human glandular kallikrein (hK2) is a new potential marker for prostate cancer. It is a serine protease expressed in human prostate epithelial cells which has 78% sequence identity with prostate-specific antigen (PSA). PSA is a widely used biochemical marker for prostate cancer. METHODS: Recombinant hK2 expressed in mammalian cells was purified to homogeneity by immunoaffinity chromatography, using an anti-hK2 mAb. hK2 enzymatic specificity was determined on peptide substrates by N-terminal amino acid sequencing. hK2 complexes were analyzed by SDS-PAGE and Western blots. RESULTS: hK2 was found to cleave peptide substrates exclusively at selected arginine residues. An amidolytic activity of 4,100 pmol/min per microgram hK2 was obtained on the chromogenic substrate H-D-Pro-Phe-Arg-p-nitroanilide, while no activity was found on methoxysuccinyl-Arg-Pro-Tyr-p-nitroanilide, a chymotrypsin substrate used to measure PSA activity. hK2 complexed completely with alpha 1-antichymotrypsin and alpha 2-antiplasmin after 4 hr at 37 degrees C, but showed no detectable complex with antithrombin III and alpha 1-protease inhibitor under these conditions. hK2 also formed a rapid complex with alpha 2-macroglobulin. CONCLUSIONS: These results demonstrate that hK2 is an active protease with arginine-selective specificity, which forms covalent complexes with plasma protease inhibitors.
机译:背景:人腺激肽释放酶(hK2)是前列腺癌的一种新的潜在标志物。它是一种在人前列腺上皮细胞中表达的丝氨酸蛋白酶,与前列腺特异性抗原(PSA)具有78%的序列同一性。 PSA是前列腺癌广泛使用的生化标志物。方法:使用抗hK2 mAb,通过免疫亲和层析将在哺乳动物细胞中表达的重组hK2纯化至同质。通过N端氨基酸测序在肽底物上确定hK2酶特异性。通过SDS-PAGE和Western印迹分析hK2复合物。结果:发现hK2仅在选定的精氨酸残基上裂解肽底物。在发色底物HD-Pro-Phe-Arg-对硝基苯胺上获得的酰胺化活性为每微克hK2 4,100 pmol / min,而在胰凝乳蛋白酶底物上的甲氧基琥珀酰-Arg-Pro-Tyr-对硝基苯胺上没有发现活性用于衡量PSA活性。在37℃下4小时后,hK2与α1-抗胰凝乳蛋白酶和α2-抗纤溶酶完全复合,但是在这些条件下没有显示出与抗凝血酶III和α1-蛋白酶抑制剂的可检测复合物。 hK2还与α2-巨球蛋白形成了快速复合物。结论:这些结果表明,hK2是一种具有精氨酸选择性特异性的活性蛋白酶,可与血浆蛋白酶抑制剂形成共价复合物。

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