Department of Biophysics, Universidade Federal de São Paulo, Brazil.
Arch Biochem Biophys. 2010 Jun 1;498(1):74-82. doi: 10.1016/j.abb.2010.03.022. Epub 2010 Apr 4.
We report the enzymatic properties and substrate specificity of human recombinant KLK3 in the presence of glycosaminoglycans (GAGs) and sodium citrate. This salt is highly concentrated in prostate and in its presence KLK3 had a similar hydrolytic efficiency as chymotrypsin. In contrast to the latter peptidase, KLK3 activated by sodium citrate efficiently hydrolyzed substrates containing R, H and P at the P1 position. Activated KLK3 also cleaved peptides derived from the bradykinin domain of human kininogen at the same sites as human kallikrein KLK1, but presented low kininogenase activity. Angiotensin I has several sites for hydrolysis by KLK3; however, it was cleaved only at the Y-I bond (DRVY downward arrowIHPFHL). Sodium citrate modulated KLK3 conformation as observed by alterations to the intrinsic fluorescence of phenylalanines and tryptophans. Activated KLK3 was reversibly inhibited by Z-Pro-Prolinal and competitively inhibited by ortho-phenantroline. Together, these are noteworthy observations for the future design of specific non-peptide inhibitors of KLK3 and to find natural substrates.
我们报告了人重组 KLK3 在糖胺聚糖 (GAGs) 和柠檬酸钠存在下的酶学性质和底物特异性。这种盐在前列腺中高度浓缩,在柠檬酸钠存在下,KLK3 的水解效率与糜蛋白酶相似。与后者肽酶不同,被柠檬酸钠激活的 KLK3 能够有效地水解 P1 位含有 R、H 和 P 的底物。被激活的 KLK3 还能在与人类激肽释放酶 KLK1 相同的位点切割人激肽原 bradykinin 结构域的肽,但激肽原酶活性较低。血管紧张素 I 有几个位点可被 KLK3 水解;然而,它仅在 Y-I 键处被切割 (DRVY 向下箭头 IHPFHL)。柠檬酸钠通过改变苯丙氨酸和色氨酸的本征荧光来调节 KLK3 的构象。被激活的 KLK3 可被 Z-Pro-Prolinal 可逆抑制,并被邻菲咯啉竞争性抑制。总之,这些观察结果为 KLK3 的特异性非肽抑制剂的未来设计和寻找天然底物提供了有价值的信息。