首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Molecular and enzymatic properties of a cathepsin L-like proteinase with distinct substrate specificity from northern shrimp (Pandalus borealis)
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Molecular and enzymatic properties of a cathepsin L-like proteinase with distinct substrate specificity from northern shrimp (Pandalus borealis)

机译:组织蛋白酶L样蛋白酶的分子和酶学性质与北方虾(Pandalusboalis)具有不同的底物特异性

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We purified a cathepsin L-like proteinase to homogeneity from the hepatopancreas of northern shrimp Pandalus borealis by several chromatographic procedures. The purified proteinase showed the highest specificity for leucine residue at P2, a specificity pattern similar to cathepsins S and K whereas proline and arginine residues were not suitable as P2 substrates. However, unlike these proteinases, it accepted valine almost equally to the phenylalanine residue at P2. The shrimp cathepsin was strongly inhibited by E-64, leupeptin and antipain, while benzyloxycarbonyl-Phe-Tyr(t-Bu)-CHN2, a specific inhibitor of cathepsin L, remained largely ineffective. Next, we determined the primary structure of the shrimp enzyme by molecular cloning and investigated the residues constituting the S2 subsite, which is possibly involved in its unusual substrate specificity. The deduced amino acid sequence of the shrimp proteinase shared the highest identity of 65% with a cathepsin L-like proteinase from lobster, but its identity to the well-characterized mammalian cathepsins S, L, and K fell within narrower ranges of 52-55%. However, the shrimp proteinase differed from these cathepsins in some key residues including, for example, the unique occurrence of cysteine and glutamine residues at the structurally important S2 subsite. Interestingly, transcripts of this proteinase were exclusively detected in the shrimp gut coinciding with its broad pH activity and stability profiles, which is also unusual as a cysteine proteinase. These results suggest that the shrimp enzyme is homologous to mammalian cathepsins S, L, and K, but is distinct from each of these proteinases in both enzymatic and structural properties.
机译:我们通过几种色谱方法从北部虾Pandalusboalis的肝胰腺中纯化了组织蛋白酶L样蛋白酶,使其具有同质性。纯化的蛋白酶对P2处的亮氨酸残基表现出最高的特异性,其特异性模式类似于组织蛋白酶S和K,而脯氨酸和精氨酸残基不适合作为P2底物。但是,与这些蛋白酶不同,它接受的缬氨酸几乎等同于P2的苯丙氨酸残基。虾组织蛋白酶被E-64,亮蛋白和抗痛药强烈抑制,而组织蛋白酶L的特异性抑制剂苄氧羰基-Phe-Tyr(t-Bu)-CHN2仍然无效。接下来,我们通过分子克隆确定了虾酶的一级结构,并研究了构成S2亚位点的残基,这可能与其异常的底物特异性有关。虾蛋白酶的推导氨基酸序列与龙虾的组织蛋白酶L样蛋白酶具有最高的同一性65%,但其与特征丰富的哺乳动物组织蛋白酶S,L和K的同一性在52-55的较窄范围内%。然而,虾蛋白酶在某些关键残基上不同于这些组织蛋白酶,例如,在结构上重要的S2亚位点上半胱氨酸和谷氨酰胺残基的独特出现。有趣的是,仅在虾肠中检测到该蛋白酶的转录本,这与其广泛的pH活性和稳定性有关,而半胱氨酸蛋白酶也很罕见。这些结果表明,虾酶与哺乳动物组织蛋白酶S,L和K同源,但是在酶学和结构性质上均不同于每种蛋白酶。

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