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人肠肽酶轻链的生化特性

Biochemical characterization of human enteropeptidase light chain.

作者信息

Gasparian M E, Ostapchenko V G, Dolgikh D A, Kirpichnikov M P

机构信息

Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 117997 Moscow, Russia.

出版信息

Biochemistry (Mosc). 2006 Feb;71(2):113-9. doi: 10.1134/s0006297906020015.

Abstract

The synthetic gene encoding human enteropeptidase light chain (L-HEP) was cloned into plasmid pET-32a downstream from the gene of fusion partner thioredoxin immediately after the DNA sequence encoding the enteropeptidase recognition site. The fusion protein thioredoxin (Trx)/L-HEP was expressed in Escherichia coli BL21(DE3). Autocatalytic cleavage of the fusion protein and activation of recombinant L-HEP were achieved by solubilization of inclusion bodies and refolding of Trx/L-HEP fusion protein. The kinetic parameters of human and bovine enteropeptidases in the presence of different concentrations of Ca2+ and Na+ for cleavage of the specific substrate GD4K-na and nonspecific substrates such as small ester Z-Lys-SBzl and chromogenic substrates Z-Ala-X-Arg-pNA have been comparatively analyzed. It is demonstrated that positively charged ions increased the Michaelis constant (Km) for cleavage of specific substrate GD4K-na, while the catalytic constant (k(cat)) remained practically unchanged. L-HEP demonstrated secondary specificity to the chromogenic substrate Z-Ala-Phe-Arg-pNA with k(cat)/Km 260 mM(-1) x sec(-1). Enzymatic activity of L-HEP was suppressed by inhibitors of trypsin-like and cysteine (E-64), but not metallo-, amino-, or chymotrypsin-like proteinases. L-HEP was active over a broad range of pH (6-9) with optimum activity at pH 7.5, and it demonstrated high stability to different denaturing agents.

摘要

编码人肠肽酶轻链(L-HEP)的合成基因被克隆到质粒pET-32a中,位于融合伴侣硫氧还蛋白基因的下游,紧接在编码肠肽酶识别位点的DNA序列之后。融合蛋白硫氧还蛋白(Trx)/L-HEP在大肠杆菌BL21(DE3)中表达。通过包涵体的溶解和Trx/L-HEP融合蛋白的重折叠实现融合蛋白的自催化切割和重组L-HEP的激活。已对人和牛肠肽酶在不同浓度的Ca2+和Na+存在下切割特异性底物GD4K-na以及非特异性底物(如小酯Z-Lys-SBzl和生色底物Z-Ala-X-Arg-pNA)的动力学参数进行了比较分析。结果表明,带正电荷的离子增加了切割特异性底物GD4K-na的米氏常数(Km),而催化常数(k(cat))实际上保持不变。L-HEP对生色底物Z-Ala-Phe-Arg-pNA表现出二级特异性,k(cat)/Km为260 mM(-1)×sec(-1)。L-HEP的酶活性受到类胰蛋白酶和半胱氨酸(E-64)抑制剂的抑制,但不受金属蛋白酶(如金属蛋白酶)、氨基蛋白酶或类糜蛋白酶的抑制。L-HEP在较宽的pH范围(6-9)内具有活性,在pH 7.5时活性最佳,并且对不同的变性剂表现出高稳定性。

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