Braganza V J, Simmons W H
Department of Molecular and Cellular Biochemistry, Stritch School of Medicine, Loyola University of Chicago, Maywood, Illinois 60153.
Biochemistry. 1991 May 21;30(20):4997-5007. doi: 10.1021/bi00234a023.
Tryptase was purified 13,000-fold to apparent homogeneity from rat skin. The two-step procedure involved ammonium sulfate fractionation of the initial extract followed by combined sequential affinity chromatography on agarose-glycyl-glycyl-p-aminobenzamidine and concanavalin A-agarose. The purified enzyme had a specific activity toward N-benzoylarginine ethyl ester (BzArgOEt) of 170 mumol/min mg-1 and was obtained in a yield of 28% as determined by the specific substrate, H-D-Ile-Pro-Arg-p-nitroanilide. Rat skin tryptase was thermal labile, losing 50% of its activity when preincubated for 30 min at 30 degrees C. The presence of NaCl (1 M) improved thermal stability and was necessary for long-term storage. Heparin did not stabilize the enzyme against thermal denaturation, and heparin-agarose failed to bind the enzyme. Rat skin tryptase was inhibited by diisopropylphosphofluoridate, antipain, leupeptin, and aprotinin but not by alpha 1-antitrypsin, ovomucoid, or soybean or lima bean trypsin inhibitors. Substrate specificity studies using a series of tri- and tetrapeptidyl-p-nitroanilide and peptidyl-7-amino-4-methylcoumarin substrates demonstrated the existence of an extended substrate binding site. Rat skin tryptase hydrolyzed [Arg8]vasopressin, neurotensin, and the oxidized B-chain of insulin at the -Arg8-Gly9-NH2, -Arg8-Arg9-, and -Arg22-Gly23-bonds, respectively. No general proteinase activity was observed toward casein, hemoglobin, or azocoll. Rat skin tryptase had a Mr of 145,000 by gel filtration. The subunit Mr was either 34,000 or 30,000 depending on the electrophoretic technique used. Treatment of the enzyme with peptide N-glycosidase F (N-glycanase) decreased the subunit Mr by 4000. The enzyme exhibited multiple isoelectric forms (pI's of 4.5-4.9). Rat skin tryptase was found to be related statistically to other tryptases on the basis of amino acid composition. The N-terminal amino acid sequence was Ile1-Val2-Gly3-Gly4-Gln5-Glu6-Ala7-+ ++Ser8-Gly9-Asn10-Lys11-Trp12-Pro13- Trp14- Gln15-Val16-Ser17-Leu18-Arg19-Val20- --21-Asp-22Thr23-Tyr24-Typ25-, with a putative glycosylation site at residue 21. This sequence was 72-80% homologous with the N-terminus of other tryptases but only 40% homologous with that of bovine trypsin.
从大鼠皮肤中纯化出的类胰蛋白酶达到了表观均一性,纯化倍数为13000倍。两步纯化过程包括先用硫酸铵对初始提取物进行分级分离,然后依次在琼脂糖 - 甘氨酰 - 甘氨酰 - 对氨基苯甲脒和伴刀豆球蛋白A - 琼脂糖上进行亲和层析。纯化后的酶对N - 苯甲酰精氨酸乙酯(BzArgOEt)的比活性为170 μmol/min·mg-1,以特异性底物H - D - Ile - Pro - Arg - 对硝基苯胺测定,产率为28%。大鼠皮肤类胰蛋白酶对热不稳定,在30℃预孵育30分钟会丧失50%的活性。1 M NaCl的存在提高了热稳定性,且对长期保存是必需的。肝素不能稳定该酶使其抵抗热变性,并且肝素 - 琼脂糖不能结合该酶。大鼠皮肤类胰蛋白酶受到二异丙基氟磷酸酯、抗痛素、亮抑酶肽和抑肽酶的抑制,但不受α1 - 抗胰蛋白酶、卵类粘蛋白或大豆或利马豆胰蛋白酶抑制剂的抑制。使用一系列三肽和四肽基 - 对硝基苯胺以及肽基 - 7 - 氨基 - 4 - 甲基香豆素底物进行的底物特异性研究表明存在一个扩展的底物结合位点。大鼠皮肤类胰蛋白酶分别在 - Arg8 - Gly9 - NH2、 - Arg8 - Arg9 - 和 - Arg22 - Gly23 - 键处水解[Arg8]加压素、神经降压素和胰岛素的氧化B链。未观察到对酪蛋白、血红蛋白或偶氮胶体的一般蛋白酶活性。通过凝胶过滤法测得大鼠皮肤类胰蛋白酶的Mr为145000。根据所使用的电泳技术,亚基Mr为34000或30000。用肽N - 糖苷酶F(N - 聚糖酶)处理该酶会使亚基Mr降低4000。该酶表现出多种等电形式(pI为4.5 - 4.9)。基于氨基酸组成,发现大鼠皮肤类胰蛋白酶在统计学上与其他类胰蛋白酶相关。N端氨基酸序列为Ile1 - Val2 - Gly3 - Gly4 - Gln5 - Glu6 - Ala7 - + ++Ser8 - Gly9 - Asn10 - Lys11 - Trp12 - Pro13 - Trp14 - Gln15 - Val16 - Ser17 - Leu18 - Arg19 - Val20 - --21 - Asp - 22Thr23 - Tyr24 - Typ25 - ,在第21位残基处有一个假定的糖基化位点。该序列与其他类胰蛋白酶的N端有72 - 80%的同源性,但与牛胰蛋白酶的N端只有40%的同源性。