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植物过氧化物酶体中内肽酶的特性分析。

Characterization of endoproteases from plant peroxisomes.

作者信息

Distefano S, Palma J M, Gómez M, Río L A

机构信息

Departamento de Bioquímica, Biología Celular y Molecular de Plantas, Estación Experimental del Zaidín, CSIC, Apdo. 419, E-18080 Granada, Spain.

出版信息

Biochem J. 1997 Oct 15;327 ( Pt 2)(Pt 2):399-405. doi: 10.1042/bj3270399.

Abstract

In this work, the characterization of endoprotease (EP) isoenzymes in peroxisomes is reported for the first time in cell organelles purified from pea leaves (Pisum sativum L.). A comparative analysis of the endo-proteolytic activity in peroxisomes purified from young (15-day-old) and senescent (50-day-old) leaves was carried out. Peroxisomes purified from senescent leaves showed a much higher endo-proteolytic activity than organelles from young plants. A 16 h incubation with exogenous substrates was the threshold time for the detection of a linear increase in the endo-proteolytic activity of peroxisomes from senescent leaves. Three EP isoenzymes (EP2, EP4 and EP5), having molecular masses of 88, 64 and 50 kDa respectively, were found in young plants by using SDS/polyacrylamide-gradient gels co-polymerized with gelatin. However, four additional isoenzymes (EP1, EP3, EP6 and EP7), with molecular masses of 220, 76, 46 and 34 kDa respectively, were detected in senescent plants. All the isoenzymes detected in peroxisomes from both young and senescent leaves were neutral proteases. By using different class-specific inhibitors, the electrophoretically separated EP isoenzymes were characterized as three serine-proteinases (EP1, EP3 and EP4), two cysteine-proteinases (EP2 and EP6) and a metallo-proteinase (EP7), and EP5 might be a metal-dependent serine-proteinase. Moreover, a peroxisomal polypeptide of 64 kDa was recognized by an antibody against a thiol-protease. The serine-proteinase isoenzymes (EP1, EP3 and EP4), which represent approx. 70% of the total EP activity of peroxisomes, showed a notable thermal stability, not being inhibited by incubation at 50 degrees C for 1 h.

摘要

在这项研究中,首次报道了从豌豆叶片(豌豆)中纯化的细胞器过氧化物酶体中的内切蛋白酶(EP)同工酶的特性。对从幼叶(15日龄)和衰老叶(50日龄)中纯化的过氧化物酶体中的内切蛋白水解活性进行了比较分析。从衰老叶片中纯化的过氧化物酶体显示出比幼嫩植物的细胞器更高的内切蛋白水解活性。与外源底物孵育16小时是检测衰老叶片过氧化物酶体内切蛋白水解活性线性增加的阈值时间。通过使用与明胶共聚的SDS/聚丙烯酰胺梯度凝胶,在幼嫩植物中发现了三种EP同工酶(EP2、EP4和EP5),其分子量分别为88、64和50 kDa。然而,在衰老植物中检测到另外四种同工酶(EP1、EP3、EP6和EP7),分子量分别为220、76、46和34 kDa。在幼叶和衰老叶的过氧化物酶体中检测到的所有同工酶都是中性蛋白酶。通过使用不同的类别特异性抑制剂,电泳分离的EP同工酶被鉴定为三种丝氨酸蛋白酶(EP1、EP3和EP4)、两种半胱氨酸蛋白酶(EP2和EP6)和一种金属蛋白酶(EP7),并且EP5可能是一种金属依赖性丝氨酸蛋白酶。此外,一种64 kDa的过氧化物酶体多肽被抗硫醇蛋白酶的抗体识别。占过氧化物酶体总EP活性约70%的丝氨酸蛋白酶同工酶(EP1、EP3和EP4)表现出显著的热稳定性,在50℃孵育1小时不会被抑制。

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