首页> 外文期刊>Applied and Environmental Microbiology >Purification and Characterization of Two Functional Forms of Intracellular Protease PfpI from the Hyperthermophilic Archaeon Pyrococcus furiosus.
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Purification and Characterization of Two Functional Forms of Intracellular Protease PfpI from the Hyperthermophilic Archaeon Pyrococcus furiosus.

机译:来自嗜热古生热球菌的两种细胞内蛋白酶PfpI功能形式的纯化和表征。

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The hyperthermophilic archaeon Pyrococcus furiosus grows optimally at 100(deg)C by the fermentation of peptides and carbohydrates. From this organism, we have purified to homogeneity an intracellular protease, previously designated PfpI (P. furiosus protease I) (S. B. Halio, I. I. Blumentals, S. A. Short, B. M. Merrill, and R. M. Kelly, J. Bacteriol. 178:2605-2612, 1996). The protease contains a single subunit with a molecular mass of approximately 19 kDa and exists in at least two functional conformations, which were purified separately. The predominant form from the purification (designated PfpI-C1) is a hexamer with a molecular mass of 124 (plusmn) 6 kDa (by gel filtration) and comprises about 90% of the total activity. The minor form (designated PfpI-C2) is trimeric with a molecular mass of 59 (plusmn) 3 kDa. PfpI-C1 hydrolyzed both basic and hydrophobic residues in the P1 position, indicating trypsin- and chymotrypsin-like specificities, respectively. The temperature optimum for Ala-Ala-Phe-7-amido-4-methylcoumarin (AAF-MCA) hydrolysis was (symbl)85(deg)C both for purified PfpI-C1 and for proteolytic activity in P. furiosus cell extract. In contrast, the temperature optimum for PfpI prepared by incubating a cell extract of P. furiosus at 98(deg)C in 1% sodium dodecyl sulfate for 24 h at 95 to 100(deg)C (I. I. Blumentals, A. S. Robinson, and R. M. Kelly, Appl. Environ. Microbiol. 56:1255-1262, 1990), designated PfpI-H, was (symbl)100(deg)C. Moreover, the half-life of activity of PfpI-C1 at 98(deg)C was less than 30 min, in contrast to a value of more than 33 h measured for PfpI-H. PfpI-C1 appears to be a predominant serine-type protease in cell extracts but is converted in vitro, probably in part by deamidation of Asn and Gln residues, to a more thermally stable form (PfpI-H) by prolonged heat treatment. The deamination hypothesis is supported by the differences in the measured pI values of PfpI-C1 (6.1) and PfpI-H (3.8). High levels of potassium phosphate (>0.5 mM) were found to extend the half-life of PfpI-C1 activity towards AAF-MCA by up to 2.5-fold at 90(deg)C, suggesting that compatible solutes play an important role in the in vivo function of this protease.
机译:嗜热古菌激烈热球菌通过肽和碳水化合物的发酵在100°C最佳生长。从这种生物体中,我们纯化了以前称为PfpI(P. furiosus蛋白酶I)的细胞内蛋白酶至同质(SB Halio,II Blumentals,SA Short,BM Merrill和RM Kelly,J. Bacteriol。178:2605-2612, 1996)。蛋白酶包含单个亚基,分子量约为19 kDa,并以至少两个功能构象存在,分别纯化。纯化的主要形式(命名为PfpI-C1)是六聚体,分子量为124(加)6 kDa(通过凝胶过滤),约占总活性的90%。次要形式(称为PfpI-C2)是三聚体,分子量为59(正)3 kDa。 PfpI-C1水解了P1位置的碱性和疏水残基,分别表明了胰蛋白酶和胰凝乳蛋白酶样的特异性。对于Ala-Ala-Phe-7-氨基-4-甲基香豆素(AAF-MCA)水解,最适温度为纯化的PfpI-C1和激烈的P. furiosus细胞提取物中的蛋白水解活性均为(symbl)85℃。相比之下,PfpI的最佳温度是通过在98%的温度下于1%十二烷基硫酸钠中于95°C至100°C下孵育狂热疟原虫的细胞提取物24小时而制得的(II Blumentals,AS Robinson和RM命名为Pfp1-H的Kelly,Appl.Environ.Microbiol.56:1255-1262,1990)为(符号)100℃。而且,PfpI-C1的活性在98℃下的半衰期小于30分钟,而PfpI-H的测量值大于33小时。在细胞提取物中,PfpI-C1似乎是一种主要的丝氨酸型蛋白酶,但经过长时间的热处理,可能在体外(部分是通过Asn和Gln残基的脱酰胺作用)转化为更热稳定的形式(PfpI-H)。 PfpI-C1(6.1)和PfpI-H(3.8)的测量pI值的差异支持了脱氨基假说。发现高水平的磷酸钾(> 0.5 mM)可使PfpI-C1活性对AAF-MCA的半衰期在90°C时延长多达2.5倍,这表明相容性溶质在其中起着重要的作用。该蛋白酶的体内功能。

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