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嗜热栖热菌甲硫氨酰氨肽酶的过表达及二价金属结合特性

Overexpression and divalent metal binding properties of the methionyl aminopeptidase from Pyrococcus furiosus.

作者信息

Meng Lu, Ruebush Shane, D'souza Ventris M, Copik Alicja J, Tsunasawa Susumu, Holz Richard C

机构信息

Department of Chemistry and Biochemistry, Utah State University, Logan, UT 84322-0300, USA.

出版信息

Biochemistry. 2002 Jun 11;41(23):7199-208. doi: 10.1021/bi020138p.

Abstract

The gene encoding for the methionyl aminopeptidase from the hyperthermophilic archaeon Pyrococcus furiosus (PfMetAP-II; EC 3.4.11.18) has been inserted into a pET 27b(+) vector and overexpressed in Escherichia coli. The new expression system resulted in a 5-fold increase in purified enzyme obtained from a 5 L fermentor growth. The as-purified PfMetAP-II enzyme, to which no exogenous metal ions or EDTA was added, was found to have 1.2 equiv of zinc and 0.1 equiv of iron present by ICP-AES analysis. This enzyme had a specific activity of 5 units/mg, a 60-fold decrease from the fully loaded Fe(II) enzymes. When an additional 2 equiv of Zn(II) was added to the as-purified PfMetAP-II, no activity could be detected. The combination of these data with previously reported whole cell studies on EcMetAP-I further supports the suggestion that the in vivo metal ion for all MetAP's is Fe(II). Both Co(II)- and Fe(II)-loaded PfMetAP-II showed similar substrate specificities to EcMetAP-I. Substrate binding was largely affected by the amino acid in the P1 position and the length of the polypeptide. The substrates MSSHRWDW and MP-p-NA showed the smallest K(m) values while the substrates MGMM and MP-p-NA provided the highest turnover. The catalytic efficiency (k(cat)/K(m)) of PfMetAP-II for MP-p-NA at 30 degrees C was 799 500 and 340 930 M(-1) s(-1) for Co(II)- and Fe(II)-loaded PfMetAP-II, respectively. Maximum catalytic activity was obtained with 1 equiv of Co(II) or Fe(II), and the dissociation constants (K(d)) for the first metal binding site were found to be 50 +/- 15 and 20 +/- 15 nM for Co(II)- and Fe(II)-substituted PfMetAP-II, respectively. Electronic absorption spectral titration of a 1 mM sample of apo-PfMetAP-II with Co(II) provided a dissociation constant of 0.35 +/- 0.02 mM for the second metal binding site, a 17500-fold increase compared to the first metal binding site. The electronic absorption data also indicated that both Co(II) ions reside in a pentacoordinate geometry. PfMetAP-II shows unique thermostability and the optimal temperature for substrate turnover was found to be approximately 85 degrees C at pH 7.5 in 25 mM Hepes and 150 mM KCl buffer. The hydrolysis of MGMM was measured in triplicate between 25 and 85 degrees C at eight substrate concentrations ranging from 2 to 20 mM. Both specific activity and K(m) values increased with increasing temperature. An Arrhenius plot was constructed from the k(cat) values and was found to be linear over the temperature range 25-85 degrees C, indicating that the rate-limiting step in PfMetAP-II peptide hydrolysis does not change as a function of temperature. Co(II)- and Fe(II)-loaded PfMetAP-II have similar activation energies (13.3 and 19.4 kJ/mol, respectively). The thermodynamic parameters calculated at 25 degrees C are as follows: DeltaG++ = 46.23 kJ/mol, DeltaH++ = 10.79 kJ/mol, and DeltaS++ = -119.72 J.mol(-1).K(-1) for Co(II)-loaded PfMetAP; DeltaG++ = 46.44 kJ/mol, DeltaH++ = 16.94 kJ/mol, and DeltaS++ = -99.67 J.mol(-1).K(-1) for Fe(II)-loaded PfMetAP. Interestingly, at higher temperatures (> 50 degrees C), Fe(II)-loaded PfMetAP-II is more active (1.4-fold at 85 degrees C) than Co(II)-loaded PfMetAP-II.

摘要

来自嗜热古菌激烈火球菌(PfMetAP-II;EC 3.4.11.18)的甲硫氨酰氨肽酶编码基因已被插入到pET 27b(+)载体中,并在大肠杆菌中过表达。新的表达系统使得从5升发酵罐培养物中获得的纯化酶增加了5倍。通过电感耦合等离子体原子发射光谱(ICP-AES)分析发现,纯化后的PfMetAP-II酶未添加外源金属离子或乙二胺四乙酸(EDTA),含有1.2当量的锌和0.1当量的铁。该酶的比活性为5单位/毫克,比完全负载铁(II)的酶降低了60倍。当向纯化后的PfMetAP-II中额外添加2当量的锌(II)时,未检测到活性。这些数据与先前报道的关于大肠杆菌甲硫氨酰氨肽酶-I(EcMetAP-I)的全细胞研究结果相结合,进一步支持了所有甲硫氨酰氨肽酶的体内金属离子为铁(II)这一观点。负载钴(II)和铁(II)的PfMetAP-II对EcMetAP-I表现出相似的底物特异性。底物结合在很大程度上受P1位置的氨基酸和多肽长度的影响。底物MSSHRWDW和MP-p-NA的米氏常数(K(m))最小,而底物MGMM和MP-p-NA的周转数最高。在30℃下,负载钴(II)和铁(II)的PfMetAP-II对MP-p-NA的催化效率(k(cat)/K(m))分别为799500和340930 M⁻¹ s⁻¹。用1当量的钴(II)或铁(II)可获得最大催化活性,发现钴(II)和铁(II)取代的PfMetAP-II的第一个金属结合位点的解离常数(K(d))分别为50±15和20±15 nM。用钴(II)对1 mM的脱辅基PfMetAP-II样品进行电子吸收光谱滴定,得到第二个金属结合位点的解离常数为0.35±0.02 mM,与第一个金属结合位点相比增加了17500倍。电子吸收数据还表明,两个钴(II)离子均以五配位几何构型存在。PfMetAP-II表现出独特的热稳定性,发现在25 mM Hepes和150 mM KCl缓冲液中,pH 7.5时底物周转的最佳温度约为85℃。在25至85℃之间以及2至20 mM的八个底物浓度下,对MGMM的水解进行了三次重复测量。比活性和K(m)值均随温度升高而增加。根据k(cat)值构建了阿伦尼乌斯图,发现在25 - 85℃的温度范围内呈线性,表明PfMetAP-II肽水解的限速步骤不随温度变化。负载钴(II)和铁(II)的PfMetAP-II具有相似的活化能(分别为13.3和19.4 kJ/mol)。在25℃下计算的热力学参数如下:负载钴(II)的PfMetAP的ΔG++ = 46.23 kJ/mol,ΔH++ = 10.79 kJ/mol,ΔS++ = -119.72 J·mol⁻¹·K⁻¹;负载铁(II)的PfMetAP的ΔG++ = 46.44 kJ/mol,ΔH++ = 16.94 kJ/mol,ΔS++ = -99.67 J·mol⁻¹·K⁻¹。有趣的是,在较高温度(> 50℃)下,负载铁(II)的PfMetAP-II比负载钴(II)的PfMetAP-II更具活性(85℃时高1.4倍)。

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