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需要钙离子以提高来自嗜热球菌的 Tk-枯草杆菌蛋白酶的热稳定性。

Requirement of Ca(2+) ions for the hyperthermostability of Tk-subtilisin from Thermococcus kodakarensis.

机构信息

Department of Material and Life Science, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Biochemistry. 2012 Jul 3;51(26):5369-78. doi: 10.1021/bi300427u. Epub 2012 Jun 19.

Abstract

Tk-subtilisin, a hyperthermostable subtilisin-like serine protease from Thermococcus kodakarensis, matures from the inactive precursor, Pro-Tk-subtilisin (Pro-TKS), upon autoprocessing and degradation of the propeptide (Tkpro). It contains seven Ca(2+) ions. Four of them (Ca2-Ca5) are responsible for folding of Tk-subtilisin. In this study, to clarify the role of the other three Ca(2+) ions (Ca1, Ca6, and Ca7), we constructed Pro-TKS derivatives lacking the Ca1 ion (Pro-TKS/ΔCa1), Ca6 ion (Pro-TKS/ΔCa6), and Ca7 ion (Pro-TKS/ΔCa7), and their active site mutants (Pro-S324A/ΔCa1, Pro-S324A/ΔCa6, and Pro-S324A/ΔCa7, respectively). Pro-TKS/ΔCa6 and Pro-TKS/ΔCa7 fully matured into their active forms upon incubation at 80 °C for 30 min as did Pro-TKS. The mature enzymes were as active as Tk-subtilisin at 80 °C, indicating that the Ca6 and Ca7 ions are not important for activity. In contrast, Pro-TKS/ΔCa1 matured poorly at 80 °C because of the instability of its mature domain. The enzymatic activity of Tk-subtilisin/ΔCa1 was determined to be 50% of that of Tk-subtilisin using the refolded protein. This result suggests that the Ca1 ion is required for the maximal activity of Tk-subtilisin. The refolding rates of all Pro-S324A derivatives were comparable to that of Pro-S324A (active site mutant of Pro-TKS), indicating that these Ca(2+) ions are not needed for folding of Tk-subtilisin. The stabilities of Pro-S324A/ΔCa1 and Pro-S324A/ΔCa6 were decreased by 26.6 and 11.7 °C, respectively, in T(m) compared to that of Pro-S324A. The half-lives of Tk-subtilisin/ΔCa6 and Tk-subtilisin/ΔCa7 at 95 °C were 8- and 4-fold lower than that of Tk-subtilisin, respectively. These results suggest that the Ca1, Ca6, and Ca7 ions, especially the Ca1 ion, contribute to the hyperthermostabilization of Tk-subtilisin.

摘要

从乏硫菌Thermococcus kodakarensis 中分离得到的 Tk-枯草溶菌素,是一种超耐热的枯草溶菌素样丝氨酸蛋白酶。它以前体蛋白酶 Pro-Tk-枯草溶菌素(Pro-TKS)的形式合成,经自动加工和前肽(Tkpro)降解后成熟为有活性的蛋白酶。Tk-枯草溶菌素含有 7 个 Ca2+离子,其中 4 个(Ca2-Ca5)负责 Tk-枯草溶菌素的折叠。在本研究中,为了阐明另外 3 个 Ca2+离子(Ca1、Ca6 和 Ca7)的作用,我们构建了缺乏 Ca1 离子(Pro-TKS/ΔCa1)、Ca6 离子(Pro-TKS/ΔCa6)和 Ca7 离子(Pro-TKS/ΔCa7)的 Pro-TKS 衍生物,以及它们的活性位点突变体(Pro-S324A/ΔCa1、Pro-S324A/ΔCa6 和 Pro-S324A/ΔCa7)。Pro-TKS/ΔCa6 和 Pro-TKS/ΔCa7 在 80°C 孵育 30 分钟后完全成熟为有活性的形式,与 Pro-TKS 相同。成熟酶在 80°C 下的活性与 Tk-枯草溶菌素相当,表明 Ca6 和 Ca7 离子对活性不重要。相比之下,Pro-TKS/ΔCa1 在 80°C 下成熟不良,因为其成熟结构域不稳定。使用重折叠蛋白测定 Tk-枯草溶菌素/ΔCa1 的酶活性为 Tk-枯草溶菌素的 50%。这一结果表明 Ca1 离子是 Tk-枯草溶菌素最大活性所必需的。所有 Pro-S324A 衍生物的重折叠速率与 Pro-S324A(Pro-TKS 的活性位点突变体)相当,表明这些 Ca2+离子不是 Tk-枯草溶菌素折叠所必需的。与 Pro-S324A 相比,Pro-S324A/ΔCa1 和 Pro-S324A/ΔCa6 的 Tm 值分别降低了 26.6°C 和 11.7°C,表明 Ca1 离子对 Tk-枯草溶菌素的超耐热性有贡献。Pro-TKS/ΔCa6 和 Pro-TKS/ΔCa7 在 95°C 下的半衰期分别比 Tk-枯草溶菌素低 8 倍和 4 倍,表明 Ca1、Ca6 和 Ca7 离子,特别是 Ca1 离子,有助于 Tk-枯草溶菌素的超耐热性。

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