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一种来自于Thermococcus kodakaraensis 的枯草杆菌蛋白酶同源物的替代成熟形式,Tk-SP,在存在 Ca2+的情况下被鉴定出来。

An alternative mature form of subtilisin homologue, Tk-SP, from Thermococcus kodakaraensis identified in the presence of Ca2+.

机构信息

Department of Material and Life Science, Graduate School of Engineering, Osaka University, Japan.

出版信息

FEBS J. 2011 Jun;278(11):1901-11. doi: 10.1111/j.1742-4658.2011.08107.x. Epub 2011 Apr 13.

Abstract

Pro-Tk-SP from Thermococcus kodakaraensis consists of the four domains: N-propeptide, subtilisin (EC 3.4.21.62) domain, β-jelly roll domain and C-propeptide. To analyze the maturation process of this protein, the Pro-Tk-SP derivative with the mutation of the active-site serine residue to Cys (Pro-Tk-S359C), Pro-Tk-S359C derivatives lacking the N-propeptide (ProC-Tk-S359C) and both propeptides (Tk-S359C), and a His-tagged form of the isolated C-propeptide (ProC*) were constructed. Pro-Tk-S359C was purified mostly in an autoprocessed form in which the N-propeptide is autoprocessed but the isolated N-propeptide (ProN) forms a stable complex with ProC-Tk-S359C, indicating that the N-propeptide is autoprocessed first. The subsequent maturation process was analyzed using ProC-Tk-S359C, instead of the ProN:ProC-Tk-S359C complex. The C-propeptide was autoprocessed and degraded when ProC-Tk-S359C was incubated at 80 °C in the absence of Ca(2+). However, it was not autoprocessed in the presence of Ca(2+). Comparison of the susceptibility of ProC* to proteolytic degradation in the presence and absence of Ca(2+) suggests that the C-propeptide becomes highly resistant to proteolytic degradation in the presence of Ca(2+). We propose that Pro-Tk-SP derivative lacking N-propeptide (Val114-Gly640) represents a mature form of Pro-Tk-SP in a natural environment. The enzymatic activity of ProC-Tk-S359C was higher than (but comparable to) that of Tk-S359C, suggesting that the C-propeptide is not important for activity. However, the T(m) value of ProC-Tk-S359C determined by far-UV CD spectroscopy was higher than that of Tk-S359C by 25.9 °C in the absence of Ca(2+) and 7.5 °C in the presence of Ca(2+), indicating that the C-propeptide contributes to the stabilization of ProC-Tk-S359C.

摘要

从 Thermococcus kodakaraensis 中提取的 Pro-Tk-SP 由四个结构域组成:N-前肽、枯草杆菌蛋白酶(EC 3.4.21.62)结构域、β-发夹环结构域和 C-前肽。为了分析该蛋白的成熟过程,构建了突变活性部位丝氨酸残基为半胱氨酸(Pro-Tk-S359C)的 Pro-Tk-SP 衍生物、缺失 N-前肽(ProC-Tk-S359C)和两个前肽(Tk-S359C)的 ProC-Tk-S359C 衍生物,以及分离的 C-前肽(ProC*)的 His 标记形式。Pro-Tk-S359C 主要以自加工形式纯化,其中 N-前肽自动加工,但分离的 N-前肽(ProN)与 ProC-Tk-S359C 形成稳定的复合物,表明 N-前肽首先自动加工。随后使用 ProC-Tk-S359C 而不是 ProN:ProC-Tk-S359C 复合物分析成熟过程。当 ProC-Tk-S359C 在 80°C 下没有 Ca(2+)孵育时,C-前肽会自动加工并降解。然而,在 Ca(2+)存在下,它不会自动加工。在有和没有 Ca(2+)存在下,ProC*对蛋白水解降解的敏感性比较表明,C-前肽在 Ca(2+)存在下对蛋白水解降解具有高度抗性。我们提出,缺失 N-前肽(Val114-Gly640)的 Pro-Tk-SP 衍生物代表天然环境中 Pro-Tk-SP 的成熟形式。ProC-Tk-S359C 的酶活性高于(但与)Tk-S359C,表明 C-前肽对活性不重要。然而,在没有 Ca(2+)的情况下,通过远紫外 CD 光谱测定的 ProC-Tk-S359C 的 T(m)值比 Tk-S359C 高 25.9°C,在 Ca(2+)存在的情况下高 7.5°C,表明 C-前肽有助于 ProC-Tk-S359C 的稳定。

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