首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Increase in activation rate of Pro-Tk-subtilisin by a single nonpolar-to-polar amino acid substitution at the hydrophobic core of the propeptide domain
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Increase in activation rate of Pro-Tk-subtilisin by a single nonpolar-to-polar amino acid substitution at the hydrophobic core of the propeptide domain

机译:在前肽域的疏水核心处通过单个非极性至极性氨基酸取代来增加Pro-Tk-枯草杆菌蛋白酶的激活率

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摘要

Tk-subtilisin (Gly70-Gly398) is a subtilisin homolog from Thermococcus kodakarensis. Active Tk-subtilisin is produced from its inactive precursor, Pro-Tk-subtilisin (Gly1-Gly398), by autoprocessing and degradation of the propeptide (Tk-propeptide, Gly1-Leu69). This activation process is extremely slow at moderate temperatures owing to high stability of Tk-propeptide. Tk-propeptide is stabilized by the hydrophobic core. To examine whether a single nonpolar-to-polar amino acid substitution at this core affects the activation rate of Pro-Tk-subtilisin, the Pro-Tk-subtilisin derivative with the Phe17→His mutation (Pro-F17H), Tk-propeptide derivative with the same mutation (F17H-propeptide), and two active-site mutants of Pro-F17H (Pro-F17H/S324A and Pro-F17H/S324C) were constructed. The crystal structure of Pro-F17H/S324A was nearly identical to that of Pro-S324A, indicating that the mutation does not affect the structure of Pro-Tk-subtilisin. The refolding rate of Pro-F17H/S324A and autoprocessing rate of Pro-F17H/S324C were also nearly identical to those of their parent proteins (Pro-S324A and Pro-S324C). However, the activation rate of Pro-F17H greatly increased when compared with that of Pro-Tk-subtilisin, such that Pro-F17H is efficiently activated even at 40°C. The far-UV circular dichroism spectrum of F17H-propeptide did not exhibit a broad trough at 205–230 nm, which is observed in the spectrum of Tk-propeptide. F17H-propeptide is more susceptible to chymotryptic degradation than Tk-propeptide. These results suggest that F17H-propeptide is unfolded in an isolated form and is therefore rapidly degraded by Tk-subtilisin. Thus, destabilization of the hydrophobic core of Tk-propeptide by a nonpolar-to-polar amino acid substitution is an effective way to increase the activation rate of Pro-Tk-subtilisin.
机译:Tk-枯草杆菌蛋白酶(Gly70-Gly398)是来自柯达卡尔热球菌的枯草杆菌蛋白酶同系物。活性Tk-枯草杆菌蛋白酶是由其前体Pro-Tk-枯草杆菌蛋白酶(Gly1-Gly398)通过自动加工和降解前肽(Tk-proeptide,Gly1-Leu69)制成的。由于Tk-前肽的高稳定性,该活化过程在中等温度下极其缓慢。 Tk-前肽被疏水核稳定。要检查此核心上的单个非极性氨基酸转换是否会影响Pro-Tk-枯草杆菌蛋白酶,具有Phe17→His突变的Pro-Tk-枯草杆菌蛋白酶衍生物(Pro-F17H),Tk-前肽衍生物的活化速率具有相同的突变(F17H-前肽),并构建了两个Pro-F17H的活性位点突变体(Pro-F17H / S324A和Pro-F17H / S324C)。 Pro-F17H / S324A的晶体结构与Pro-S324A的晶体结构几乎相同,表明该突变不影响Pro-Tk-枯草杆菌蛋白酶的结构。 Pro-F17H / S324A的重折叠率和Pro-F17H / S324C的自动加工率也与其亲本蛋白(Pro-S324A和Pro-S324C)几乎相同。然而,与Pro-Tk-枯草杆菌蛋白酶相比,Pro-F17H的活化率大大提高,使得即使在40℃下Pro-F17H也被有效活化。 FkH-前肽的远紫外圆二色性光谱在205-230 nm处没有显示出宽谷,这是在Tk-前肽的光谱中观察到的。 F17H-前肽比Tk-前肽更容易受到胰凝乳蛋白酶的降解。这些结果表明,F17H-前肽以分离的形式展开,因此被Tk-枯草杆菌蛋白酶快速降解。因此,通过非极性至极性氨基酸取代使Tk-前肽的疏水性核心不稳定是增加Pro-Tk-枯草杆菌蛋白酶激活率的有效方法。

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