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首页> 外文期刊>Journal of Molecular Biology >Selective removal of individual disulfide bonds within a potato type II serine proteinase inhibitor from Nicotiana alata reveals differential stabilization of the reactive-site loop.
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Selective removal of individual disulfide bonds within a potato type II serine proteinase inhibitor from Nicotiana alata reveals differential stabilization of the reactive-site loop.

机译:从烟草中选择性除去II型马铃薯丝氨酸蛋白酶抑制剂中的单个二硫键揭示了反应位点环的不同稳定性。

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The 53-amino-acid trypsin inhibitor 1 from Nicotiana alata (T1) belongs to the potato type II family also known as the PinII family of proteinase inhibitors, one of the major families of canonical proteinase inhibitors. T1 contains four disulfide bonds, two of which (C4-C41 and C8-C37) stabilize the reactive-site loop. To investigate the influence of these two disulfide bonds on the structure and function of potato II inhibitors, we constructed two variants of T1, C4A/C41A-T1 and C8A/C37A-T1, in which these two disulfide bonds were individually removed and replaced by alanine residues. Trypsin inhibition assays show that wild-type T1 has a K(i) of <5 nM, C4A/C41A-T1 has a weaker K(i) of approximately 350 nM, and the potency of the C8A/C37A variant is further decreased to a K(i) of approximately 1.8 microM. To assess the influence of the disulfide bonds on the structure of T1, we determined the structure and dynamics of both disulfide variants by NMR spectroscopy. The structure of C4A/C41A-T1 and the amplitude of intrinsic flexibility in the reactive-site loop resemble that of the wild-type protein closely, despite the lack of the C4-C41 disulfide bond, whereas the timescale of motions is markedly decreased. The rescue of the structure despite loss of a disulfide bond is due to a previously unrecognized network of interactions, which stabilizes the structure of the reactive-site loop in the region of the missing disulfide bond, while allowing intrinsic motions on a fast (picosecond-nanosecond) timescale. In contrast, no comparable interactions are present around the C8-C37 disulfide bond. Consequently, the reactive-site loop becomes disordered and highly flexible in the structure of C8A/C37A-T1, making it unable to bind to trypsin. Thus, the reactive-site loop of T1 is stabilized differently by the C8-C37 and C4-C41 disulfide bonds. The C8-C37 disulfide bond is essential for the inhibitory activity of T1, whereas the C4-C41 disulfide bond is not as critical for maintaining the three-dimensional structure and function of the molecule but is responsible for maintaining flexibility of the reactive-site loop on a microsecond-nanosecond timescale.
机译:来自烟碱烟草(T1)的53个氨基酸的胰蛋白酶抑制剂1属于马铃薯II型家族,也被称为蛋白酶抑制剂PinII家族,是规范性蛋白酶抑制剂的主要家族之一。 T1包含四个二硫键,其中两个(C4-C41和C8-C37)稳定了反应位环。为了研究这两个二硫键对马铃薯II抑制剂结构和功能的影响,我们构建了T1的两个变体C4A / C41A-T1和C8A / C37A-T1,其中这两个二硫键被分别去除并替换为丙氨酸残基。胰蛋白酶抑制试验表明,野生型T1的K(i)<5 nM,C4A / C41A-T1的K(i)较弱,约为350 nM,C8A / C37A变体的效力进一步降低至大约1.8 microM的K(i)。为了评估二硫键对T1结构的影响,我们通过NMR光谱法确定了两个二硫键变体的结构和动力学。尽管缺乏C4-C41二硫键,但C4A / C41A-T1的结构和反应位点环中固有柔性的幅度与野生型蛋白非常相似,而运动的时间尺度却明显缩短。尽管丢失了二硫键,但结构的挽救归因于先前无法识别的相互作用网络,该网络稳定了缺失的二硫键区域中反应位环的结构,同时允许快速(皮秒-秒)内在运动十亿分之一秒)相反,在C8-C37二硫键周围没有可比的相互作用。因此,反应位环在C8A / C37A-T1的结构中变得无序且高度灵活,使其无法与胰蛋白酶结合。因此,T1的反应位环通过C8-C37和C4-C41二硫键具有不同的稳定性。 C8-C37二硫键对于T1的抑制活性必不可少,而C4-C41二硫键对于维持分子的三维结构和功能并不那么关键,但对维持反应位环的柔韧性至关重要在微秒至纳秒的时间尺度上。

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