首页> 外文期刊>Journal of natural toxins >Predicted three-dimensional structural models of venom serine protease inhibitors and their interactions with trypsin and chymotrypsin.
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Predicted three-dimensional structural models of venom serine protease inhibitors and their interactions with trypsin and chymotrypsin.

机译:毒液丝氨酸蛋白酶抑制剂的三维结构模型及其与胰蛋白酶和胰凝乳蛋白酶的相互作用。

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摘要

Three homology models of trypsin and chymotrypsin inhibitor polypeptides from snake venom of Naja naja naja and Leaf-nosed viper in the unbound state and in complex with trypsin and chymotrypsin were built based on homology to bovine pancreatic trypsin inhibitor (BPTI). These venom inhibitors belong to the Kunitz-type inhibitor family, which is characterized by a distinct tertiary fold with three-conserved disulfide bonds. The general folding pattern in these trypsin and chymotrypsin inhibitor homology models is conserved when compared to BPTI. The respective orientations of the inhibitors bound to trypsin/chymotrypsin are similar to that of BPTI bound to bovine trypsin/chymotrypsin. The principal binding loop structure of the inhibitors fills the active site of enzymes in a substrate-like conformation and forms a series of independent main-chain and side-chain interactions with enzymes. In order to provide the possible fingerprints for molecular recognition at the enzyme-inhibitor interface, a detailed theoretical analysis of the interactions between the principal binding loop of these inhibitors and active site of trypsin/chymotrypsin is performed based on available crystal structural, site-directed mutagenetic, kinetic, and sequence analysis studies. Despite the variations present at different positions of the principal binding loop of trypsin and chymotrypsin inhibitor models from Leaf-nosed viper and cobra Naja naja naja, respectively (designated as LnvTI and NCI), there are favorable subsite binding interactions which are expected to exhibit equally potent inhibitory activity as BPTI. On the contrary, significant mutations at several secondary specificity positions in the Naja naja naja trypsin inhibitor (designated as NTI) are likely to affect different inhibitor-enzyme-subsites interactions. This may explain the observed increased inhibitory activity of this polypeptide on a structural basis.
机译:基于与牛胰胰蛋白酶抑制剂(BPTI)的同源性,建立了来自眼镜蛇(Naja naja naja)蛇毒的胰蛋白酶和胰凝乳蛋白酶抑制剂多肽的三种同源性模型,它们处于未结合状态并与胰蛋白酶和胰凝乳蛋白酶复合并处于未结合状态。这些毒液抑制剂属于Kunitz型抑制剂家族,其特征是具有三个保守的二硫键的独特的三级折叠。与BPTI相比,这些胰蛋白酶和胰凝乳蛋白酶抑制剂同源性模型中的一般折叠模式是保守的。与胰蛋白酶/胰凝乳蛋白酶结合的抑制剂的各自方向类似于与牛胰蛋白酶/胰凝乳蛋白酶结合的BPTI的方向。抑制剂的主要结合环结构以底物样构象填充酶的活性位点,并与酶形成一系列独立的主链和侧链相互作用。为了提供可能的指纹图谱,以便在酶-抑制剂界面进行分子识别,基于可用的晶体结构,定点分析,对这些抑制剂的主要结合环与胰蛋白酶/胰凝乳蛋白酶的活性位点之间的相互作用进行了详细的理论分析。诱变,动力学和序列分析研究。尽管分别来自叶鼻vi蛇和眼镜蛇眼镜蛇眼镜蛇的胰蛋白酶和胰凝乳蛋白酶抑制剂模型的主要结合环的不同位置存在差异(分别指定为LnvTI和NCI),但仍存在有利的亚位点结合相互作用,预期它们将表现出相同的状态作为BPTI的有效抑制活性。相反,眼镜蛇眼镜蛇中的几个次要特异性位置的显着突变(指定为NTI)可能会影响不同的抑制剂-酶-亚位点相互作用。这可以解释在结构上观察到的该多肽抑制活性的增加。

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