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首页> 外文期刊>Journal of Molecular Biology >Structure of single-disulfide variants of bovine pancreatic trypsin inhibitor (BPTI) as probed by their binding to bovine beta-trypsin
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Structure of single-disulfide variants of bovine pancreatic trypsin inhibitor (BPTI) as probed by their binding to bovine beta-trypsin

机译:牛胰胰蛋白酶抑制剂(BPTI)的单二硫键变体与牛β-胰蛋白酶结合的结构

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Native bovine pancreatic trypsin inhibitor (BPTI) contains three disulfide bonds: Cys5-Cys55, Cys14-Cys38 and Cys30-Cys51. Correct cysteine pairing, native structure, and full anti-proteinase activity can be restored in the process of oxidative refolding of reduced BPTI. Oxidative refolding starts with the formation of single disulfide intermediates. All 15 single-disulfide variants of BPTI (three native and 12 non-native combinations) have been expressed in Escherichia coli. in each variant the remaining four cysteine residues were replaced by alanine. Four of these variants are shown here to inhibit bovine beta-trypsin: three of them contain native and one non-native (Cys5-Cys51) disulfide. All but one (Cys5-Cys55) variant are slowly digested by the enzyme, therefore measurements were performed at pH 4.0, at which trypsin activity is low. Binding constants of these four single disulfide variants were at least two orders of magnitude lower than for native BPTI. Remarkably, in some of the variants the binding constants were found to be higher for the reduced rather than for the oxidized form of the variant. Also for the fully reduced native BPTI, determined here, the binding constant is of considerable value. Two sets of control experiments demonstrated that the binding of reduced native BPTI to trypsin is specific. Ln the first, mutation of Lys15 (P1 position) in the binding loop abolished binding of the reduced forms to trypsin. Ln the second, the binding of reduced native BPTI to anhydrotrypsin yielded the expected UV difference spectra. in general, the results obtained indicate that the inhibitor activity can be induced even in the reduced protein. This activity is not a local effect, such as the nature of residues surrounding the binding loop, but rather is induced by residual structure in the unfolded protein. This structure has been shown to consist of a set of hydrophobic residues and the data presented here indicate that reduced cysteine residues provide further stabilization of such a hydrophobic cluster. On the other hand, improper pairing of the cysteine residues in non-native single disulfide variants destabilizes the enzyme-inhibitor complex by inducing deformations of the binding loop region. (C) 1998 Academic Press Limited. [References: 76]
机译:天然牛胰胰蛋白酶抑制剂(BPTI)包含三个二硫键:Cys5-Cys55,Cys14-Cys38和Cys30-Cys51。在还原的BPTI的氧化复性过程中,可以恢复正确的半胱氨酸配对,天然结构和完整的抗蛋白酶活性。氧化重折叠始于单个二硫键中间体的形成。 BPTI的所有15个单二硫键变体(三种天然和12种非天然组合)均已在大肠杆菌中表达。在每个变体中,剩余的四个半胱氨酸残基被丙氨酸替代。这些变体中有四个抑制牛β-胰蛋白酶:其中三个含有天然和非天然(Cys5-Cys51)二硫化物。除一种(Cys5-Cys55)变体外,所有其他变体均会被酶缓慢消化,因此在pH 4.0(胰蛋白酶活性较低)下进行测量。这四个单二硫键变体的结合常数比天然BPTI低至少两个数量级。值得注意的是,在某些变体中,发现还原形式的结合常数高于氧化形式的结合常数。同样对于此处确定的完全降低的天然BPTI,结合常数具有相当大的价值。两组对照实验表明,还原的天然BPTI与胰蛋白酶的结合是特异性的。首先,结合环中Lys15(P1位置)的突变消除了还原形式与胰蛋白酶的结合。第二,还原的天然BPTI与脱水胰蛋白酶的结合产生了预期的UV差异光谱。通常,获得的结果表明,即使在还原的蛋白质中也可以诱导抑制剂活性。该活性不是局部作用,例如结合环周围残基的性质,而是由未折叠蛋白中的残留结构诱导的。已经表明该结构由一组疏水残基组成,并且此处给出的数据表明还原的半胱氨酸残基提供了这种疏水簇的进一步稳定。另一方面,非天然的单个二硫键变体中半胱氨酸残基的不正确配对通过诱导结合环区域的变形而使酶-抑制剂复合物不稳定。 (C)1998 Academic Press Limited。 [参考:76]

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