首页> 外文期刊>Protein Science: A Publication of the Protein Society >Directing the mode of nitrite binding to a copper-containing nitrite reductase from Alcaligenes faecalis S-6: Characterization of an active site isoleucine.
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Directing the mode of nitrite binding to a copper-containing nitrite reductase from Alcaligenes faecalis S-6: Characterization of an active site isoleucine.

机译:指导亚硝酸盐与粪便产碱杆菌S-6的含铜亚硝酸盐还原酶结合的模式:活性位点异亮氨酸的表征。

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摘要

Unlike the heme cd(1)-based nitrite reductase enzymes, the molecular mechanism of copper-containing nitrite reductases remains controversial. A key source of controversy is the productive binding mode of nitrite in the active site. To identify and characterize the molecular determinants associated with nitrite binding, we applied a combinatorial mutagenesis approach to generate a small library of six variants at position 257 in nitrite reductase from Alcaligenes faecalis S-6. The activities of these six variants span nearly two orders of magnitude with one variant, I257V, the only observed natural substitution for Ile257, showing greater activity than the native enzyme. High-resolution (> 1.8 A) nitrite-soaked crystal structures of these variants display different modes of nitrite binding that correlate well with the altered activities. These studies identify for the first time that the highly conserved Ile257 in the native enzyme is a key molecular determinant in directing a catalytically competent mode of nitrite binding in the active site. The O-coordinate bidentate binding mode of nitrite observed in native and mutant forms with high activity supports a catalytic model distinct from the heme cd(1) NiRs. (The atomic coordinates for I257V[NO(2)(-)], I257L[NO(2)(-)], I257A[NO(2)(-)], I257T[NO(2)(-)], I257M[NO(2)(-)] and I257G[NO(2)(-)] AfNiR have been deposited in the Protein Data Bank [PDB identification codes are listed in Table 2].)
机译:与基于血红素cd(1)的亚硝酸还原酶不同,含铜亚硝酸还原酶的分子机制仍然存在争议。争议的主要来源是活性部位中亚硝酸盐的有效结合方式。为了鉴定和表征与亚硝酸盐结合相关的分子决定因素,我们应用了组合诱变方法,从粪便产碱杆菌S-6产生亚硝酸还原酶中第257位六个变体的小文库。这六个变体的活性跨越近两个数量级,其中一个变体I257V是唯一观察到的Ile257天然取代,表现出比天然酶更大的活性。这些变体的高分辨率(> 1.8 A)浸入亚硝酸盐的晶体结构显示出不同的亚硝酸盐结合模式,这些模式与改变的活性密切相关。这些研究首次确定了天然酶中高度保守的Ile257是在活性位点中指导亚硝酸盐结合的催化感受态模式的关键分子决定因素。 O坐标的亚硝酸盐以高活性的天然和突变形式观察到的亚硝酸盐结合模式支持不同于血红素cd(1)NiRs的催化模型。 (I257V [NO(2)(-)],I257L [NO(2)(-)],I257A [NO(2)(-)],I257T [NO(2)(-)],I257M的原子坐标[NO(2)(-)]和I257G [NO(2)(-)] AfNiR已保存在蛋白质数据库中[PDB识别码列于表2]。

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