首页> 外文OA文献 >The simultaneous binding of lanthanide and N-acetylglucosamine inhibitors to hen egg-white lysozyme in solution by 1H and 13C nuclear magnetic resonance.
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The simultaneous binding of lanthanide and N-acetylglucosamine inhibitors to hen egg-white lysozyme in solution by 1H and 13C nuclear magnetic resonance.

机译:通过1H和13C核磁共振将镧系元素和N-乙酰氨基葡糖抑制剂与蛋清溶菌酶同时结合。

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摘要

Lanthanide ions and the N-acetylglucosamine (GlcNAc) sugars are able to bind simultaneously to hen egg-white lysozyme (EC 3.2.1.17). The present study characterizes the properties of the ternary complexes with lysozyme, which involve up to seven paramagnetic lanthanides and two diamagnetic lanthanides, together with alpha GlcNAc, beta GlcNAc, alpha MeGlcNAc and beta MeGlcNAc. pH titrations and binding titrations of the GlcNAc sugars with lysozyme-La(III) complexes show that the GlcNAc sugars bind to at least two independent sites and that one of them competes with La(III) for binding to lysozyme. Given the known binding site of lanthanides at Asp-52 and Glu-35, the competitive binding site of GlcNAc is identified as subsite E. A simple analysis of the paramagnetic-lanthanide-induced shifts shows that the GlcNAc sugar binds in subsite C, in accordance with crystallographic results [Perkins, Johnson, Machin & Phillips (1979) Biochem. J. 181, 21-36]. This finding was refined by several computer analyses of the lanthanide-induced shifts of 17 proton and carbon resonances of beta MeGlcNAc. Good fits were obtained for all the signals, except for two that were affected by exchange broadening phenomena. No distinction could be made between a fit for a two-position model of Ln(III) binding with axial symmetry to lysozyme, according to the crystallographic result, or a one-position model with axial symmetry where the Ln(III) is positioned mid-way between Asp-52 and Glu-35. Although this work establishes the feasibility of lanthanide shift reagents for study of protein-ligand complexes, further work is required to establish the manner in which lanthanides bind to lysozyme in solution.
机译:镧系元素离子和N-乙酰氨基葡萄糖(GlcNAc)糖能够同时与鸡蛋清溶菌酶结合(EC 3.2.1.17)。本研究表征了溶菌酶的三元复合物的性质,其中涉及多达七个顺磁性镧系元素和两个反磁性镧系元素,以及αGlcNAc,βGlcNAc,αMeGlcNAc和βMeGlcNAc。用溶菌酶-La(III)配合物对GlcNAc糖进行pH滴定和结合滴定表明,GlcNAc糖与至少两个独立的位点结合,并且其中一个与La(III)竞争与溶菌酶的结合。给定镧系元素在Asp-52和Glu-35处的已知结合位点,可以将GlcNAc的竞争性结合位点确定为亚位点E。对顺磁性镧系元素引起的转变的简单分析表明,GlcNAc糖结合在亚位点C,根据晶体学结果[Perkins,Johnson,Machin&Phillips(1979)Biochem。 J. 181,21-36]。通过对镧系元素引起的17个质子的转变和βMeGlcNAc的碳共振的几种计算机分析,对这一发现进行了完善。除了两个受交换扩展现象影响的信号以外,所有信号均获得了良好的拟合。根据晶体学结果,无法区分轴向对称地与溶菌酶结合的Ln(III)的两个位置模型的拟合,还是其中Ln(III)位于中间的具有轴向对称性的一位置模型的拟合之间的区别-在Asp-52和Glu-35之间。尽管这项工作确立了镧系元素转移试剂用于研究蛋白质-配体复合物的可行性,但仍需要进一步的工作来确定镧系元素与溶液中溶菌酶结合的方式。

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