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溶菌酶与久效磷加合物的生物物理特性

Biophysical aspects of lysozyme adduct with monocrotophos.

作者信息

Amaraneni Sreenivasa Rao, Kumar Sudhir, Gourinath Samudrala

机构信息

Department of Chemistry, Alliance College of Engineering and Design, Alliance University, Bangalore, 562106, India,

出版信息

Anal Bioanal Chem. 2014 Sep;406(22):5477-85. doi: 10.1007/s00216-014-7953-y. Epub 2014 Jun 27.

Abstract

The present study on in vitro formation and characterization of lysozyme adduct with monocrotophos (MP) evaluates the potential of lysozyme to be used as a sensitive biomarker to monitor exposure levels to the commonly used organophosphorus pesticide monocrotophos. Crystallization of lysozyme protein adduct with monocrotophos was also undertaken to understand the adduct formation mechanism at a molecular level. The binding of organophosphorus pesticides to lysozyme is one of the key steps in their mutagenicity. The formation and structural characterization of lysozyme adduct with monocrotophos was done using MALDI-TOFMS, fluorescence, UV/Vis spectroscopy, circular dichroism, and X-ray diffraction studies. We report the crystal structure of lysozyme adduct with monocrotophos at 1.9 Å. It crystallized in the P43 space group with two monomers in one asymmetric unit having one molecule of monocrotophos bound to each protein chain. The results proved that the fluorescence quenching of lysozyme by monocrotophos is due to binding of monocrotophos with a tryptophan residue of lysozyme. Monocrotophos interacts most strongly with the Trp-108 and Asp-52 of lysozyme. The interactions of the monocrotophos molecule with the lysozyme suggest the formation of a stable adduct. In addition, the alteration of lysozyme secondary structure in the presence of monocrotophos was confirmed by circular dichroism and fluorescence inhibition of lysozyme by increasing monocrotophos and UV/Vis spectrophotometry. The formation of lysozyme adduct with monocrotophos was confirmed by MALDI-TOFMS.

摘要

本研究对溶菌酶与久效磷(MP)的体外形成及特性进行了评估,以探究溶菌酶作为一种敏感生物标志物用于监测常用有机磷农药久效磷暴露水平的潜力。还开展了溶菌酶蛋白与久效磷加合物的结晶研究,以从分子层面了解加合物的形成机制。有机磷农药与溶菌酶的结合是其致突变性的关键步骤之一。利用基质辅助激光解吸电离飞行时间质谱(MALDI-TOFMS)、荧光、紫外/可见光谱、圆二色光谱和X射线衍射研究完成了溶菌酶与久效磷加合物的形成及结构表征。我们报道了溶菌酶与久效磷加合物在1.9埃分辨率下的晶体结构。它在P43空间群中结晶,一个不对称单元中有两个单体,每个蛋白质链结合有一个久效磷分子。结果证明,久效磷对溶菌酶的荧光猝灭是由于久效磷与溶菌酶的一个色氨酸残基结合。久效磷与溶菌酶的Trp-108和Asp-52相互作用最强。久效磷分子与溶菌酶的相互作用表明形成了稳定的加合物。此外,通过圆二色光谱以及随着久效磷浓度增加对溶菌酶荧光的抑制和紫外/可见分光光度法,证实了久效磷存在下溶菌酶二级结构的改变。通过MALDI-TOFMS证实了溶菌酶与久效磷加合物的形成。

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