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孔雀石绿,一种能与脱铁转铁蛋白结合并改变铁转运的有害物质。

Malachite Green, the hazardous materials that can bind to Apo-transferrin and change the iron transfer.

作者信息

Farhadian Sadegh, Hashemi-Shahraki Fatemeh, Amirifar Sogand, Asadpour Saeid, Shareghi Behzad, Heidari Ehsan, Shakerian Behnam, Rafatifard Mohammad, Firooz Ali Reza

机构信息

Department of Biology, Faculty of Science, Shahrekord University, Shahrekord, P. O. Box.115, Iran; Central Laboratory, Shahrekord University, Shahrekord, Iran.

Department of Biology, Faculty of Science, Shahrekord University, Shahrekord, P. O. Box.115, Iran; Central Laboratory, Shahrekord University, Shahrekord, Iran.

出版信息

Int J Biol Macromol. 2022 Jan 1;194:790-799. doi: 10.1016/j.ijbiomac.2021.11.126. Epub 2021 Nov 24.

DOI:10.1016/j.ijbiomac.2021.11.126
PMID:34838577
Abstract

Different groups of synthetic dyes might lead to environmental pollution. The binding affinity among hazardous materials with biomolecules necessitates a detailed understanding of their binding properties. Malachite Green might induce a change in the iron transfer by Apo-transferrin. Spectroscopic studies showed malachite green oxalate (MGO) could form the apo-transferrin-MGO complex and change the Accessible Surface Area (ASA) of the key amino acids for iron transfer. According to the ASA results the accessible surface area of Tyrosine, Aspartate, and Histidine of apo-transferrin significantly were changed, which can be considered as a convincing reason for changing the iron transfer. Moreover, based on the fluorescence data MGO could quench the fluorescence intensity of apo-transferrin in a static quenching mechanism. The experimental and Molecular Dynamic simulation results represented that the binding process led to micro environmental changes, around tryptophan residues and altered the tertiary structure of apo-transferrin. The Circular Dichroism (CD) spectra result represented a decrease in the amount of the α-Helix, as well as, increase in the β-sheet volumes of the apo-transferrin structure. Moreover, FTIR spectroscopy results showed a hypochromic shift in the peaks of amide I and II. Molecular docking and MD simulation confirmed all the computational findings.

摘要

不同种类的合成染料可能会导致环境污染。有害物质与生物分子之间的结合亲和力需要我们详细了解它们的结合特性。孔雀石绿可能会诱导脱铁转铁蛋白的铁转运发生变化。光谱研究表明,草酸孔雀石绿(MGO)可形成脱铁转铁蛋白-MGO复合物,并改变铁转运关键氨基酸的可及表面积(ASA)。根据ASA结果,脱铁转铁蛋白中酪氨酸、天冬氨酸和组氨酸的可及表面积发生了显著变化,这可被视为铁转运发生变化的一个令人信服的原因。此外,基于荧光数据,MGO可通过静态猝灭机制猝灭脱铁转铁蛋白的荧光强度。实验和分子动力学模拟结果表明,结合过程导致色氨酸残基周围的微环境发生变化,并改变了脱铁转铁蛋白的三级结构。圆二色性(CD)光谱结果表明,脱铁转铁蛋白结构中α-螺旋的含量减少,β-折叠的含量增加。此外,傅里叶变换红外光谱(FTIR)结果显示酰胺I和酰胺II峰发生减色位移。分子对接和分子动力学模拟证实了所有的计算结果。

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