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The structure of malaria pigment β-haematin

机译:疟疾色素β-血红素的结构

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Despite the worldwide public health impact of malaria, neither the mechanism by which the Plasmodium parasite detoxifies and sequesters haem, nor the action of current antimalarial drugs is well understood. The haem groups released from the digestion of the haemoglobin of infected red blood cells are aggregated into an insoluble material called haemozoin or malaria pigment. Synthetic β-haematin (Fe~Ⅲ-protoporphyrin-Ⅸ)_2 is chemically, spectroscopically and crystallographically identical to haemozoin and is believed to consist of strands of Fe~Ⅲ-porphyrin units, linked into a polymer by propionate oxygen-iron bonds. Here we report the crystal structure of β-haematin determined using simulated annealing techniques to analyse powder diffraction data obtained with synchrotron radiation. The molecules are linked into dimers through reciprocal iron-carboxylate bonds to one of the propionic side chains of each porphyrin, and the dimers form chains linked by hydrogen bonds in the crystal. This result has implications for understanding the action of current antimalarial drugs and possibly for the design of new therapeutic agents.
机译:尽管疟疾在全球范围内对公共卫生产生了影响,但人们对疟原虫寄生虫的排毒和螯合机制以及目前的抗疟疾药物的作用均知之甚少。从被感染的红细胞的血红蛋白消化中释放出的血红素基团聚集在一种不溶的物质中,称为血红素或疟疾色素。合成的β-血红素(Fe〜Ⅲ-原卟啉-Ⅸ)_2在化学,光谱和晶体学上与血红蛋白相同,被认为由Fe〜Ⅲ-卟啉单元的链组成,通过丙氧基氧-铁键连接成聚合物。在这里,我们报告使用模拟退火技术确定的β-血红素晶体结构,以分析通过同步加速器辐射获得的粉末衍射数据。分子通过相互的羧酸铁键与每个卟啉的丙酸侧链之一连接成二聚体,二聚体形成通过晶体中的氢键连接的链。该结果对于理解当前抗疟药的作用以及可能对新治疗剂的设计具有启示。

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