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首页> 外文期刊>RSC Advances >Interaction landscape of a 'CNN' motif with arsenate and arsenite: a potential peptide-based scavenger of arsenic
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Interaction landscape of a 'CNN' motif with arsenate and arsenite: a potential peptide-based scavenger of arsenic

机译:“CNN”基序与砷酸和砷酸的交互景观:砷的潜在肽的清除剂

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Arsenic (As) is a toxic metalloid that has drawn immense attention from the scientific community recently due to its fatal effects through its unwanted occurrence in ground water around the globe. The presence of an excess amount of water soluble arsenate and/or arsenite salt (permissible limit 10 g L-1 as recommended by the WHO) in water has been correlated with several human diseases. Although arsenate (HAsO42-) is a molecular analogue of phosphate (HPO42-), phosphate is indispensable for life, while arsenic and its salts are toxic. Therefore, it is worthwhile to focus on the removal of arsenic from water. Towards this end, the design of peptide-based scaffolds for the recognition of arsenate and arsenite would add a new dimension. Utilizing the stereochemical similarity between arsenate (HAsO42-) and phosphate (HPO42-), we successfully investigated the recognition of arsenate and arsenite with a naturally occurring novel phosphate binding CNN' motif and its related designed analogues. Using computational as well as biophysical approaches, for the first time, we report here that a designed peptide-based scaffold based on the CNN' motif can recognize anions of arsenic in a thermodynamically favorable manner in a context-free system. This peptide-based arsenic binding agent has the potential for future development as a scavenger of arsenic anions to obtain arsenic free water.
机译:砷(AS)是一种有毒的金属,最近引起了科学界的巨大关注,因为它通过其在全球地球上的地下水中的不需要的发生效果是致命的影响。在水中存在过量的水溶性砷酸酯和/或允许极限10g L-1的水溶液,与几种人类疾病相关。虽然砷酸酯(HASO42-)是磷酸盐(HPO 42-)的分子类似物,但磷酸盐对于寿命是必不可少的,而砷及其盐是有毒的。因此,重要的是专注于从水中去除砷。为此,肽基支架设计用于识别砷酸盐和砷酸盐的支架将增加一个新的尺寸。利用砷酸盐(HASO42-)和磷酸盐(HPO 42-)之间的立体化学相似性,我们成功地研究了砷酸盐和砷酸盐,其具有天然存在的新型磷酸盐结合CNN'MOTIF及其相关设计的类似物。首次使用计算以及生物物理方法,我们在此报告,基于CNN'基序的基于肽的支架可以在无与力力的系统中以热力学上有利的方式识别砷的阴离子。该基于肽的砷结合剂具有未来发展的可能性,作为砷阴离子的清除剂,以获得砷的游离水。

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