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首页> 外文期刊>Prion >Vitamin D2 interacts with human PrPc (90-231) and breaks PrPc oligomerization in vitro
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Vitamin D2 interacts with human PrPc (90-231) and breaks PrPc oligomerization in vitro

机译:维生素D2与人PrPc(90-231)相互作用并在体外破坏PrPc的低聚

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摘要

PrPsc, the pathogenic isoform of PrPc, can convert PrPc into PrPsc through direct interactions. PrP c oligomerization is a required processing step before PrP sc formation, and soluble oligomers appear to be the toxic species in amyloid-related disorders. In the current study, direct interactions between vitamin D2 and human recombinant PrPc (90-231) were observed by Biacore assay, and 3F4 antibody, specific for amino acid fragment 109-112 of PrPc, inhibited this interaction. An ELISA study using3F4 antibody showed that PrPc (101-130), corresponding sequence to human PrP, was affected by vitamin D2, supporting the results of Biacore studies and suggesting that the PrPc sequence around the 3F4 epitope was responsible for the interaction with vitamin D2. Furthermore, the effects of vitamin D2 on disruption of PrPc (90-231) oligomerization were elucidated by dot blot analysis and differential protease k susceptibilities. While many chemical compounds have been proposed as potential therapeutic agents for the treatment of scrapie, most of these are toxic. However, given the safety and blood brain barrier permeability of vitamin D 2, we propose that vitamin D2 may be a suitable agent to target PrPc in the brain and therefore is a potential therapeutic candidate for prion disease.
机译:PrPsc是PrPc的致病同工型,可以通过直接相互作用将PrPc转化为PrPsc。在PrP sc形成之前,PrP c寡聚是必需的加工步骤,可溶性低聚物似乎是淀粉样蛋白相关疾病中的有毒物质。在当前的研究中,通过Biacore分析观察到维生素D2与人类重组PrPc(90-231)之间的直接相互作用,而对PrPc氨基酸片段109-112特异的3F4抗体抑制了这种相互作用。使用3F4抗体的ELISA研究表明,与人PrP相对应的PrPc(101-130)受维生素D2的影响,支持Biacore研究的结果,并表明3F4表位周围的PrPc序列是与维生素D2相互作用的原因。此外,通过斑点印迹分析和不同的蛋白酶k敏感性阐明了维生素D2对PrPc(90-231)寡聚破坏的影响。虽然已经提出了许多化合物作为治疗瘙痒病的潜在治疗剂,但是其中大多数是有毒的。但是,鉴于维生素D 2的安全性和血脑屏障通透性,我们建议维生素D2可能是靶向大脑中PrPc的合适药物,因此是病毒疾病的潜在治疗候选物。

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