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首页> 外文期刊>Journal of Neuroimmunology: Official Bulletin of the Research Committee on Neuroimmunology of the World Federation of Neurology >Immunodominant epitope and properties of pyroglutamate-modified Abeta-specific antibodies produced in rabbits.
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Immunodominant epitope and properties of pyroglutamate-modified Abeta-specific antibodies produced in rabbits.

机译:兔兔吡葡聚糖改性的吡酰胺改性的ABETA特异性抗体的免疫肿瘤表位及性质。

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摘要

N-truncated and N-modified forms of amyloid beta (Abeta) peptide are found in diffused and dense core plaques in Alzheimer's disease (AD) and Down's syndrome patients as well as transgenic mouse models of AD. Although the pathological significance of these shortened forms Abeta is not completely understood, previous studies have demonstrated that these peptides are significantly more resistant to degradation, aggregate more rapidly in vitro and exhibit similar or, in some cases, increased toxicity in hippocampal neuronal cultures compared to the full length peptides. In the present study we further investigated the mechanisms of toxicity of one of the most abundant N-truncated/modified Abeta peptide bearing amino-terminal pyroglutamate at position 3 (AbetaN3(pE)). We demonstrated that AbetaN3(pE) oligomers induce phosphatidyl serine externalization and membrane damage in SH-SY5Y cells. Also, we produced AbetaN3(pE)-specific polyclonal antibodies in rabbit and identified an immunodominant epitope recognized by anti-AbetaN3(pE) antibodies. Our results are important for developing new immunotherapeutic compounds specifically targeting AbetaN3(pE) aggregates since the most commonly used immunogens in the majority of vaccines for AD have been shown to induce antibodies that recognize the N-terminal immunodominant epitope (EFRH) of the full length Abeta, which is absent in N-amino truncated peptides.
机译:在阿尔茨海默病(AD)和唐氏综合征患者中的扩散和致密核心斑块以及AD的转基因小鼠模型中,发现了N截曲和N-修饰的淀粉样蛋白β(ABETA)肽。尽管这些缩短的Abeta形式的病理意义尚未完全明白,但之前的研究表明,这些肽显着更耐降解,体外速度更快,并且在某些情况下,与全长肽。在本研究中,我们进一步研究了在第3位(Abetan3(PE))的含有氨基末端焦蛋白的最丰富的N截断/修饰的ABETA肽之一的毒性毒性。我们证明Abetan3(PE)低聚物诱导SH-SY5Y细胞中的磷脂酰丝氨酸外化和膜损伤。此外,我们在兔中产生了Abetan3(PE)的特异性多克隆抗体,并鉴定了由抗Abetan3(PE)抗体识别的免疫模数表位。我们的结果对于开发特异性靶向Abetan3(PE)聚集体的新的免疫治疗化合物非常重要,因为已经显示了大多数疫苗中的最常用的免疫原诱导诱导识别全长N-末端免疫报表表位(EFRH)的抗体Abeta,其在N-氨基截短的肽中不存在。

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