首页> 外文期刊>Biochemical and Biophysical Research Communications >Potent inhibitors of amyloid beta fibrillization, 4,5-dianilinophthalimide and staurosporine aglycone, enhance degradation of preformed aggregates of mutant Notch3.
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Potent inhibitors of amyloid beta fibrillization, 4,5-dianilinophthalimide and staurosporine aglycone, enhance degradation of preformed aggregates of mutant Notch3.

机译:淀粉样蛋白β原纤维化的有效抑制剂,4,5-二苯并邻苯二甲酰亚胺和星形孢菌素糖苷配基可增强突变型Notch3的聚集体的降解。

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摘要

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is caused by mutations in human NOTCH3. We have recently reported that mutant Notch3 shows a greater propensity to form aggregates, and these aggregates resist degradation, leading to accumulation in the endoplasmic reticulum (ER). In this study, we searched for low-molecular compounds that decrease the amount of mutant Notch3 aggregates. Using a cell-based system, we found that degradation of preformed mutant aggregates was enhanced by treatment with either 4,5-dianilinophthalimide (DAPH) or staurosporine aglycone (SA), both of which inhibit amyloid beta (Abeta) fibrillization. Regarding other low-molecular compounds interacting with Abeta fibrils, thioflavin T (ThT) also enhanced the clearance of mutant Notch3. These findings suggest that DAPH, SA, and ThT are potent reagents to dissociate the preformed aggregates of mutant Notch3 by disruption of intermolecular contacts of misfolded proteins. Our study may provide the basis for the development of a pharmacological therapy for CADASIL.
机译:大脑皮层下梗死和白质脑病(CADASIL)的常染色体显性遗传性动脉病是由人类NOTCH3突变引起的。最近,我们报道了突变的Notch3具有形成聚集体的更大倾向,并且这些聚集体抵抗降解,从而导致在内质网(ER)中积累。在这项研究中,我们寻找减少突变Notch3聚集体数量的低分子化合物。使用基于细胞的系统,我们发现通过用4,5-二苯并邻苯二甲酰亚胺(DAPH)或星形孢菌素糖苷配基(SA)处理,均可增强预先形成的突变体聚集体的降解,两者均抑制淀粉样蛋白(Abeta)的原纤维化。关于与Abeta纤维相互作用的其他低分子化合物,硫黄素T(ThT)也提高了突变型Notch3的清除率。这些发现表明,DAPH,SA和ThT是有效的试剂,可通过破坏错折叠的蛋白质的分子间接触来解离突变的Notch3的预先形成的聚集体。我们的研究可能为开发CADASIL的药物疗法提供基础。

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