Neurobiology Group, Division of Biochemical Sciences, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, 411008, Pune, India.
Academy of Scientific and Innovative Research (AcSIR), 411008, Pune, India.
Sci Rep. 2020 Mar 4;10(1):4023. doi: 10.1038/s41598-020-60773-1.
The Alzheimer's disease pathology is associated with accumulation of intracellular neurofibrillary tangles and extracellular senile plaques. The formation of initial nucleus triggers conformational changes in Tau and leads to its deposition. Hence, there is a need to eliminate these toxic proteins for proper functioning of neuronal cells. In this aspect, we screened the effect of basic limonoids such as gedunin, epoxyazadiradione, azadirone and azadiradione on inhibiting Tau aggregation as well as disintegration of induced Tau aggregates. It was observed that these basic limonoids effectively prevented aggregates formation by Tau and also exhibited the property of destabilizing matured Tau aggregates. The molecular docking analysis suggests that the basic limonoids interact with hexapeptide regions of aggregated Tau. Although these limonoids caused the conformational changes in Tau to β-sheet structure, the cytological studies indicate that basic limonoids rescued cell death. The dual role of limonoids in Tau aggregation inhibition and disintegration of matured aggregates suggests them to be potent molecules in overcoming Tau pathology. Further, their origin from a medicinally important plant neem, which known to possess remarkable biological activities was also found to play protective role in HEK293T cells. Basic limonoids were non-toxic to HEK293T cells and also aided in activation of HSF1 by inducing its accumulation in nucleus. Western blotting and immunofluorescence studies showed that HSF1 in downstream increased the transcription of Hsp70 thus, aggravating cytosolic Hsp70 levels that can channel clearance of aberrant Tau. All these results mark basic limonoids as potential therapeutic natural products.
阿尔茨海默病病理学与细胞内神经原纤维缠结和细胞外老年斑的积累有关。初始核的形成触发 Tau 的构象变化,并导致其沉积。因此,需要消除这些毒性蛋白,以维持神经元细胞的正常功能。在这方面,我们筛选了基础型柠檬苦素(如吉杜宁、环氧黄烷酮、黄烷酮和黄烷酮)对抑制 Tau 聚集以及分解诱导的 Tau 聚集的影响。结果表明,这些基础型柠檬苦素能有效阻止 Tau 形成聚集体,并具有破坏成熟 Tau 聚集体的特性。分子对接分析表明,基础型柠檬苦素与聚集 Tau 的六肽区域相互作用。虽然这些柠檬苦素导致 Tau 发生构象变化形成β-折叠结构,但细胞生物学研究表明,基础型柠檬苦素可以挽救细胞死亡。柠檬苦素在抑制 Tau 聚集和分解成熟聚集体方面的双重作用表明,它们是克服 Tau 病理学的有效分子。此外,它们来源于药用植物印楝,具有显著的生物学活性,也被发现对 HEK293T 细胞具有保护作用。基础型柠檬苦素对 HEK293T 细胞无毒,还通过诱导其在核内积累来辅助 HSF1 的激活。Western blot 和免疫荧光研究表明,下游的 HSF1 增加了 Hsp70 的转录,从而加重了细胞溶质 Hsp70 的水平,从而可以清除异常的 Tau。所有这些结果都表明基础型柠檬苦素是有潜力的治疗性天然产物。