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解析吡嗪酰胺和D-环丝氨酸的比较抗淀粉样蛋白生成行为:机制性生物物理洞察

Unraveling Comparative Anti-Amyloidogenic Behavior of Pyrazinamide and D-Cycloserine: A Mechanistic Biophysical Insight.

作者信息

Chaturvedi Sumit Kumar, Zaidi Nida, Alam Parvez, Khan Javed Masood, Qadeer Atiyatul, Siddique Ibrar Ahmad, Asmat Shamoon, Zaidi Yusra, Khan Rizwan Hasan

机构信息

Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh, 202002, India.

Department of Zoology, Aligarh Muslim University, Aligarh, 202002, India.

出版信息

PLoS One. 2015 Aug 27;10(8):e0136528. doi: 10.1371/journal.pone.0136528. eCollection 2015.

Abstract

Amyloid fibril formation by proteins leads to variety of degenerative disorders called amyloidosis. While these disorders are topic of extensive research, effective treatments are still unavailable. Thus in present study, two anti-tuberculosis drugs, i.e., pyrazinamide (PYZ) and D-cycloserine (DCS), also known for treatment for Alzheimer's dementia, were checked for the anti-aggregation and anti-amyloidogenic ability on Aβ-42 peptide and hen egg white lysozyme. Results demonstrated that both drugs inhibit the heat induced aggregation; however, PYZ was more potent and decelerated the nucleation phase as observed from various spectroscopic and microscopic techniques. Furthermore, pre-formed amyloid fibrils incubated with these drugs also increased the PC12/SH-SY5Y cell viability as compare to the amyloid fibrils alone; however, the increase was more pronounced for PYZ as confirmed by MTT assay. Additionally, molecular docking study suggested that the greater inhibitory potential of PYZ as compare to DCS may be due to strong binding affinity and more occupancy of hydrophobic patches of HEWL, which is known to form the core of the protein fibrils.

摘要

蛋白质形成淀粉样纤维会导致多种被称为淀粉样变性的退行性疾病。虽然这些疾病是广泛研究的主题,但仍然没有有效的治疗方法。因此,在本研究中,两种抗结核药物,即吡嗪酰胺(PYZ)和D-环丝氨酸(DCS),它们也因用于治疗阿尔茨海默病性痴呆而闻名,被检测对Aβ-42肽和鸡蛋清溶菌酶的抗聚集和抗淀粉样生成能力。结果表明,两种药物都能抑制热诱导的聚集;然而,从各种光谱和显微镜技术观察到,PYZ更有效且减缓了成核阶段。此外,与单独的淀粉样纤维相比,用这些药物孵育预先形成的淀粉样纤维也提高了PC12/SH-SY5Y细胞活力;然而,MTT分析证实,PYZ的提高更为显著。此外,分子对接研究表明,与DCS相比,PYZ具有更大的抑制潜力可能是由于其与溶菌酶(HEWL)疏水区域的强结合亲和力和更多占据,溶菌酶已知形成蛋白质纤维的核心。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ed1/4552381/96816297ef06/pone.0136528.g001.jpg

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