Saini Rajneet Kaur, Shuaib Suniba, Goyal Deepti, Goyal Bhupesh
Department of Chemistry, Faculty of Basic and Applied Sciences, Sri Guru Granth Sahib World University, Fatehgarh Sahib 140406, Punjab, India.
School of Chemistry & Biochemistry, Thapar Institute of Engineering & Technology, Patiala 147004, Punjab, India.
ACS Omega. 2020 Aug 28;5(36):23219-23228. doi: 10.1021/acsomega.0c02983. eCollection 2020 Sep 15.
The amyloid-β (Aβ) protein aggregation into toxic oligomers and fibrils has been recognized as a key player in the pathogenesis of Alzheimer's disease. Recent experiments reported that a double alanine mutation (L17A/F19A) in the central hydrophobic core (CHC) region of [G22]Aβ (familial Arctic mutation) diminished the self-assembly propensity of [G22]Aβ. However, the molecular mechanism behind the decreased aggregation tendency of [A17/A19/G22]Aβ is not well understood. Herein, we carried out molecular dynamics simulations to elucidate the structure and dynamics of [G22]Aβ and [A17/A19/G22]Aβ. The results for the secondary structure analysis reveal a significantly increased amount of the helical content in the CHC and C-terminal region of [A17/A19/G22]Aβ as compared to [G22]Aβ. The bending free-energy analysis of D23-K28 salt bridge suggests that the double alanine mutation in the CHC region of [G22]Aβ has the potential to reduce the fibril formation rate by 0.57 times of [G22]Aβ. Unlike [G22]Aβ, [A17/A19/G22]Aβ largely sampled helical conformation, as determined by the minimum energy conformations extracted from the free-energy landscape. The present study provided atomic level details into the experimentally observed diminished aggregation tendency of [A17/A19/G22]Aβ as compared to [G22]Aβ.
淀粉样β(Aβ)蛋白聚集成有毒的寡聚体和纤维被认为是阿尔茨海默病发病机制中的关键因素。最近的实验报道,[G22]Aβ(家族性北极突变)中央疏水核心(CHC)区域的双丙氨酸突变(L17A/F19A)降低了[G22]Aβ的自组装倾向。然而,[A17/A19/G22]Aβ聚集倾向降低背后的分子机制尚不清楚。在此,我们进行了分子动力学模拟,以阐明[G22]Aβ和[A17/A19/G22]Aβ的结构和动力学。二级结构分析结果显示,与[G22]Aβ相比,[A17/A19/G22]Aβ的CHC和C末端区域的螺旋含量显著增加。D23-K28盐桥的弯曲自由能分析表明,[G22]Aβ的CHC区域的双丙氨酸突变有可能将纤维形成速率降低至[G22]Aβ的0.57倍。与[G22]Aβ不同,[A17/A19/G22]Aβ主要呈现螺旋构象,这是根据从自由能景观中提取的最低能量构象确定的。本研究提供了原子水平的细节,以解释与[G22]Aβ相比,实验观察到的[A17/A19/G22]Aβ聚集倾向降低的现象。