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Irreversible dimerization/tetramerization and post-translational modifications inhibit proteolytic degradation of Aβ peptides of Alzheimer's disease

机译:不可逆的二聚化/四聚化和翻译后修饰可抑制阿尔茨海默氏病Aβ肽的蛋白水解降解

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Experimental evidence increasingly implicates the β-amyloid peptide in the pathogenesis of Alzheimer's disease. β-amyloid filaments dramatically accumulate in the neuritic plaques and vascular deposits as the result of the brain's inability to clear these structures. In this paper, we demonstrate that in addition to the intrinsic stability of AβN-42, the time dependent generation of irreversibly associated Aβ dimers and tetramers incorporated into Aβ filaments are themselves resistant to proteolytic degradation. The presence of post-translational modifications such as isomerization of aspartyls 1 and 7, cyclization of glutamyl 3 to pyroglutamyl and oxidation of methionyl 35, further contribute to the insolubility and stability of Aβ. All these factors promote the accumulation of neurotoxc amyloid in the brains of patients with Alzheimer's disease, and should be considered in therapeutic strategies directed towards the dissociation of the brain's Aβ filaments.
机译:实验证据越来越多地表明,β-淀粉样蛋白肽与阿尔茨海默氏病的发病机理有关。由于大脑无法清除这些结构,因此β-淀粉样蛋白丝会大量积聚在神经斑和血管沉积物中。在本文中,我们证明,除了AβN-42的固有稳定性外,与时间相关的不可逆结合的Aβ二聚体和掺入Aβ细丝的四聚体本身对蛋白水解降解具有抵抗力。翻译后修饰的存在,例如天冬氨酰1和7的异构化,谷氨酰基3环化为焦谷氨酰基和甲硫酰基35氧化,进一步助长了Aβ的不溶性和稳定性。所有这些因素都会促进神经毒性淀粉样蛋白在阿尔茨海默氏病患者大脑中的蓄积,在针对大脑Aβ细丝解离的治疗策略中应予以考虑。

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