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由非芳香族氨基酸蛋氨酸及其与苯丙氨酸的交叉形成的淀粉样蛋白显著影响磷脂囊泡膜:对高蛋氨酸血症紊乱的深入了解。

Amyloids Formed by Nonaromatic Amino Acid Methionine and Its Cross with Phenylalanine Significantly Affects Phospholipid Vesicle Membrane: An Insight into Hypermethioninemia Disorder.

出版信息

Langmuir. 2022 Jul 12;38(27):8252-8265. doi: 10.1021/acs.langmuir.2c00648. Epub 2022 Jun 25.

Abstract

The incorrect metabolic breakdown of the nonaromatic amino acid methionine (Met) leads to the disorder called hypermethioninemia via an unknown mechanism. To understand the molecular level pathogenesis of this disorder, we prepared a DMPC lipid membrane, the mimicking setup of the cell membrane, and explored the effect of the millimolar level of Met on it. We found that Met forms toxic fibrillar aggregates that disrupt the rigidity of the membrane bilayer, and increases the dynamic response of water molecules surrounding the membrane as well as the heterogeneity of the membrane. Such aggregates strongly deform red blood cells. This opens the requirement to consider therapeutic antagonists either to resist or to inhibit the toxic amyloid aggregates against hypermethioninemia. Moreover, such disrupting effect on membrane bilayer and cytotoxicity along with deformation effect on RBC by the cross amyloids of Met and Phenylalanine (Phe) was found to be most virulent. This exclusive observation of the enhanced virulent effect of the cross amyloids is expected to be an informative asset to explain the coexistence of two amyloid disorders.

摘要

非芳香族氨基酸蛋氨酸(Met)的代谢分解错误会通过未知机制导致高蛋氨酸血症等疾病。为了了解这种疾病的分子发病机制,我们制备了 DMPC 脂质膜,模拟细胞膜的设置,并探索了毫摩尔水平的 Met 对其的影响。我们发现 Met 形成有毒的纤维状聚集体,破坏膜双层的刚性,并增加了水分子围绕膜的动态响应以及膜的异质性。这种聚集体强烈变形红细胞。这就要求考虑治疗性拮抗剂来抵抗或抑制高蛋氨酸血症的毒性淀粉样纤维。此外,还发现 Met 和苯丙氨酸(Phe)的交叉淀粉样纤维对膜双层的破坏作用以及对 RBC 的细胞毒性作用最为致命。这种对交叉淀粉样纤维增强毒性作用的独特观察结果有望成为一个信息资产,用以解释两种淀粉样变疾病共存的原因。

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