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Triglyceride increase in the core of high-density lipoproteins augments apolipoprotein dissociation from the surface: Potential implications for treatment of apolipoprotein deposition diseases

机译:高密度脂蛋白核心中甘油三酸酯的增加增强了表面上载脂蛋白的解离:治疗载脂蛋白沉积疾病的潜在意义

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摘要

Lipids in the body are transported via lipoproteins that are nanoparticles comprised of lipids and amphipathic proteins termed apolipoproteins. This family of lipid surface-binding proteins is over-represented in human amyloid diseases. In particular, all major proteins of high-density lipoproteins (HDL), including apoA-I, apoA-II and serum amyloid A, can cause systemic amyloidoses in humans upon protein mutations, post-translational modifications or overproduction. Here, we begin to explore how the HDL lipid composition influences amyloid deposition by apoA-I and related proteins. First, we summarize the evidence that, in contrast to lipoproteins that are stabilized by kinetic barriers, free apolipoproteins are labile to misfolding and proteolysis. Next, we report original biochemical and biophysical studies showing that increase in triglyceride content in the core of plasma or reconstituted HDL destabilizes the lipoprotein assembly, making it more labile to various perturbations (oxidation, thermal and chemical denaturation and enzymatic hydrolysis), and promotes apoA-I release in a lipid-poor/free aggregation-prone form. Together, the results suggest that decreasing plasma levels of triglycerides will shift the dynamic equilibrium from the lipid-poor/free (labile) to the HDL-bound (protected) apolipoprotein state, thereby decreasing the generation of the protein precursor of amyloid. This prompts us to propose that triglyceride-lowering therapies may provide a promising strategy to alleviate amyloid diseases caused by the deposition of HDL proteins.
机译:体内的脂质通过脂蛋白运输,脂蛋白是由脂质和称为载脂蛋白的两亲蛋白组成的纳米颗粒。脂质表面结合蛋白家族在人类淀粉样疾病中过分代表。特别是,高密度脂蛋白(HDL)的所有主要蛋白,包括apoA-I,apoA-II和血清淀粉样蛋白A,都可能在蛋白质突变,翻译后修饰或生产过剩时引起人体内的全身淀粉样蛋白。在这里,我们开始探索HDL脂质成分如何通过apoA-I和相关蛋白影响淀粉样蛋白沉积。首先,我们总结了证据,与通过动力学屏障稳定的脂蛋白相反,游离载脂蛋白易错折叠和蛋白水解。接下来,我们报告原始的生化和生物物理研究,结果表明血浆或重组HDL核心中甘油三酸酯含量的增加使脂蛋白装配不稳定,使其对各种扰动(氧化,热和化学变性以及酶水解)更加不稳定,并促进apoA -我以脂质贫乏/易于聚集的形式释放。总之,结果表明降低的甘油三酸酯血浆水平将使动态平衡从脂质不足/游离(不稳定)转变为HDL结合(受保护)载脂蛋白状态,从而减少淀粉样蛋白的蛋白质前体的生成。这促使我们提出降低甘油三酸酯的疗法可能为减轻由HDL蛋白沉积引起的淀粉样变性疾病提供一种有希望的策略。

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