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Triacylglycerol mimetics regulate membrane interactions of glycogen branching enzyme: implications for therapy

机译:三酰基甘油模拟物调节糖原分支酶的膜相互作用:对治疗的意义

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摘要

Adult polyglucosan body disease (APBD) is a neurological disorder characterized by adult-onset neurogenic bladder, spasticity, weakness, and sensory loss. The disease is caused by aberrant glycogen branching enzyme (GBE) (GBE1Y329S) yielding less branched, globular, and soluble glycogen, which tends to aggregate. We explore here whether, despite being a soluble enzyme, GBE1 activity is regulated by protein-membrane interactions. Because soluble proteins can contact a wide variety of cell membranes, we investigated the interactions of purified WT and GBE1Y329S proteins with different types of model membranes (liposomes). Interestingly, both triheptanoin and some triacylglycerol mimetics (TGMs) we have designed (TGM0 and TGM5) markedly enhance GBE1Y329S activity, possibly enough for reversing APBD symptoms. We show that the GBE1Y329S mutation exposes a hydrophobic amino acid stretch, which can either stabilize and enhance or alternatively, reduce the enzyme activity via alteration of protein-membrane interactions. Additionally, we found that WT, but not Y329S, GBE1 activity is modulated by Ca2+ and phosphatidylserine, probably associated with GBE1-mediated regulation of energy consumption and storage. The thermal stabilization and increase in GBE1Y329S activity induced by TGM5 and its omega-3 oil structure suggest that this molecule has a considerable therapeutic potential for treating APBD.
机译:成人聚葡聚糖体病(APBD)是一种神经系统疾病,其特征是成人发作的神经源性膀胱,痉挛,无力和感觉丧失。该疾病是由异常的糖原分支酶(GBE)(GBE1Y329S)引起的,该酶产生较少的分支,球状和可溶性糖原,并倾向于聚集。我们在这里探讨尽管GBE1是一种可溶性酶,但它的活性是否受蛋白质-膜相互作用的调节。因为可溶性蛋白可以接触各种各样的细胞膜,所以我们研究了纯化的WT和GBE1Y329S蛋白与不同类型的模型膜(脂质体)的相互作用。有趣的是,我们设计的三庚酸和一些三酰基甘油模拟物(TGM0和TGM5)均显着增强了GBE1Y329S活性,可能足以逆转APBD症状。我们表明,GBE1Y329S突变暴露了疏水性氨基酸序列,它可以稳定和增强或通过减少蛋白-膜相互作用改变酶的活性。此外,我们发现WT,而不是Y329S,GBE1的活性受Ca 2 + 和磷脂酰丝氨酸的调节,可能与GBE1介导的能量消耗和存储有关。 TGM5及其omega-3油结构诱导的热稳定作用和GBE1Y329S活性的增加表明,该分子具有治疗APBD的巨大治疗潜力。

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