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Fusion-Triggered Switching of Enzymatic Activity on an Artificial Cell Membrane

机译:人工细胞膜上酶活性的融合触发转换

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摘要

A nanosensory membrane device was constructed for detecting liposome fusion through changes in an enzymatic activity. Inspired by a biological signal transduction system, the device design involved functionalized liposomal membranes prepared by self-assembly of the following molecular components: a synthetic peptide lipid and a phospholipid as matrix membrane components, a Schiff's base of pyridoxal 5′-phosphate with phosphatidylethanolamine as a thermo-responsive artificial receptor, NADH-dependent L-lactate dehydrogenase as a signal amplifier, and Cu2+ ion as a signal mediator between the receptor and enzyme. The enzymatic activity of the membrane device was adjustable by changing the matrix lipid composition, reflecting the thermotropic phase transition behavior of the lipid membranes, which in turn controlled receptor binding affinity toward the enzyme-inhibiting mediator species. When an effective fusogen anionic polymer was added to these cationic liposomes, membrane fusion occurred, and the functionalized liposomal membranes responded with changes in enzymatic activity, thus serving as an effective nanosensory device for liposome fusion detection.
机译:构造了一种纳米传感膜装置,用于通过酶活性的变化来检测脂质体融合。受生物信号转导系统的启发,该装置的设计涉及功能化的脂质体膜,该膜由以下分子组分自组装制备:合成肽脂质和磷脂作为基质膜组分,吡x醛5'-磷酸的席夫氏碱和磷脂酰乙醇胺作为磷脂热响应人工受体,依赖NADH的L-乳酸脱氢酶作为信号放大器,Cu 2 + 离子作为受体和酶之间的信号介体。膜装置的酶活性可通过改变基质脂质组成来调节,反映了脂质膜的热致相变行为,进而控制了受体对酶抑制介质的结合亲和力。当将有效的融合阴离子聚合物添加到这些阳离子脂质体中时,就会发生膜融合,并且功能化的脂质体膜会响应酶活性的变化,从而成为脂质体融合检测的有效纳米传感装置。

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