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Lipid cubic phase as a membrane mimetic for integral membrane protein enzymes

机译:脂质立方相作为完整膜蛋白酶的膜模拟物

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The lipidic cubic mesophase has been used to crystallize important membrane proteins for high-resolution structure determination. To date, however, no integral membrane enzymes have yielded to this method, the in meso. For a crystal structure to be meaningful the target protein must be functional. Using the in meso method with a membrane enzyme requires that the protein is active in the mesophase that grows crystals. Because the cubic phase is sticky and viscous and is bicontinuous topologically, quantitatively assessing enzyme activity in meso is a challenge. Here, we describe a procedure for characterizing the catalytic properties of the integral membrane enzyme, diacylglycerol kinase, reconstituted into the bilayer of the lipidic cubic phase. The kinase activity of this elusive crystallographic target was monitored spectrophotometrically using a coupled assay in a high-throughput, 96-well plate format. In meso, the enzyme exhibits classic Michaelis-Menten kinetics and works with a range of lipid substrates. The fact that the enzyme and its lipid substrate and product remain confined to the porous mesophase while its water-soluble substrate and product are free to partition into the aqueous bathing solution suggests a general and convenient approach for characterizing membrane enzymes that function with lipids in a membrane-like environment. The distinctive rheology of the cubic phase means that a procedural step to physically separate substrate from product is not needed. Because of its open, bicontinuous nature, the cubic phase offers the added benefit that the protein is accessible for assay from both sides of the membrane.
机译:脂质立方中间相已用于结晶重要的膜蛋白,用于高分辨率结构测定。然而,迄今为止,尚无内在酶产生完整的膜酶。为了使晶体结构有意义,靶蛋白必须具有功能。将中观方法与膜酶一起使用要求蛋白质在生长晶体的中间相中具有活性。因为立方相是粘性和粘性的,并且在拓扑上是双连续的,所以定量评估内消旋酶活性是一个挑战。在这里,我们描述了一种程序,该程序用于表征重组到脂质立方相双层中的整体膜酶二酰基甘油激酶的催化特性。使用偶联分析以高通量96孔板形式分光光度法监控该难以捉摸的晶体学靶标的激酶活性。就内消旋而言,该酶表现出经典的米利斯(Michaelis-Menten)动力学,可与多种脂质底物一起发挥作用。酶及其脂质底物和产物仍被限制在多孔中间相中,而其水溶性底物和产物则可以自由分配到水性沐浴液中,这一事实说明了表征膜脂中与脂质一起起作用的膜酶的一般简便方法。膜状环境。立方相独特的流变学意味着不需要从基材上物理分离底物的程序步骤。由于其开放的,双连续的性质,立方相提供了额外的好处,即蛋白质可以从膜的两面进行检测。

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