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Separation of fluorescently labeled phosphoinositides and sphingolipids by capillary electrophoresis

机译:用毛细管电泳分离荧光标记的磷酸膦酸和鞘脂

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摘要

Phosphoinositides (PIs) and sphingolipids regulate many aspects of cell behavior and are often involved in disease processes such as oncogenesis. Capillary electrophoresis with laser induced fluorescence detection (CE-LIF) is emerging as an important tool for enzymatic assays of the metabolism of these lipids, particularly in cell-based formats. Previous separations of phosphoinositide lipids by CE required a complex buffer with polymer additives which had the disadvantages of high cost and/or short shelf life. Further a simultaneous separation of these classes of lipids has not been demonstrated in a robust buffer system. In the current work, a simple separation buffer based on NaH2PO4 and 1-propanol was optimized to separate two sphingolipids and multiple phosphoinositides by CE. The NaH2PO4 concentration, pH, 1-propanol fraction, and a surfactant additive to the buffer were individually optimized to achieve simultaneous separation of the sphingolipids and phosphoinositides. Fluorescein-labeled sphingosine (SFL) and sphingosine 1-phosphate (S1PFL), fluorescein-labeled phosphatidyl-inositol 4,5-bisphosphate (PIP2) and phosphatidyl-inositol 3,4,5-trisphosphate (PIP3), and bodipy-fluorescein (BFL)-labeled PIP2 and PIP3 were separated pairwise and in combination to demonstrate the generalizability of the method. Theoretical plate numbers achieved were as high as 2×105 in separating fluorophore-labeled PIP2 and PIP3. Detection limits for the 6 analytes were in the range of 10−18 to 10−20 mol. The method also showed high reproducibility, as the relative standard deviation of the normalized migration time for each analyte in the simultaneous separation of all 6 compounds was less than 1%. The separation of a mixture composed of diacylglycerol (DAG) and multiple phosphoinositides was also demonstrated. As a final test, fluorescent lipid metabolites formed within cells loaded with BFLPIP2 were separated from a cell lysate as well as a single cell. This simple and robust separation method for SFL and S1PFL and various metabolites of phosphoinositide-related signal transduction is expected to enable improved enzymatic assays for biological and clinical applications.
机译:磷脂酰肌醇(PIs)和鞘脂类调节细胞行为的许多方面,并经常参与诸如肿瘤发生的疾病过程。激光诱导荧光检测(CE-LIF)的毛细管电泳正在成为这些脂质代谢的酶法测定的重要工具,特别是基于细胞的形式。先前通过CE分离磷酸肌醇脂质需要与聚合物添加剂一起的复杂缓冲液,其具有成本高和/或保质期短的缺点。此外,尚未在健壮的缓冲液系统中同时分离出这些类别的脂质。在当前的工作中,基于NaH2PO4和1-丙醇的简单分离缓冲液经过优化,可通过CE分离两个鞘脂和多个磷酸肌醇。分别优化NaH2PO4的浓度,pH,1-丙醇馏分和添加到缓冲液中的表面活性剂,以同时分离鞘脂和磷酸肌醇。荧光素标记的鞘氨醇(SFL)和鞘氨醇1-磷酸(S1PFL),荧光素标记的磷脂酰肌醇4,5-双磷酸酯(PIP2)和磷脂酰肌醇3,4,5-三磷酸酯(PIP3)和二吡啶-荧光素(将BFL)标记的PIP2和PIP3成对分离并结合使用,以证明该方法的通用性。在分离荧光团标记的PIP2和PIP3时,获得的理论塔板数高达2×10 5 。 6种分析物的检出限在10 −18 至10 −20 摩尔之间。该方法还具有很高的重现性,因为在同时分离所有6种化合物时每种分析物的标准化迁移时间的相对标准偏差小于1%。还证实了由二酰基甘油(DAG)和多种磷酸肌醇组成的混合物的分离。作为最终测试,将载有BFLPIP2的细胞内形成的荧光脂质代谢产物与细胞裂解液以及单个细胞分离。这种用于SFL和S1PFL以及磷酸肌醇相关信号转导的各种代谢物的简单而稳定的分离方法有望实现用于生物学和临床应用的改进的酶法测定方法。

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