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首页> 外文期刊>Journal of Lipid Research >A novel approach for measuring sphingosine-1-phosphate and lysophosphatidic acid binding to carrier proteins using monoclonal antibodies and the Kinetic Exclusion Assay
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A novel approach for measuring sphingosine-1-phosphate and lysophosphatidic acid binding to carrier proteins using monoclonal antibodies and the Kinetic Exclusion Assay

机译:一种使用单克隆抗体和动力学排斥分析法测量鞘氨醇-1-磷酸和溶血磷脂酸与载体蛋白结合的新方法

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Sphingosine-1-phosphate (S1P) and lysophosphatidic acid (LPA) are bioactive signaling lysophospholipids that activate specific G protein-coupled receptors on the cell surface triggering numerous biological events. In circulation, S1P and LPA associate with specific carrier proteins or chaperones; serum albumin binds both S1P and LPA while HDL shuttles S1P via interactions with apoM. We used a series of kinetic exclusion assays in which monoclonal anti-S1P and anti-LPA antibodies competed with carrier protein for the lysophospholipid to measure the equilibrium dissociation constants (Kd) for these carrier proteins binding S1P and the major LPA species. Fatty acid-free (FAF)-BSA binds these lysophospholipids with the following Kd values: LPA(16:0), 68 nM; LPA(18:1), 130 nM; LPA(18:2), 350 nM; LPA(20:4), 2.2 μM; and S1P, 41 μM. FAF human serum albumin binds each lysophospholipid with comparable affinities. By measuring the apoM concentration and expanding the model to include endogenous ligand, we were able to resolve the Kd values for S1P binding apoM in the context of human HDL and LDL particles (21 nM and 2.4 nM, respectively). The novel competitive assay and analysis described herein enables measurement of Kd values of completely unmodified lysophospholipids binding unmodified carrier proteins in solution, and thus provide insights into S1P and LPA storage in the circulation system and may be useful in understanding chaperone-dependent receptor activation and signaling.
机译:鞘氨醇-1-磷酸(S1P)和溶血磷脂酸(LPA)是具有生物活性的信号溶血磷脂,可激活细胞表面上特定的G蛋白偶联受体,从而触发许多生物学事件。在循环中,S1P和LPA与特定的载体蛋白或分子伴侣结合;血清白蛋白结合S1P和LPA,而HDL通过与apoM的相互作用使S1P穿梭。我们使用了一系列动力学排除试验,其中单克隆抗S1P和抗LPA抗体与载体蛋白竞争溶血磷脂,以测量这些结合S1P和主要LPA的载体蛋白的平衡解离常数(Kd)。无脂肪酸(FAF)-BSA以以下Kd值结合这些溶血磷脂:LPA(16:0),68 nM; LPA(18:1),130 nM; LPA(18:2),350 nM; LPA(20:4),2.2微米; S1P为41μM。 FAF人血清白蛋白以可比的亲和力结合每个溶血磷脂。通过测量apoM浓度并扩展模型以包括内源性配体,我们能够在人HDL和LDL颗粒(分别为21 nM和2.4 nM)的情况下解析S1P结合apoM的Kd值。本文所述的新型竞争性测定和分析能够测量溶液中结合了未修饰载体蛋白的完全未修饰溶血磷脂的Kd值,从而提供了对S1P和LPA在循环系统中存储的见解,并且可能有助于理解伴侣依赖性受体的激活和信号传导。

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