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Synthesis and Convenient Functionalization of Azide-Labeled Diacylglycerol Analogues for Modular Access to Biologically Active Lipid Probes

机译:叠氮基标记的二酰基甘油类似物的合成和便捷功能化,可模块化访问生物活性脂质探针。

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Cell membrane lipids have been identified as key participants in cell signaling activities. One important role is their involvement as site-specific ligands in protein-membrane binding interactions, which result in the anchoring of peripheral proteins onto cellular membranes. These events generally regulate protein function and localization and have been implicated in both normal physiological processes and those pertaining to disease state onset. Thus, it is important to elucidate the details of interactions at the molecular level, such as lipid-binding specificities and affinities, the location of receptor binding domains and multivalency in binding. For this purpose, we have designed and developed azido-tagged lipid analogues as conveniently functionalizable lipid probe scaffolds. Herein, we report the design and synthesis of the initial structure of this type, diacylglycerol analogue 2, which contains an azide tag at the sn-1 position of the lipid headgroup. Direct functionalization of this compound with a range of reporter groups has been performed to illustrate the facile access to probes of use for characterizing binding. Quantitative lipid-binding studies using protein kinase C, a known DAG-binding receptor, demonstrate that these probes are active mimetics of natural DAG. Thus, these DAG probes will serve as robust sensors for studies aimed at understanding binding interactions and as precursors for the development of analogous probes of more complex phospholipids and glycolipids.
机译:细胞膜脂质已被确定为细胞信号传导活动的关键参与者。一个重要的作用是它们作为位点特异性配体参与蛋白质-膜的结合相互作用,从而导致周围蛋白质锚定到细胞膜上。这些事件通常调节蛋白质的功能和定位,并且与正常的生理过程以及与疾病状态发作有关的过程都有牵连。因此,重要的是阐明分子水平上相互作用的细节,例如脂质结合特异性和亲和力,受体结合结构域的位置和结合中的多价。为了这个目的,我们已经设计并开发了叠氮基标记的脂质类似物作为可方便地功能化的脂质探针支架。在这里,我们报告这种类型的初始结构,二酰基甘油类似物2的设计和合成,其在脂质头基的sn-1位置包含叠氮化物标签。已经进行了具有一系列报道基团的该化合物的直接功能化,以说明容易获得用于表征结合的探针。使用蛋白激酶C(一种已知的DAG结合受体)进行的脂质结合定量研究表明,这些探针是天然DAG的活性模拟物。因此,这些DAG探针将作为用于了解结合相互作用的研究的可靠传感器,并作为开发更复杂的磷脂和糖脂的类似探针的前体。

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