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Synthesis of a PbTx-2 photoaffinity and fluorescent probe and an alternative synthetic route to photoaffinity probes

机译:pbTx-2光亲和性和荧光探针的合成以及光亲和性探针的替代合成途径

摘要

A natural phenomenon characterized by dense aggregations of unicellular photosynthetic marine organisms has been termed colloquially as red tides because of the vivid discoloration of the water. The dinoflagellate Karenia brevis is the cause of the Florida red tide bloom.K. brevis produces the brevetoxins, a potent suite of neurotoxins responsible for substantial amounts of marine mammal and fish mortalities. When consumed by humans, the toxin causes Neurotoxic Shellfish Poisoning (NSP). The native function of brevetoxin within the organism has remained mysterious since its discovery. There is a need to identify factors which contribute to and regulate toxin production within K. brevis. These toxins are produced and retained within the cell implicating a significant cellular role for their presence.Localization of brevetoxin and identification of a native receptor may provide insight into its native role as well as other polyether ladder type toxins such as the ciguatoxins, maitotoxins, and yessotoxins. In higher organisms these polyether ladder molecules bind to transmembrane proteins with high affinity. We anticipated the native brevetoxin receptor would also be a transmembrane protein.Photoaffinity labeling has become increasingly popular for identifying ligand receptors. By attaching ligands to these photophors, one is able to activate the molecule after the ligand binds to its receptor to obtain a permanent linkage between the two. Subsequent purification provides the protein with the ligand directly attached.A molecule that is capable of fluorescence is a fluorophore, which upon excitation is capable of re-emitting light. Fluorescent labeling uses fluorophores by attaching them covalently to biologically active compounds.The synthesis of a brevetoxin photoaffinity probe and its application in identifying a native brevetoxin receptor will be described. The preparation of a fluorescent derivative of brevetoxin will be described and its use in localizing the toxin to an organelle within K. brevis. In addition, the general utility of a synthesized photoaffinity label with other toxins having similar functionality will be described.An alternative synthetic approach to a general photoaffinity label will also be discussed whose goal was to accelerate the preparation and improve the overall synthetic yields of a multifunctional label.
机译:由于水的生动变色,以单细胞光合海洋生物的密集聚集为特征的自然现象被俗称为赤潮。鞭毛的小鞭毛藻是佛罗里达红潮盛开的原因。 brevis产生brevetoxins,一种有效的神经毒素,负责大量的海洋哺乳动物和鱼类死亡。当被人食用时,该毒素会引起神经毒性贝类中毒(NSP)。自发现以来,短杆菌毒素在生物体内的天然功能一直是个谜。需要确定促成和调节短小克氏杆菌内毒素产生的因素。这些毒素产生并保留在细胞内,暗示它们的存在具有重要的细胞作用。短毒素的定位和天然受体的鉴定可提供其天然作用以及其他聚醚梯型毒素(如雪茄毒素,麦托毒素和肠毒素。在高等生物中,这些聚醚梯形分子以高亲和力与跨膜蛋白结合。我们预期天然的brevetoxin受体也将是跨膜蛋白。光亲和标记已越来越普遍地用于识别配体受体。通过将配体连接到这些荧光体上,人们便能够在配体与其受体结合后激活分子,从而在两者之间获得永久的联系。随后的纯化提供了具有直接连接的配体的蛋白质。具有荧光能力的分子是荧光团,其在激发后能够重新发光。荧光标记通过将荧光团与生物活性化合物共价结合来使用荧光团。将描述短毒素光亲和探针的合成及其在鉴定天然短毒素受体中的应用。将描述短杆菌毒素的荧光衍生物的制备及其在将毒素定位于短小克氏杆菌内的细胞器中的用途。此外,还将描述合成的光亲和标记物与具有相同功能的其他毒素的一般用途。还将讨论通用光亲和标记物的替代合成方法,其目的是加速制备并提高多功能化合物的整体合成产率标签。

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    Cassell Ryan T;

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  • 年度 2014
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