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首页> 外文期刊>Chembiochem: A European journal of chemical biology >New photoremovable protecting groups for carboxylic acids with high photolytic efficiencies at near-UV irradiation. Application to the photocontrolled release of L-glutamate
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New photoremovable protecting groups for carboxylic acids with high photolytic efficiencies at near-UV irradiation. Application to the photocontrolled release of L-glutamate

机译:在近紫外光照射下具有高光解效率的新型羧酸可光去除保护基。在L-谷氨酸光控释放中的应用

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摘要

We report here the syntheses and the photolytic properties of 3-(4,5-dimethoxy-2-nitrophenyl)-2-butyl (DMNP8) esters as new photoremovable groups for carboxylic acids, and their use for the caging of L-glutamate. A high-yielding synthesis of the DMNP8 esters led to a 4:1 threo/erythro diastereomeric mixture, which could be separated by HPLC. While these esters were stable in neutral buffer, photolysis at 364 nm induced a >= 95 % release of the carboxylic acid, with a 0.26 quantum yield for L-glutamate formation. L-Glutamate release was also possible by two-photon photolysis with an action cross section of 0.17 GM at 720 nm. Laser photolysis at 350 nm generated a transient species at around 410 nm, attributed to a quinonoid aci-nitro intermediate that decayed in the submillisecond time range (t(1/2) = 0.53 ms) for the faster gamma-L-glutamyl threo-esters. Given the absorbance of these esters (lambda(max)=350 nm; epsilon=4500), the threo DMNPB esters represent new caging groups that can be efficiently photolyzed at near-UV wavelengths. An efficient and rapid photolytic release of L-glutamate has been demonstrated on hippocampal neurons in primary culture.
机译:我们在这里报告3-(4,5-二甲氧基-2-硝基苯基)-2-丁基(DMNP8)酯的合成和光解性质,作为羧酸的新光可除去基团,及其在笼罩L-谷氨酸中的用途。 DMNP8酯的高产率合成导致了4:1的苏/赤型非对映异构体混合物,可通过HPLC分离。尽管这些酯在中性缓冲液中稳定,但在364 nm处的光解诱导羧酸释放> = 95%,L-谷氨酸形成的量子产率为0.26。 L-谷氨酸盐的释放也可以通过两光子光解在720 nm处具有0.17 GM的作用截面来实现。在350 nm处进行的激光光解作用在410 nm处产生了一个瞬态物种,这归因于一种醌亚甲酰硝基中间体,该中间体在亚毫秒级的时间范围内(t(1/2)= 0.53 ms)衰减,从而产生更快的γ-L-谷氨酰苏糖基-酯。给定这些酯的吸收度(λ(max)= 350 nm;ε= 4500),苏式DMNPB酯代表了新的笼蔽基团,可以在近紫外波长有效地光解。在原代培养的海马神经元上已经证明了L-谷氨酸的快速有效的光解释放。

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