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一种用于检测内源性d-半胱氨酸的新型立体特异性生物发光测定法。

A Novel Stereospecific Bioluminescent Assay for Detection of Endogenous d-Cysteine.

作者信息

Roychaudhuri Robin, Gadalla Moataz M, West Timothy, Snyder Solomon H

机构信息

Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, United States.

Department of Pharmacology and Molecular Sciences, Johns Hopkins University School of Medicine, Baltimore, Maryland 21287, United States.

出版信息

ACS Chem Neurosci. 2022 Dec 7;13(23):3257-3262. doi: 10.1021/acschemneuro.2c00528. Epub 2022 Nov 20.

Abstract

The presence of endogenous d-stereoisomers of amino acids in mammals dispels a long-standing dogma about their existence. d-Serine and d-aspartate function as novel neurotransmitters in mammals. However, the stereoisomer with the fastest, spontaneous in vitro racemization rate, d-cysteine, has not been reported. We utilized a novel, stereospecific, bioluminescent assay to identify endogenous d-cysteine in substantial amounts in the eye, brain, and pancreas of mice. d-Cysteine is enriched in mice embryonic brains at day E9.5 (4.5 mM) and decreases progressively with development (μM levels). d-Cysteine is also present in significantly higher amounts in the human brain white matter compared with gray matter. In the luciferase assay, d-cysteine conjugates with cyano hydroxy benzothiazole in the presence of a base and reducing agent to form d-luciferin. d-Luciferin, subsequently, in the presence of firefly luciferase and ATP, emits bioluminescence proportional to the concentration of d-cysteine. The assay is stereospecific and allows the quantitative estimation of endogenous d-cysteine in tissues in addition to its specificity for d-cysteine. Future efforts aimed at bioluminescent in vivo imaging of d-cysteine may allow a more noninvasive means of its detection, thereby elucidating its function.

摘要

哺乳动物体内氨基酸内源性d-立体异构体的存在打破了一个长期以来关于其存在的教条。d-丝氨酸和d-天冬氨酸在哺乳动物中作为新型神经递质发挥作用。然而,体外消旋化速度最快的立体异构体d-半胱氨酸尚未见报道。我们利用一种新型的、立体特异性的生物发光测定法,在小鼠的眼睛、大脑和胰腺中鉴定出大量内源性d-半胱氨酸。d-半胱氨酸在小鼠胚胎大脑E9.5天(4.5 mM)时富集,并随着发育逐渐减少(达到微摩尔水平)。与灰质相比,d-半胱氨酸在人类脑白质中的含量也显著更高。在荧光素酶测定中,d-半胱氨酸在碱和还原剂存在的情况下与氰基羟基苯并噻唑结合形成d-荧光素。随后,d-荧光素在萤火虫荧光素酶和ATP存在的情况下发出与d-半胱氨酸浓度成正比的生物发光。该测定法具有立体特异性,除了对d-半胱氨酸具有特异性外,还能对组织中的内源性d-半胱氨酸进行定量估计。未来旨在对d-半胱氨酸进行生物发光体内成像的研究可能会提供一种更无创的检测方法,从而阐明其功能。

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