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牛磺酸氯胺:一种可能的氧化剂储存库。

Taurine chloramine: a possible oxidant reservoir.

作者信息

Ogino Tetsuya, Than Tin Aung, Hosako Mutsumi, Ozaki Michitaka, Omori Masako, Okada Shigeru

机构信息

Pathology and Experimental Medicine, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama, Japan.

出版信息

Adv Exp Med Biol. 2009;643:451-61. doi: 10.1007/978-0-387-75681-3_47.

Abstract

Taurine is abundant in polymorphonuclear leukocytes (PMNs) where it reacts with PMN-derived hypochlorous acid to form taurine chloramine (Tau-NHCl), a substance that does not readily cross the cell membrane. When PMNs were stimulated in PBS lacking taurine, extracellular oxidant concentration was low, but the concentration increased 3-4 fold when 15 mM taurine was added, indicating that taurine lowers oxidant levels inside the cell. When Tau-NHCl was added to Jurkat cells in suspension, its half life was about 75 min. In contrast, membrane-permeable ammonia mono-chloramine (NH2Cl) has a half life of only 6 min. Accordingly, NH2Cl oxidizes cytosolic proteins, such as IkappaB, and inhibits NF-kappaB activation, whereas Tau-NHCl exhibits no comparable effect. However, when NH4+ was added to the medium, Tau-NHCl oxidizes IkappaB and inhibits NF-kappaB activation, probably through oxidant transfer to NH4+ leading to NH2Cl formation. These results indicate that Tau-NHCl can serve as an oxidant reservoir, exhibiting either delayed oxidant effects or acting as an oxidant at a distant site.

摘要

牛磺酸在多形核白细胞(PMN)中含量丰富,在那里它与PMN产生的次氯酸反应形成氯胺牛磺酸(Tau-NHCl),这种物质不容易穿过细胞膜。当在缺乏牛磺酸的PBS中刺激PMN时,细胞外氧化剂浓度较低,但当添加15 mM牛磺酸时,浓度增加3 - 4倍,这表明牛磺酸降低了细胞内的氧化剂水平。当将Tau-NHCl添加到悬浮的Jurkat细胞中时,其半衰期约为75分钟。相比之下,可透过细胞膜的一氯胺(NH2Cl)的半衰期仅为6分钟。因此,NH2Cl氧化细胞质蛋白,如IkappaB,并抑制NF-κB激活,而Tau-NHCl则没有类似的作用。然而,当向培养基中添加NH4+时,Tau-NHCl氧化IkappaB并抑制NF-κB激活,可能是通过氧化剂转移到NH4+导致形成NH2Cl。这些结果表明,Tau-NHCl可以作为氧化剂储存库,表现出延迟的氧化作用或在远处位点作为氧化剂起作用。

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