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Lymphocyte surface thiol levels

机译:淋巴细胞表面硫醇水平

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Recent studies have implicated reduced thiols (cysteine -SH) in the function of individual cell surface proteins. Studies presented here demonstrate that the overall level of reduced thiols on cell surface molecules differs on individual subsets of peripheral blood mono-nuclear cells and that these levels can be manipulated in vitro by altering the level of intracellular glutathione (iGSH). To quantitate cell surface thiols, we have developed a Hi-D (11-color) fluorescence-activated cell sorter method in which we covalently couple a fluorescent molecule, Alexa-maleimide, to free (reduced) -SH groups on proteins or other molecules exposed on the cell surface (exofacial membrane). In addition, to reveal changes in cell surface thiol levels in response to various in vitro treatments, we used a pair of fluorescent Alexa dyes with distinct excitation and emission spectra to stain the cells before and after treatments. These in vitro studies demonstrate that decreasing iGSH, by specifically inhibiting Its synthesis, decreases cell surface molecule thiols (csm-SH) and that preventing loss of iGSH also prevents loss of csm-SH. However, examination of peripheral blood mononuclear cell subsets tested immediately after isolation from healthy or HIV-infected subjects failed to reveal a similar relationship between internal iGSH and csm-SH. Although there is a relatively wide variation between individuals in both csm-SH and iGSH, there is no correlation between median iGSH and csm-SH compared for 22 healthy and 36 HIV-infected subjects. Collectively, our findings indicate that local environment plays a greater role in determining the redox status of cell surface molecules than the internal redox status of the cells.
机译:最近的研究表明单个细胞表面蛋白功能降低了硫醇(半胱氨酸-SH)。此处进行的研究表明,在外周血单核细胞的各个子集上,细胞表面分子上还原的硫醇的总体水平有所不同,并且可以通过改变细胞内谷胱甘肽(iGSH)的水平在体外控制这些水平。为了量化细胞表面硫醇,我们开发了一种Hi-D(11色)荧光激活细胞分选方法,其中我们将一个荧光分子Alexa-马来酰亚胺共价偶联到蛋白质或其他分子上的游离(还原)-SH基团上暴露在细胞表面(面膜)上。另外,为了揭示响应各种体外处理而引起的细胞表面硫醇水平的变化,我们在处理前后使用了一对具有独特激发和发射光谱的荧光Alexa染料对细胞进行染色。这些体外研究表明,通过特异性抑制iGSH的合成来降低iGSH的含量会降低细胞表面分子硫醇(csm-SH),防止iGSH的丢失也可以防止csm-SH的丢失。但是,从健康人或HIV感染者中分离后立即测试的外周血单核细胞亚群的检查未能揭示内部iGSH与csm-SH之间的相似关系。尽管csm-SH和iGSH的个体之间存在相对较大的差异,但与22位健康受试者和36位HIV感染者相比,iGSH和csm-SH的中位数之间没有相关性。总的来说,我们的发现表明,局部环境在确定细胞表面分子的氧化还原状态方面比细胞的内部氧化还原状态起更大的作用。

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