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首页> 外文期刊>Organic letters >Cyclic Acyl Disulfides and Acyl Selenylsulfides as the Precursors for Persulfides (RSSH), Selenylsulfides (RSeSH), and Hydrogen Sulfide (H2S)
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Cyclic Acyl Disulfides and Acyl Selenylsulfides as the Precursors for Persulfides (RSSH), Selenylsulfides (RSeSH), and Hydrogen Sulfide (H2S)

机译:环状酰基二硫化物和酰亚苯乙酰硫化物作为过硫化酰基(RSSH),硒基硫化物(Rsesh)和硫化氢(H 2 S)的前体

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摘要

The reactions of three model compounds ( 1 – 3 ) for cyclic acyl disulfides and cyclic acyl selenylsulfides are studied. These compounds were found to be effective precursors for persulfides (RSSH) and selenylsulfides (RSeSH) upon reacting with nucleophilic species. They could also act as H_(2)S donors when interacting with cellular thiols. The most interesting discovery was the generation of RSeSH from compound 3 under mild conditions. Selenylsulfides (RSeSH) are expected to be important regulating molecules involved in Sec-related redox signaling. The method of producing RSeSH should allow researchers to better understand the chemical biology of RSeSH.
机译:研究了三种模型化合物(1-3)的环状酰基二硫化物和环酰酰氯磺酰硫化物的反应。 发现这些化合物是过硫化酰基(RSSH)和硒基硫醚(RSESH)的有效前体在与亲核物质反应时(RSESH)。 当与细胞硫醇相互作用时,它们也可以充当H_(2)的捐赠者。 最有趣的发现是在温和条件下从化合物3生成Rsesh。 预期硒基硫醚(RSESH)是涉及与秒相关的氧化还原信号传导的重要调节分子。 生产RSESH的方法应允许研究人员更好地了解RSESH的化学生物学。

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  • 来源
    《Organic letters》 |2018年第3期|共4页
  • 作者单位

    Department of Chemistry Washington State University Pullman Washington 99164 United States;

    Department of Chemistry Washington State University Pullman Washington 99164 United States;

    Department of Chemistry Washington State University Pullman Washington 99164 United States;

    Division of Cancer Epidemiology and Genetics NCI NIH Rockville Maryland 20850 United States;

    Department of Chemistry Washington State University Pullman Washington 99164 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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