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对参与细菌铁载体合成的芳酸腺苷化结构域的抑制作用。

Inhibition of aryl acid adenylation domains involved in bacterial siderophore synthesis.

作者信息

Miethke Marcus, Bisseret Philippe, Beckering Carsten L, Vignard David, Eustache Jacques, Marahiel Mohamed A

机构信息

Philipps-Universität Marburg, Fachbereich Chemie/Biochemie, Marburg, Germany.

出版信息

FEBS J. 2006 Jan;273(2):409-19. doi: 10.1111/j.1742-4658.2005.05077.x.

Abstract

Aryl acid adenylation domains are the initial enzymes for aryl-capping of catecholic siderophores in a plethora of microorganisms. In order to overcome the problem of iron acquisition in host organisms, siderophore biosynthesis is decisive for virulence development in numerous important human and animal pathogens. Recently, it was shown that growth of Mycobacterium tuberculosis and Yersinia pestis can be inhibited in an iron-dependent manner using the arylic acyl adenylate analogue 5'-O-[N-(salicyl)-sulfamoyl] adenosine that acts on the salicylate activating domains, MbtA and YbtE [Ferreras JA, Ryu JS, Di Lello F, Tan DS, Quadri LEN (2005) Nat Chem Biol1, 29-32]. The present study explores the behaviour of the 2,3-dihydroxybenzoate activating domain DhbE (bacillibactin synthesis) and compares it to that of YbtE (yersiniabactin synthesis) upon enzymatic inhibition using a set of newly synthesized aryl sulfamoyl adenosine derivatives. The obtained results underline the highly specific mode of inhibition for both aryl acid activating domains in accordance with their natively accepted aryl moiety. These findings are discussed regarding the structure-function based aspect of aryl substrate binding to the DhbE and YbtE active sites.

摘要

芳基酸腺苷化结构域是众多微生物中儿茶酚型铁载体芳基封端的起始酶。为了克服在宿主生物体中获取铁的问题,铁载体生物合成对于许多重要的人类和动物病原体的毒力发展起着决定性作用。最近的研究表明,使用作用于水杨酸激活结构域MbtA和YbtE的芳基酰基腺苷类似物5'-O-[N-(水杨基)-氨磺酰基]腺苷,可以以铁依赖的方式抑制结核分枝杆菌和鼠疫耶尔森菌的生长[Ferreras JA, Ryu JS, Di Lello F, Tan DS, Quadri LEN (2005) Nat Chem Biol1, 29 - 32]。本研究探讨了2,3-二羟基苯甲酸激活结构域DhbE(杆菌肽合成)的行为,并将其与使用一组新合成的芳基氨磺酰基腺苷衍生物进行酶抑制时YbtE(yersiniabactin合成)的行为进行了比较。所得结果强调了这两种芳基酸激活结构域根据其天然接受的芳基部分具有高度特异性的抑制模式。本文基于芳基底物与DhbE和YbtE活性位点结合的结构-功能方面对这些发现进行了讨论。

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