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周质二锌形式的金属β-内酰胺酶GOB的晶体结构揭示了一个不同寻常的金属位点。

Crystal Structure of the Metallo-β-Lactamase GOB in the Periplasmic Dizinc Form Reveals an Unusual Metal Site.

作者信息

Morán-Barrio Jorgelina, Lisa María-Natalia, Larrieux Nicole, Drusin Salvador I, Viale Alejandro M, Moreno Diego M, Buschiazzo Alejandro, Vila Alejandro J

机构信息

Departamento de Química Biológica and Instituto de Biología Molecular y Celular de Rosario (IBR, CONICET-UNR), Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Rosario, Argentina.

Departamento de Química Biológica and Instituto de Biología Molecular y Celular de Rosario (IBR, CONICET-UNR), Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Rosario, Argentina Laboratory of Molecular & Structural Microbiology, Institut Pasteur de Montevideo, Montevideo, Uruguay.

出版信息

Antimicrob Agents Chemother. 2016 Sep 23;60(10):6013-22. doi: 10.1128/AAC.01067-16. Print 2016 Oct.

Abstract

Metallo-beta-lactamases (MBLs) are broad-spectrum, Zn(II)-dependent lactamases able to confer resistance to virtually every β-lactam antibiotic currently available. The large diversity of active-site structures and metal content among MBLs from different sources has limited the design of a pan-MBL inhibitor. GOB-18 is a divergent MBL from subclass B3 that is expressed by the opportunistic Gram-negative pathogen Elizabethkingia meningoseptica This MBL is atypical, since several residues conserved in B3 enzymes (such as a metal ligand His) are substituted in GOB enzymes. Here, we report the crystal structure of the periplasmic di-Zn(II) form of GOB-18. This enzyme displays a unique active-site structure, with residue Gln116 coordinating the Zn1 ion through its terminal amide moiety, replacing a ubiquitous His residue. This situation contrasts with that of B2 MBLs, where an equivalent His116Asn substitution leads to a di-Zn(II) inactive species. Instead, both the mono- and di-Zn(II) forms of GOB-18 are active against penicillins, cephalosporins, and carbapenems. In silico docking and molecular dynamics simulations indicate that residue Met221 is not involved in substrate binding, in contrast to Ser221, which otherwise is conserved in most B3 enzymes. These distinctive features are conserved in recently reported GOB orthologues in environmental bacteria. These findings provide valuable information for inhibitor design and also posit that GOB enzymes have alternative functions.

摘要

金属β-内酰胺酶(MBLs)是一类广谱的、依赖锌(II)的β-内酰胺酶,能够对目前可用的几乎所有β-内酰胺抗生素产生耐药性。不同来源的MBLs活性位点结构和金属含量的巨大多样性限制了泛MBL抑制剂的设计。GOB-18是B3亚类中的一种不同寻常的MBL,由机会性革兰氏阴性病原体脑膜败血伊丽莎白金菌表达。这种MBL是非典型的,因为在B3酶中保守的几个残基(如金属配体组氨酸)在GOB酶中被取代。在这里,我们报道了GOB-18周质双锌(II)形式的晶体结构。这种酶显示出独特的活性位点结构,其中残基Gln116通过其末端酰胺部分与Zn1离子配位,取代了普遍存在的组氨酸残基。这种情况与B2 MBLs不同,在B2 MBLs中,等效的His116Asn取代导致双锌(II)无活性物种。相反,GOB-18的单锌(II)和双锌(II)形式对青霉素、头孢菌素和碳青霉烯类均有活性。计算机对接和分子动力学模拟表明,与Ser221不同,残基Met221不参与底物结合,而Ser221在大多数B3酶中是保守的。这些独特的特征在最近报道的环境细菌中的GOB同源物中是保守的。这些发现为抑制剂设计提供了有价值的信息,也表明GOB酶具有其他功能。

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本文引用的文献

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Bacteremia due to Elizabethkingia meningoseptica.嗜麦芽窄食单胞菌所致菌血症。
IDCases. 2015 Jan 17;2(1):13-5. doi: 10.1016/j.idcr.2015.01.002. eCollection 2015.
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Overcoming differences: The catalytic mechanism of metallo-β-lactamases.克服差异:金属β-内酰胺酶的催化机制
FEBS Lett. 2015 Nov 14;589(22):3419-32. doi: 10.1016/j.febslet.2015.08.015. Epub 2015 Aug 20.
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Metallo-β-lactamase structure and function.金属β-内酰胺酶的结构与功能。
Ann N Y Acad Sci. 2013 Jan;1277:91-104. doi: 10.1111/j.1749-6632.2012.06796.x. Epub 2012 Nov 16.

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