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脆弱拟杆菌中镉和汞取代的金属β-内酰胺酶的晶体结构

Crystal structures of the cadmium- and mercury-substituted metallo-beta-lactamase from Bacteroides fragilis.

作者信息

Concha N O, Rasmussen B A, Bush K, Herzberg O

机构信息

Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, Rockville, Maryland 20850, USA.

出版信息

Protein Sci. 1997 Dec;6(12):2671-6. doi: 10.1002/pro.5560061225.

Abstract

The metallo-beta-lactamases require zinc or cadmium for hydrolyzing beta-lactam antibiotics and are inhibited by mercurial compounds. To data, there are no clinically useful inhibitors of this class of enzymes. The crystal structure of the Zn(2+)-bound enzyme from Bacteroides fragilis contains a binuclear zinc center in the active site. A hydroxide, coordinated to both zinc atoms, is proposed as the moiety that mounts the nucleophilic attack on the carbonyl carbon atom of the beta-lactam ring. To study the metal coordination further, the crystal structures of a Cd(2+)-bound enzyme and of an Hg(2+)-soaked zinc-containing enzyme have been determined at 2.1 A and 2.7 A, respectively. Given the diffraction resolution, the Cd(2+)-bound enzyme exhibits the same active-site architecture as that of the Zn(2+)-bound enzyme, consistent with the fact that both forms are enzymatically active. The 10-fold reduction in activity of the Cd(2+)-bound molecule compared with the Zn(2+)-bound enzyme is attributed to fine differences in the charge distribution due to the difference in the ionic radii of the two metals. In contrast, in the Hg(2+)-bound structure, one of the zinc ions, Zn2, was ejected, and the other zinc ion, Zn1, remained in the same site as in the 2-Zn(2+)-bound structure. Instead of the ejected zinc, a mercury ion binds between Cys 104 and Cys 181, 4.8 A away from Zn1 and 3.9 A away from the site where Zn2 is located in the 2-Zn(2+)-bound molecule. The perturbed binuclear metal cluster explains the inactivation of the enzyme by mercury compounds.

摘要

金属β-内酰胺酶水解β-内酰胺抗生素需要锌或镉,且会受到汞化合物的抑制。到目前为止,这类酶还没有临床上有用的抑制剂。脆弱拟杆菌中与锌(Ⅱ)结合的酶的晶体结构在活性位点含有一个双核锌中心。据推测,与两个锌原子配位的一个氢氧根是对β-内酰胺环羰基碳原子进行亲核攻击的部分。为了进一步研究金属配位情况,分别在2.1埃和2.7埃的分辨率下测定了与镉(Ⅱ)结合的酶以及用汞(Ⅱ)浸泡过的含锌酶的晶体结构。鉴于衍射分辨率,与镉(Ⅱ)结合的酶与与锌(Ⅱ)结合的酶具有相同的活性位点结构,这与两种形式都具有酶活性这一事实是一致的。与与锌(Ⅱ)结合的酶相比,与镉(Ⅱ)结合的分子活性降低了10倍,这归因于两种金属离子半径不同导致的电荷分布细微差异。相比之下,在与汞(Ⅱ)结合的结构中,其中一个锌离子(Zn2)被排出,另一个锌离子(Zn1)留在与双锌(Ⅱ)结合结构中相同的位置。排出的锌的位置被一个汞离子取代,该汞离子结合在半胱氨酸104和半胱氨酸181之间,距离Zn1为4.8埃,距离双锌(Ⅱ)结合分子中Zn2所在位置为3.9埃。这种受到干扰的双核金属簇解释了汞化合物使酶失活的原因。

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