Computational Study of Site-Specific Correlations among Oxygen Reduction Intermediates on Pd3Y (111)

Author(s):  
Masoud Aryanpour ◽  
2018 ◽  
Vol 42 (15) ◽  
pp. 12838-12844 ◽  
Author(s):  
Xin Wen ◽  
Yongcheng Wang ◽  
Jingxiang Zhao

The negative charged boron nitride nanosheet is a novel metal free catalysts for the oxygen reduction reaction.


2010 ◽  
Vol 54 (11) ◽  
pp. 4864-4871 ◽  
Author(s):  
Stathis D. Kotsakis ◽  
Vivi Miriagou ◽  
Eva Tzelepi ◽  
Leonidas S. Tzouvelekis

ABSTRACT In GES-type β-lactamases, positions 104 and 170 are occupied by Glu or Lys and by Gly, Asn, or Ser, respectively. Previous studies have indicated an important role of these amino acids in the interaction with β-lactams, although their precise role, especially that of residue 104, remains uncertain. In this study, we constructed GES-1 (Glu104, Gly170), GES-2 (Glu104, Asn170), GES-5 (Glu104, Ser170), GES-6 (Lys104, Ser170), GES-7 (Lys104, Gly170), and GES-13 (Lys104, Asn170) by site-specific mutagenesis and compared their hydrolytic properties. Isogenic comparisons of β-lactam resistance levels conferred by these GES variants were also performed. Data indicated the following patterns: (i) Lys104-containing enzymes exhibited enhanced hydrolysis of oxyimino-cephalosporins and reduced efficiency against imipenem in relation to enzymes possessing Glu104, (ii) Asn170-containing enzymes showed reduced hydrolysis rates of penicillins and older cephalosporins, (iii) Ser170 enabled GES to hydrolyze cefoxitin efficiently, and (iv) Asn170 and Ser170 increased the carbapenemase character of GES enzymes but reduced their activity against ceftazidime. Molecular dynamic simulations of GES apoenzyme models, as well as construction of GES structures complexed with cefoxitin and an achiral ceftazidime-like boronic acid, provided insights into the catalytic behavior of the studied mutants. There were indications that an increased stability of the hydrogen bonding network of Glu166-Lys73-Ser70 and an altered positioning of Trp105 correlated with the substrate spectra, especially with acylation of GES by imipenem. Furthermore, likely effects of Ser170 on GES interactions with cefoxitin and of Lys104 on interactions with oxyimino-cephalosporins were revealed. Overall, the data unveiled the importance of residues 104 and 170 in the function of GES enzymes.


2020 ◽  
Vol MA2020-01 (38) ◽  
pp. 1689-1689
Author(s):  
Guangdong Liu ◽  
Zhenhua Zeng ◽  
Huiqiu Deng ◽  
Andrew J. Steinbach ◽  
Jeffrey Greeley

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