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Deciphering the Role of V88L Substitution in NDM-24 metallo-β-lactamase

Deciphering the Role of V88L Substitution in NDM-24 metallo-β-lactamase : The New Delhi metallo-β-lactamase-1 (NDM-1) is a typical carbapenemase and plays a crucial role in antibiotic-resistance bacterial infection.

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Evolving trends of New Delhi Metallo-betalactamse (NDM) variants: A ...

of NDM-variants. In this study, we evaluated the role of the V88L substitution in NDM-24 by kinetical and structural analysis. Functional results showed that V88L did not significantly increase the resistance level in the NDM-24 transformant toward penicillins, cephalosporins, meropenem, and imipenem.

Biochemical characterization of New Delhi metallo-β-lactamase variants ...

NDM-5, -17, -20, -21 and -24 variants which contain V88L substitution (Table 1), have been reported to show improved carbapenemase activity (Hornsey et al., 2011; Liu et al., 2017; Liu et al., 2018b; Liu et al., 2018a; Liu et al., 2019).

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The NDM-5 variants were found harbouring V88L and M154L mutations. The NDM variants were found harboring other antibiotic resistance markers, plasmid replicons and virulence genes. It is essential to resolve the genetic insights of the evolving NDM variants for infection control and correct therapeutics

Deciphering the Role of V88L Substitution in NDM-24 Metallo-β ... - MDPI

Here, we characterize a novel NDM variant (assigned NDM-17) identified in a β-lactam-resistant sequence type 48 (ST48) Escherichia coli strain that was isolated from a chicken in China. Compared to NDM-1, NDM-17 had three amino acid substitutions (V88L, M154L, and E170K) that confer significantly enhanced carbapenemase activity.