
v88L
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Liu Z, Piccirilli A, Liu D, Li W, Wang Y, Shen J. Deciphering the Role of V88L Substitution in NDM-24 Metallo-β-Lactamase. Catalysts. 2019; 9(9):744. https://doi.org/10.3390/catal9090744
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This study characterizes the role of the V88L substitution in NDM-24 and provides insight about the NDM variants evolution.
PDF Deciphering the Role of V88L Substitution in NDM-24 metallo-
Deciphering the Role of V88L Substitution in NDM-24 metallo-β-lactamase. Zhihai Liua, b, Alessandra Piccirillic, Dejun Liub, Wan Lib, Yang Wangb and Jianzhong Shenb,* Agricultural Bio-pharmaceutical Laboratory, College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao 266109, China.
Plasmid-Mediated Novel
NDM-17 shares the V88L and M154L substitutions with NDM-5, in addition to E170K. Our kinetic data showed that NDM-17 had a significantly higher affinity for all β-lactams tested and obviously increased catalytic efficiencies for cefoxitin and penicillin G.
IO™ CHO-K1-Tg(Human GPBA Receptor V88L) Stable ... - Creative Biolabs
Sequencing analyses of blaNDM region of the plasmid DNA determined two types of variants viz., NDM-1 (n = 3) and NDM-5 (n = 2). Notably, NDM-5 variants harbored V88L and M154L mutations, which are known to increase the fitness of NDM-5 variant towards host immune system and zinc starvation.
Molecular detection of the New Delhi metallo-β-lactamase clinical ...
In the process of NDM evolution under an environmental pressure selection, V88L/M154L combination appears to be favorable (Bahr et al., 2017).