A One Health Perspective on <i>Proteus mirabilis</i>: The Interaction of Virulence and Antimicrobial Resistance Across Human and Animal Reservoirs. [PDF]
Hasona IF, Awad A, Younis G, Mohamed WF.
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Genomic and Biological Characterization of a Novel <i>Proteus mirabilis</i> Phage with Anti-Biofilm Activity. [PDF]
Liang Y, Li N, Wan S, Li Y, Li Y, Qu Y.
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Characterization of <i>Proteus mirabilis</i> isolated from ticks collected in Isiolo and Kilifi Counties, Kenya. [PDF]
Kimemia BB +12 more
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Evaluating Proteus mirabilis phage vB_PmiA_PM1 efficacy against catheter-associated urinary tract infections in artificial urine and laboratory media. [PDF]
Gomaa SE +5 more
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Phage PM16 Therapy Induce Long-Term Protective Immunity Against <i>Proteus mirabilis</i> via Macrophage Priming. [PDF]
Al Allaf L +5 more
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Dissemination of integrons and carbapenemase-encoding genes among multidrug resistant Proteus mirabilis isolated from urinary tract infections in Egypt. [PDF]
Zaki S, Kotb DN, Abdelrahim SS.
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Draft genome sequences of two multidrug-resistant <i>Proteus mirabilis</i> isolates from hospital wastewater and a discharge point into Manila Bay, Philippines. [PDF]
Padon SDM +8 more
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Phosphatase from Proteus mirabilis [PDF]
Cell-free preparations of Proteus mirabilis contained a phosphatase (EC 3.1.3.1), whose activity surpassed that of alkaline phosphatase from Escherichia coli. Phosphatase was also found in the culture liquid of P. mirabilis. The composition of proteins displaying enzyme activity was assayed by polyacrylamide gel electrophoresis.
Salikhova Z., Sokolova R., Yusupova D.
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Biosynthesis of Proteus mirabilis Nuclease [PDF]
The culture liquid and periplasm of Proteus mirabilis contained nuclease, an enzyme with DNase and RNase activities. The nuclease was most actively synthesized in the early exponential and stationary growth phases. Nuclease synthesis was regulated by nucleic acids (induction by substrate) and inorganic phosphate (end-product inhibition).
Salikhova Z., Sokolova R., Yusupova D.
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