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Proteus mirabilis

CABI Compendium, 2022
This datasheet on Proteus mirabilis covers Identity, Overview, Distribution, Hosts/Species Affected, Further Information.

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Hematogenous Proteus Mirabilis Osteomyelitis

Orthopedics, 1983
ABSTRACT: Hematogenous gram negative infection of the long bones can present a confusing clinical picture that may delay treatment or lead to an inappropriate choice of initial treatment, and thereby compromise the resuit. This report emphasizes the common clinical features of this condition: previous urinary or gastrointestinal tract instrumentation ...
M A, Thorpe, J A, Buckwalter
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Phosphatase from Proteus mirabilis

Applied Biochemistry and Microbiology, 2001
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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Endonuclease from Proteus mirabilis

Applied Biochemistry and Microbiology, 2001
Two isoforms of nuclease displaying DNase and RNase activities were found in the culture liquid and periplasm of Proteus mirabilis. The enzyme was isolated from the periplasm and then purified to a functionally homogeneous state. The nuclease was equally potent in cleaving denatured and native DNAs by the endonuclease mechanism and was designated Pm ...
Salikhova Z.   +3 more
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Biosynthesis of Proteus mirabilis Nuclease

Microbiology, 2000
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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Transcription of Proteus mirabilis flaAB

Microbiology, 2004
Proteus mirabilis, a Gram-negative urinary tract pathogen, has two highly homologous, tandemly arranged flagellin-encoding genes, flaA and flaB. flaA is transcribed from a σ 28 promoter, while flaB is a silent allele.
Jim, Manos, Robert, Belas
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Gene interaction network approach to elucidate the multidrug resistance mechanisms in the pathogenic bacterial strain Proteus mirabilis

Journal of Cellular Physiology, 2020
Proteus mirabilis is one among the most frequently identified pathogen in patients with the urinary tract infection. The multidrug resistance exhibited by P.
S. Miryala, A. Anbarasu, Sudha Ramaiah
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Linked Transduction in Proteus mirabilis

Nature, 1966
LINKED transduction in Proteus has not hitherto been described. This investigation was carried out to determine possible linkage between arginine loci and other gene loci in Proteus mirabilis strain 13 (ref. 1).
O W, Prozesky, J N, Coetzee
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Endonuclease from Proteus mirabilis | Endonukleaza Proteus mirabilis.

2001
Two isoforms of nuclease displaying DNase and RNase activities were found in the culture liquid and periplasm of Proteus mirabilis. The enzyme was isolated from the periplasm and then purified to a functionally homogeneous state. The nuclease was equally potent in cleaving denatured and native DNAs by the endonuclease mechanism and was designated Pm ...
Salikhova Z.   +3 more
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Experimental Proteus mirabilis Burn Surface Infection

Archives of Surgery, 1982
We established a human burn isolate of Proteus mirabilis as an experimental pathogen. Infliction of a nonfatal scald injury (30%) rendered rats highly susceptible to lethal surface infection with this isolate. Dose-response experiments indicated that the lethal inoculation dose (50%) was less than 10(3) organisms per square centimeter ...
A T, McManus, C G, McLeod, A D, Mason
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