Literature DB >> 985803

Interaction of virulent Mycoplasma pneumoniae with hamster tracheal organ cultures.

P C Hu, A M Collier, J B Baseman.   

Abstract

Exposure of hamster tracheal organ cultures to virulent Mycoplasma pneumoniae leads to alterations in ribonucleic acid (RNA) and protein biosynthesis and metabolism of the respiratory epithelium. An examination of the turnover rates of RNA and protein in infected tracheal organ cultures indicates that the rates of degradation of both prelabeled host cell RNA and protein are similar to those of uninfected controls. Infected tracheal organ cultures shifted to a nonpermissive medium within 24 h after infection and further incubated in the nonpermissive medium for 72 or 96 h behaved as normal uninfected cultures in terms of metabolic precursor uptake. Under these conditions, mycoplasmas remained attached to the respiratory epithelium. Cell membranes prepared from virulent mycoplasmas by several procedures neither attached to nor altered the metabolic activity of tracheal cultures. These data indicate that the intimate contact between virulent mycoplasmas and the respiratory epithelium does not alone account for the subsequent interruption of host cell metabolism but must be accompanied by continued multiplication and biochemical function of attached mycoplasmas.

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Year:  1976        PMID: 985803      PMCID: PMC420866          DOI: 10.1128/iai.14.1.217-224.1976

Source DB:  PubMed          Journal:  Infect Immun        ISSN: 0019-9567            Impact factor:   3.441


  15 in total

1.  Incorporation of labeled glucosamine into glycoproteins by organ cultures of hamster trachea: adverse effects of HEPES buffer.

Authors:  P F Daniel; G Wolf
Journal:  In Vitro       Date:  1975 Nov-Dec

Review 2.  Physiology of mycoplasmas.

Authors:  S Razin
Journal:  Adv Microb Physiol       Date:  1973       Impact factor: 3.517

3.  Alteration of cell-surface proteins by viral transformation and by proteolysis.

Authors:  R O Hynes
Journal:  Proc Natl Acad Sci U S A       Date:  1973-11       Impact factor: 11.205

4.  Appearance of Mycoplasma pneumoniae in lungs of experimentally infected hamsters and sputum from patients with natural disease.

Authors:  A M Collier; W A Clyde
Journal:  Am Rev Respir Dis       Date:  1974-12

5.  Adherence of Neisseria gonorrhoeae to urethral mucosal cells: an electron-microscopic study of human gonorrhea.

Authors:  M E Ward; P J Watt
Journal:  J Infect Dis       Date:  1972-12       Impact factor: 5.226

6.  Attachment of Mycoplasma pneumoniae to respiratory epithelium.

Authors:  D A Powell; P C Hu; M Wilson; A M Collier; J B Baseman
Journal:  Infect Immun       Date:  1976-03       Impact factor: 3.441

7.  Alterations in the metabolism of hamster tracheas in organ culture after infection by virulent Mycoplasma pneumoniae.

Authors:  P C Hu; A M Collier; J B Baseman
Journal:  Infect Immun       Date:  1975-04       Impact factor: 3.441

8.  The attachment of Clostridium welchii (Cl. perfringens) type C to intestinal villi of pigs.

Authors:  J B Arbuckle
Journal:  J Pathol       Date:  1972-02       Impact factor: 7.996

9.  Cytotoxicity of Mycoplasma pneumoniae Membranes.

Authors:  M G Gabridge; C K Johnson; A M Cameron
Journal:  Infect Immun       Date:  1974-11       Impact factor: 3.441

10.  Selective bacterial adherence to oral epithelial surfaces and its role as an ecological determinant.

Authors:  R J Gibbons; J van Houte
Journal:  Infect Immun       Date:  1971-04       Impact factor: 3.441

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  32 in total

1.  Synthesis and distribution of CARDS toxin during Mycoplasma pneumoniae infection in a murine model.

Authors:  T R Kannan; Jacqueline J Coalson; Marianna Cagle; Oxana Musatovova; R Doug Hardy; Joel B Baseman
Journal:  J Infect Dis       Date:  2011-09-28       Impact factor: 5.226

2.  Mutant analysis reveals a specific requirement for protein P30 in Mycoplasma pneumoniae gliding motility.

Authors:  Benjamin M Hasselbring; Jarrat L Jordan; Duncan C Krause
Journal:  J Bacteriol       Date:  2005-09       Impact factor: 3.490

3.  A model for demonstrating the adhesion of Actinobacillus seminis to epithelial cells.

Authors:  M C Healey; H H Hwang; Y Y Elsner; A V Johnston
Journal:  Can J Vet Res       Date:  1991-04       Impact factor: 1.310

4.  Demonstration of multiple antigenic determinants on Mycoplasma pneumoniae attachment protein by monoclonal antibodies.

Authors:  P C Hu; C H Huang; Y S Huang; A M Collier; W A Clyde
Journal:  Infect Immun       Date:  1985-10       Impact factor: 3.441

5.  Structure of CARDS toxin, a unique ADP-ribosylating and vacuolating cytotoxin from Mycoplasma pneumoniae.

Authors:  Argentina Becker; T R Kannan; Alexander B Taylor; Olga N Pakhomova; Yanfeng Zhang; Sudha R Somarajan; Ahmad Galaleldeen; Stephen P Holloway; Joel B Baseman; P John Hart
Journal:  Proc Natl Acad Sci U S A       Date:  2015-04-06       Impact factor: 11.205

6.  Mycoplasma pulmonis Vsa proteins and polysaccharide modulate adherence to pulmonary epithelial cells.

Authors:  Jeffrey R Bolland; Kevin Dybvig
Journal:  FEMS Microbiol Lett       Date:  2012-04-10       Impact factor: 2.742

7.  Parasitism of hamster trachea epithelial cells by Mycoplasma pneumoniae.

Authors:  Y Y Chen; D C Krause
Journal:  Infect Immun       Date:  1988-03       Impact factor: 3.441

8.  Attachment of pathogenic Neisseria to human mucosal surfaces: role in pathogenesis.

Authors:  D S Stephens; Z A McGee; M A Melly; L H Hoffman; C R Gregg
Journal:  Infection       Date:  1982       Impact factor: 3.553

9.  Mycoplasma pneumoniae Community Acquired Respiratory Distress Syndrome toxin expression reveals growth phase and infection-dependent regulation.

Authors:  T R Kannan; Oxana Musatovova; Sowmya Balasubramanian; Marianna Cagle; Jarrat L Jordan; Thomas M Krunkosky; Alan Davis; Robert D Hardy; Joel B Baseman
Journal:  Mol Microbiol       Date:  2010-02-28       Impact factor: 3.501

10.  Role of host cell metabolism in the pathogenesis of Mycoplasma pneumoniae infection.

Authors:  S Upchurch; M G Gabridge
Journal:  Infect Immun       Date:  1981-01       Impact factor: 3.441

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