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M Mielke

Publications and source records attributed to M Mielke.

27 records · Page 2Linked to original sources

Synthesis and intracellular localization of vaccinia virus deoxyribonucleic acid-dependent ribonucleic acid polymerase.

The time course of vaccinia deoxyribonucleic acid (DNA)-dependent ribonucleic acid (RNA) polymerase synthesis and its intracellular localization were studied with virus-infected HeLa cells. Viral RNA polymerase activity could be meassured shortly after viral infection in the cytoplasmic fraction of infected cells in vitro. However, unless the cells were broken in the presence of the nonionic detergent Triton-X-100, no significant synthesis of new RNA polymerase was detected during the viral growth cycle. When cells were broken in the presence of this detergent, extensive increases in viral RNA polymerase activity were observed late in the infection cycle. The onset of new RNA polymerase synthesis was dependent on prior viral DNA replication. Fluorodeoxyuridine (5 x 10(-5)m) prevented the onset of viral polymerase synthesis. Streptovitacin A, a specific and complete inhibitor of protein synthesis in HeLa cells, prevented the synthesis of RNA polymerase. Thus, the synthesis of RNA polymerase is a "late" function of the virus. The newly synthesized RNA polymerase activity was primarily bound to particles which sedimented during high-speed centrifugation. These particles have been characterized by sucrose gradient centrifugation. A major class of active RNA polymerase particles were considerably "lighter" than whole virus in sucrose gradients. These particles were entirely resistant to the action of added pancreatic deoxyribonuclease, and they were not stimulated by added calf thymus primer DNA. It is concluded that these particles are not active in RNA synthesis in vivo, and that activation occurs as a result of detergent treatment in vitro.

Animals↗

[On tax practices].

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Economics, Dental↗

[Immunologic findings in HIV infected children with bacterial infections].

BACKGROUND: Bacterial infections are a major cause of illness in HIV-infected children. HIV-infected children with severe dysfunction of cellular and humoral immunity are particularly vulnerable. METHODS AND PATIENTS: We conducted a retrospective study to analyse the incidence and spectrum of bacterial infections in HIV-infected children compared to HIV-exposed but not infected controls related to their immunological status. Data collected during 1985 to May 1993 were evaluated considering 333 HIV-infected and 81 controls. RESULTS: During observation time 359 episodes (29% of the visits) of purulent rhinitis were diagnosed in HIV-infected children compared to the controls (53 episodes/8%); p = 0.0001. Comparable results were seen in otitis media. 178 episodes/14% were found in HIV-infected children and 66 episodes/10% in the controls (p = 0.001). 53 episodes/5% of bacterial pneumonia were represented in HIV-infected versus 11 episodes/2% in controls (p = 0.001). The increase of lymphocyte immune defect correlated to an increase of bacterial infections. This alterations were particularly observed in HIV-infected children with bacterial pneumonia. Severe dysfunction of cellular immunity was found in children with recurrent pneumonia compared to children with only one episode of bacterial pneumonia. The proliferate response of peripheral blood lymphocyte to pokeweed mitogen (13,351 cpm versus 3080 cpm); p = 0.009 and Concanavalin A (12,607 cpm versus 2470 cpm); p = 0.01 was significantly reduced in both groups, although the defect was much more pronounced in the group with the recurrent pneumonia. CONCLUSIONS: Our observations results showed that bacterial respiratory tract infections occurred significantly more frequently in HIV-infected children compared to an age related control group. Not only the occurrence of opportunity infections but also severe bacterial infections especially recurrent pneumonia are associated with a defect in cell-mediated immunity.

AIDS-Related Opportunistic Infections↗

[Reactive arthritis associated bacteria as the etiology of undifferentiated oligoarthritis].

Undifferentiated oligoarthritis (UOA) resembles clinically reactive arthritis (ReA), but does not fulfill the diagnostic criteria. In 46 patients with UOA, in 16 with ReA, and in 15 with rheumatoid arthritis (RA) the humoral and cellular immune response to the ReA-associated bacteria Chlamydia trachomatis, Yersinia enterocolitica, Shigella flexneri, Salmonella enteritidis, Campylobacter jejuni and Borrelia burgdorferi was investigated in paired samples of synovial fluid and peripheral blood. An antigen-specific lymphocyte proliferation in SF was found in 75% of the ReA and in 39% of UOA patients, but in none with RA. Shigella and Chlamydia in ReA and Yersinia and Chlamydia in UOA were the most frequent stimulating antigens. There was a poor correlation between antigen specific lymphocyte proliferation and specific antibodies. We conclude that these bacteria might have a pathogenetic role, not only in ReA, but also in UOA.

Adult↗