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E Beckmann

Publications and source records attributed to E Beckmann.

27 records · Page 2Linked to original sources

Phenotypes and functions of lymphocytes in congenital toxoplasmosis.

Comparisons of lymphocyte surface phenotypes and functions were made among 25 pediatric patients with congenital toxoplasmosis (ages 1 month to 5 years) and 24 uninfected babies, a baby with postnatally acquired infection, and 6 uninfected, 7 recently infected, and 6 chronically infected adults. Percentages of lymphocytes with B1, T11, T3, T4, T8, T6, B4, Ia, NKH phenotypes and T4 to T8 ratios of infected and uninfected babies were the same (p greater than 0.05). Lymphocytes from congenitally infected babies had lower blastogenic responses (mean stimulation index [SI] = 5) to Toxoplasma lysate antigens (TLA) than lymphocytes from adult control groups with recent and chronic infection (Mean SIs = 32, 72; p less than 0.001). Compared to infected adults, congenitally infected children had similar or greater responses to concanavalin A (mean SIs = 94; 118, 76, p greater than 0.05) and in mixed leukocyte culture (mean SIs = 63; 22, 26, p greater than 0.05). For symptomatic babies, low blastogenic response to TLA correlated with more severe disease at presentation (p = 0.002). Lymphocyte blastogenic responses to TLA were increased for most children when they were older than 15 months, but responses remained less than adult levels for 9 of the 17 older children studied. There was no correlation between concomitant serum pyrimethamine levels and lymphocyte blastogenic responses to TLA. Pyrimethamine and sulfonamide treatment in vitro and in vivo did not alter lymphocyte response to TLA. Lymphocytes from congenitally infected babies failed to produce either gamma interferon or Interleukin 2 when cultured with TLA. In contrast, they produced these lymphokines when cultured with concanavalin A or phytohemagglutinin. Specific deficits in cell-mediated immune responses to TLA may account for the significant organ damage that occurs in infants and children with congenital toxoplasmosis.

Adult↗

Densely packed beta-structure at the protein-lipid interface of porin is revealed by high-resolution cryo-electron microscopy.

Porin is an integral membrane protein that forms channels across the outer membrane of Escherichia coli. Electron microscopic studies of negatively stained two-dimensional porin crystals have shown three stain accumulations per porin trimer, revealing the locations of pores spanning the membrane. In this study, reconstituted porin lattices embedded in glucose were investigated using the low-dose technique on a cryo-electron microscope equipped with a helium-cooled superconducting objective lens. The specimen temperature was maintained at 5 K to yield an improved microscopic and specimen stability. Under these conditions, we obtained for the first time electron diffraction patterns from porin lattices to a resolution of 3.2 A and images showing optical diffraction up to a resolution of 4.9 A. Applying correlation averaging techniques to the digitized micrographs, we were able to reconstruct projected images of the porin trimer to a resolution of up to 3.5 A. In the final projection maps, amplitudes from electron diffraction and phases from these images were combined. The predominant feature is a high-density narrow band (about 6 A in thickness) that delineates the outer perimeter of the trimer. Since the molecule consists of almost exclusively beta-sheet structure, as revealed by spectroscopic data, we conclude that this band is a cylindrical beta-pleated sheet crossing the membrane nearly perpendicularly to its plane. Another intriguing finding is a low-density area (about 70 A2) situated in the centre of the trimer.

Bacterial Outer Membrane Proteins↗

Molecular resolution electron micrographs of monolamellar paraffin crystals.

A liquid helium-cooled cryoelectron microscope, operated to expose the specimen to only a very low electron dose, was used to obtain structural images of monolamellar n-tetratetracontane (n-C44H90) crystals at 0.25-nanometer resolution. These results are in contrast to earlier predictions that such extremely beam-sensitive materials could not be studied directly at this level of detail. Analysis of the resultant lattice images gives direct evidence for crystal bending as well as direct visualization of edge dislocations in this material.

Crystallography↗

Pneumococcal cell wall phosphorylcholine elicits polyclonal antibody secretion in mice.

Immunization of mice with phosphorylcholine (PC)-bearing Staphylococcus pneumoniae Type 2, strain 36a (R36a) results in both a PC-specific and a polyclonal increase in splenic plaque-forming cells. The polyclonal increase was observed in all strains tested, including those bearing an X-linked immune defect resulting in an undetectable anti-PC immune response. The magnitude of the polyclonal response is directly related to the amount of bacterial surface PC as detected by enzyme-linked immunosorbent assay. Congenitally athymic (nude) mice mount an anti-PC plaque-forming cell response after R36a immunization but fail to produce a significant polyclonal response. From our results it appears that PC on the cell wall of a bacterium acts both as a polyclonal activator and a specific antigen, stimulating each by different mechanisms.

Animals↗

Phosphorylcholine on isologous red blood cells induces polyclonal but not anti-phosphorylcholine plaque-forming cells in mice.

It has been demonstrated in the preceding report (Bach, M. A., Beckmann, E. and Levitt, D., Eur. J. Immunol. 1984. 14: 589) that phosphorylcholine (PC) on the bacterium Streptococcus pneumoniae R36a stimulated polyclonal as well as anti-PC plaque-forming cells (PFC) in mouse spleen in vivo. In this study, red blood cells from BALB/c mice (MRBC) were either conjugated with PC, 2,4,6-trinitrophenyl (TNP) or treated with phospholipase A2 (PLA2) to expose PC on the cell membrane (determined by hemagglutination with the anti-PC myeloma HOPC8). When BALB/c mice were immunized i.v. with the conjugated or enzyme-treated MRBC, a significant polyclonal antibody response occurred (p less than 0.05) using PC-MRBC or PLA2-treated MRBC, but not with TNP-MRBC or sham-treated MRBC. No anti-PC or anti-MRBC immunoglobulin-secreting cells developed after immunization. Repeated immunization with PC-MRBC resulted in similar levels of protein A PFC after each immunization but no anti-PC, anti-MRBC or anti-PC-MRBC PFC. Thus, PC on R36a or isologous RBC stimulated increased numbers of splenic plaque-forming cells. In the case of R36a, 10-25% of these PFC produced antibodies directed towards PC. In contrast, PC-MRBC or PLA2-treated MRBC, failed to evoke any anti-PC antibody responses.

Animals↗

In vitro plaque-forming cell responses induced by Streptococcus pneumoniae in humans.

When peripheral blood lymphocytes (PBL) were stimulated in vitro with the rough form of type 2 Streptococcus pneumoniae R36a, the resulting plaque-forming cells (PFC) did not produce antibodies directed against phosphorylcholine, a major antigenic determinant of the cell wall C-polysaccharide. Instead, R36a stimulated polyclonal PFC in PBL and splenic lymphocytes. We compared the polyclonal responses stimulated by R36a with those induced by two well-characterized polyclonal activators (PA), Staphylococcus aureus Cowan I and pokeweed mitogen (PWM). We found that R36a was a poor mitogen for PBL, whereas the other two PA were potent mitogens; that the predominant isotype produced in response to all three PA was IgM; that adherent cells strongly inhibited the polyclonal PFC response to both R36a and Staph. aureus but not PWM; and that T cells were necessary for induction of polyclonal antibody-secreting cells by all three stimuli.

Adult↗

Phosphorylcholine on Streptococcus pneumoniae R36a is responsible for in vitro polyclonal antibody secretion by human peripheral blood lymphocytes.

We have shown that Pc on the C-polysaccharide of Streptococcus pneumoniae R36a is responsible for polyclonal PFC responses induced in vitro by this bacterium in humans. R36a grown in media containing EA instead of CL, and therefore having phosphorylethanolamine instead of Pc in their C-polysaccharide, were unable to induce substantial PFC responses. When EA-substituted bacteria were chemically conjugated with Pc, their ability to induce polyclonal PFC was restored. Specific removal of Pc from the surface of the bacteria by the use PLC also resulted in abrogation of the polyclonal antibody response. These data are consistent with our hypothesis that polyclonal activation resulting from R36a stimulation may be mediated by a recently described Pc-binding receptor that is distributed on the surface of a subpopulation of B lymphocytes in humans and mice.

Adult↗