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J L Birrien

Publications and source records attributed to J L Birrien.

16 recordsLinked to original sources

Isolation and characterization of Thermus thermophilus Gy1211 from a deep-sea hydrothermal vent.

We examined a single, non-spore-forming, aerobic, thermophilic strain that was isolated from a deep-sea hydrothermal vent in the Guaymas Basin at a depth of 2000 m and initially placed in a phenetic group with Thermus scotoductus (X-1). We identified this deep-sea isolate as a new strain belonging to Thermus thermophilus using several parameters. DNA-DNA hybridization under stringent conditions showed 74% similarity between the deep-sea isolate and T. thermophilus HB-8T (T = type strain). Phenotypic characteristics, such as the utilization of carbon sources, hydrolysis of different compounds, and antibiotic sensitivity were identical in the two strains. The polar lipids composition showed that strain Gy1211 belonged to the genus Thermus. The fatty acids composition indicated that this strain was related to the marine T. thermophilus strain isolated from the Azores. The new isolate T. thermophilus strain Gy1211 grew optimally at 75 degrees C, pH 8.0; and 2% NaCl. A hydrostatic pressure of 20 MPa, similar to the in situ hydrostatic pressure of the deep-sea vent from which the strain was isolated, had no effect on growth. Strain HB-8T, however, showed slower growth under these conditions.

Cell Division↗

A stress protein is induced in the deep-sea barophilic hyperthermophile Thermococcus barophilus when grown under atmospheric pressure.

The whole-cell protein inventory of the deep-sea barophilic hyperthermophile Thermococcus barophilus was examined by one-dimensional SDS gradient gel electrophoresis when grown under different pressure conditions at 85 degrees C (Topt). One protein (P60) with a molecular mass of approximately 60 kDa was prominent at low pressures (0.3 MPa hydrostatic pressure and 0.1 MPa atmospheric pressure) but not at deep-sea pressures (10, 30, and 40 MPa). About 17 amino acids were sequenced from the N-terminal end of the protein. Sequence homology analysis in the GenBank database showed that P60 most closely resembled heat-shock proteins in some sulfur-metabolizing Archaea. A high degree of amino acid identity (81%-93%) to thermosome subunits in Thermococcales strains was found. Another protein (P35) with molecular mass of approximately 35.5 kDa was induced at 40 MPa hydrostatic pressure but not under low-pressure conditions. No amino acid sequence homology was found for this protein when the 40 amino acids from the N-terminal end were compared with homologous regions of proteins from databases. A PTk diagram was generated for T. barophilus. The results suggest that Phabitat is about 35 MPa, which corresponds to the in situ pressure where the strain was obtained.

Amino Acid Sequence↗

Thermococcus barophilus sp. nov., a new barophilic and hyperthermophilic archaeon isolated under high hydrostatic pressure from a deep-sea hydrothermal vent.

A novel barophilic, hyperthermophilic, anaerobic sulfur-metabolizing archaeon, strain MPT (T = type strain), was isolated from a hydrothermal vent site (Snakepit) on the Mid-Atlantic Ridge (depth, 3550 m). Enrichments and isolation were done under 40 MPa hydrostatic pressure at 95 degrees C. Strain MPT was barophilic at 75, 80, 85, 90, 95 and 98 degrees C, and was an obligate barophile between 95 and 100 degrees C (Tmax). For growth above 95 degrees C, a pressure of 15.0-17.5 MPa was required. The strain grew at 48-95 degrees C under atmospheric pressure. The optimal temperature for growth was 85 degrees C at both high (40 MPa) and low (0.3 MPa) pressures. The growth rate was twofold higher at 85 degrees C under in situ hydrostatic pressure compared to at low pressure. Strain MPT cells were motile, coccoid, 0.8-2.0 microns in diameter and covered by a hexagonal S-layer lattice. The optimum pH and NaCl concentration for growth at low pressure were 7.0 and 20-30 g l-1, respectively. The new isolate was an obligate heterotroph and utilized yeast extract, beef extract and peptone for growth. Growth was optimal in the presence of elemental sulfur. Rifampicin and chloramphenicol inhibited growth. The core lipids consisted of a major archaeol and a complex lipid pattern consisting of a major phospholipid. The DNA G + C content was 37.1 mol%. Sequencing of the 16S rRNA gene revealed that strain MPT belonged to the genus Thermococcus and it is proposed that this isolate should be designated as a new species, Thermococcus barophilus.

Atlantic Ocean↗

The macrophage, target cell of the synthetic adjuvant muramyl dipeptide.

The mechanism of adjuvant activity of the synthetic glycopeptide N-acetylmuramul-L-alanyl-D-isoglutamine or muramyl dipeptide (MDP) was studied using in vitro plaque-forming cell (PFC) response to sheep erythrocytes (SRBC). Addition of MDP to DBA/2 mouse spleen cell cultures resulted regularly in a 2 to 3-fold increase of PFC numbers/10(6) recovered cells (p less than 0.01). Supernates (SPN) from MDP-stimulated cultures added to standard spleen cell + SRBC cultures brought about even more important increases of PFC numbers (p less than 0.01 to p less than 0.001). SPN from cultures supplemented with MDP alone (without SRBC) were more active than those of cell + MDP + SRBC cultures, and SPN removed on day 3 of culture were more active than those of day 5. This activity of SPN was maintained accross an H-2 histocompatibility barrier. Although pretreatment of spleen cells with anti-theta antigen serum entirely suppressed the anti-SRBC PFC response in spite of the presence of MDP, SPN from these cultures were as active as SPN from normal spleen cell MDP-stimulated cultures. In contrast, pretreatment of spleen cells with specific rabbit anti-mouse macrophage serum entirely suppressed both anti-SRBC response and SPN activity. It was concluded that the target cell for MDP is the macrophage which releases factors ultimately acting on B cells through T cell mediation.

Acetylmuramyl-Alanyl-Isoglutamine↗

Unrelated delayed hypersensitivity reactions accelerate the recovery of immunological responsiveness of specifically depleted cell populations.

Normal CBA mouse spleen cells were specifically depleted of cells spontaneously reacting to pigeon erythrocytes (PRBC) by two methods, the first allows specific depletion of anti-PRBC thymus derived (T) rosette forming cells (RFC) whereas the second depletes bone marrow derived (B) anti-PRBC hemolytic plaque forming cells (PFC). Depleted populations transferred into lethally irradiated syngeneic recipients and stimulated with PRBC failed to develop any significant response but they normally responded to a stimulation with sheep erythrocytes (SRBC). When spleen cells were taken from mice skin painted with picryl (trinitrophenyl: TNP) chloride 12 days before and the recipients were challenged in the same way and stimulated with PRBC, they become capable of producing a definite response to this antigen. Moreover in these animals, a consistent although low number of cells was found, which simultaneously reacted to both native PRBC and TNP conjugated SRBC. These findings show that unrelated delayed hypersensitivity reactions promote the immunological recovery of specifically depleted cell populations.

Animals↗

Bispecific cells among IgM and IgG producers during the early phase of primary and secondary responses.

Simultaneous immunization of mice with sheep (SRBC) and horse (HRBC) erythrocytes regularly resulted in the appearance of hemolytic plaque-forming cells (PFC) specific for each type of erythrocyte and also of PFC lysing both types of erythrocytes. After primary stimulation the highest number of bispecific cells (42/10(6) cells) was found among PFC as revealed by the direct procedure (IgM producers). Among PFC enhanced with anti-mouse Fab serum (IgG producers), bispecific cells were less numerous (8/10(6) cells). In preparations enhanced by anti-mouse-gammaFc serum which reveals IgG producers without inhibiting IgM antibody, the number of bispecific PFC equalled the sum of bispecific cells revealed by direct and anti-Fab enhanced procedures. The number of direct bispecific PFC during primary and secondary response was approximately the same, whereas the number of IgG-producing, bispecific PFC increased considerably during the secondary response. Another difference was the time limitation of the appearance of bispecific cells: after primary immunization direct bispecific PFC were detected only on days 3, 4 and 5, but enhanced bispecific PFC were present from day 4 up to day 12. However, during the secondary reaction, bispecific PFC were detected by all three procedures only between days 3 and 6. Studies on the cross-reactivity between SRC and HRBC gave negative results at the humoral level, even when the mice were primed with a minimal amount of both erythrocytes and then two months later, boosted with one of them. Studies at the cellular level showed that after immunization with one antigen, only 0.4 to 0.7 direct or enhanced PFC/10(6) cells could simultaneously lyse both erythrocyte types. Thus, a hundred times more bispecific PFC were constantly found after double immunization of the animals. Moreover, sudden disappearance of all bispecific PFC on the 7th day after secondary stimulation makes it unlikely that all bispecific PFC are simply cross-reacting cells.

Animals↗

The potentiality of antibody-producing cells. I Bispecific cell occurrence in double stimulated cultures of syngeneic or allogeneic spleen cells of the mouse.

Cultures of spleen cells from Swiss, C57Bl or DBA/2 mice stimulated with 2,4,6-trinitrophenyl (TNP) conjugated sheep erythrocytes (SRBC) were used for studying the in vitro responses to TNP and native SRBC antigens and the frequency of occurrence of cells responding to both antigens. The response was revealed by plating the cultured cells with both native SRBC and TNP-conjugated pigeon erythrocytes (TNP--PRBC). Specific responses were obtained in all the cultures. Bispecific haemolytic plaque-forming cells (PFC) were detected in almost all cultures of individual Swiss mice cells with a frequency of 2-5--14 PFC/10(6) cells recovered. In DBA/2 cell cultures bispecific PFC were found in half the cultures (2-5--8-3/10(6) cells) and in C57Bl cell cultures in 30 per cent of the cultures (7--21/10(6) cells). When cells from individual Swiss mice immunized in vivo with TNP--SRBC were as an allogeneic culture from the 2nd day after immunization in the presence of TNP--SRBC, the frequency of bispecific PFC increased from 8 to 30/10(6) cells. Mixed allogeneic cultures of normal C57Bl and DBA/2 cells yielded high specific responses with regular occurrence of bispecific PFC only when the numbers of cells cultured together was small. However, when allogeneic cells were mixed 24 hours after starting the cultures, all responses were stimulated and bispecific PFC were found in considerable numbers (4--33/10(6) cells). Cross-reactivity between TNP--PRBC and native SRBC antigens was studied by culturing cells with each of the antigens and plating the cells with both, or by immunizing in vivo with SRBC or PRBC and culturing the cells with both antigens from the 2nd to the 5th day after immunization with both antigens. In no instance did bispecific PFC exceed background levels (0-1--0-6/10(6) cells) in these control experiments.

Animals↗

Properties of bispecific rosette-forming cells. II. --Rosette formation by "educated" T-lymphocytes.

Normal thymus cells transferred into thymectomized and lethally irradiated syngeneic mice responded to stimulation with sheep erythrocytes by rosette formation with these erythrocytes. This response reached a peak on the 7th day and was not associated with any production of circulating antibodies. Rosettes produced by "educated" T-cells were inhibited by anti-theta serum as well as by anti-mouse Fab serum. Simultaneous stimulation of transferred thymocytes with sheep and pigeon erythrocytes provoked the appearance of a minority of cells simultaneously binding both types of erythrocytes. Depletion of B cells contaminating normal thymocyte populatins after passage through anti-mouse Ig coated columns before their transfer in thymectomized and irradiated recipients did not prevent the appearance of simple and double RFC. Moreover, when normal thymocytes or T-cells "educated" by allogeneic stimulation were incubated at 4 degrees C with anti-SRBC and anti-PRBC mouse sera a subsequent incubation at 37 degress of resulted in the dissociation of most passive rosettes formed at 4 degrees. Conversely similar incubation at 37 degrees of rosettes formed by actively immunized cells resulted in capping of about 50% simple and double rosettes. This redistribution of membrane receptors is proposed as a routine test for distinguishing active from passive rosettes.

Animals↗