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Biomedical subjects

M Howard

Publications and source records attributed to M Howard.

At least 19 recordsLinked to original sources

Genomic structure and chromosomal mapping of the murine CD40 gene.

The B cell-associated surface molecule, CD40, is likely to play a central role in the expansion of Ag-stimulated B cells, and their interaction with activated Th cells. In our study we have isolated genomic clones of murine CD40 from a mouse liver genomic DNA library. Comparison with the murine CD40 cDNA sequence revealed the presence of nine exons that together contain the entire murine CD40 coding region, and span approximately 16.3 kb of genomic DNA. The intron/exon structure of the CD40 gene resembles that of the low affinity nerve growth factor receptor gene, a close homolog of both human and murine CD40. In both cases the functional domains of the receptor molecules are separated onto different exons throughout the genes. Southern blot analysis demonstrated that murine CD40 is a single copy gene that maps in the distal region of mouse chromosome 2.

Amino Acid Sequence

Identification of an essential region for growth signal transduction in the cytoplasmic domain of the human interleukin-4 receptor.

Interleukin-4 (IL-4) is a pleiotropic lymphokine which plays an important role in the immune system by regulating proliferation and differentiation of a wide variety of lymphoid and myeloid cells. These biological effects are manifested via binding of IL-4 to specific membrane-associated high affinity receptors. While the IL-4 receptor (IL-4R) cDNA expresses high affinity binding sites when transfected in COS7 cells, its intracellular domain lacks consensus motifs for known signal transducing molecules such as a tyrosine kinase. In this study, we use a DNA deletion approach to explore the mechanism of signal transduction utilized by the human IL-4R cDNA expressed in a murine pro-B cell line, Ba/F3 cells. Using this system, we have identified the critical region of the cytoplasmic domain of human IL-4R for human IL-4-induced transduction of a growth signal in these cells. Our data indicate that the critical region for signal transduction is located between amino acid residues 433-473 numbering from the carboxyl terminus. This region is highly conserved between mouse and human IL-4R but lacks homology with other cytokine receptors. Our studies additionally demonstrate that the cytoplasmic domain is not essential for forming high affinity IL-4-binding sites nor for ligand internalization.

Amino Acid Sequence

Continuous anti-interleukin 10 antibody administration depletes mice of Ly-1 B cells but not conventional B cells.

Ly-1 B cells have the distinctive property of continuous self-replenishment and, as we have shown previously, can be further distinguished from conventional B cells on the basis of greatly elevated constitutive and inducible production of the recently described cytokine interleukin 10 (IL-10). To test the possibility that IL-10 acts as either an autocrine or paracrine growth factor for Ly-1 B cells, we treated mice continuously from birth to 8 wk of age with a monoclonal rat IgM antibody that specifically neutralizes mouse IL-10. Mice treated in this way lacked peritoneal-resident Ly-1 B cells, contained greatly reduced serum immunoglobulin M levels, and were unable to generate significant in vivo antibody responses to intraperitoneal injections of alpha 1,3-dextran or phosphorylcholine, antigens for which specific B cells reside in the Ly-1 B cell subset. In contrast, conventional splenic B cells of anti-IL-10-treated mice were normal with respect to total numbers, phenotype, and in vitro responsiveness to B cell mitogens and the thymus-dependent antigen trinitrophenyl-keyhole limpet hemocyanin (TNP-KLH). The mechanism of Ly-1 B cell depletion appeared to be related to elevation of endogenous interferon gamma (IFN-gamma) levels in anti-IL-10-treated mice, since coadministration of neutralizing anti-IFN-gamma antibodies substantially restored the number of peritoneal-resident Ly-1 B cells in these mice. These results implicate IL-10 as a regulator of Ly-1 B cell development, and identify a procedure to specifically deplete Ly-1 B cells, thereby allowing further evaluation of the role of these cells in the immune system.

Animals

Identification and sequence analysis of the promoter for the leukocyte integrin beta-subunit (CD18): a retinoic acid-inducible gene.

Leukocyte adhesion receptors (LFA-1; Mac-1; p150,95) are a family of heterodimeric cell-surface adhesion molecules expressed exclusively in granulocytes, lymphocytes, and macrophages. Expression of these proteins is under complex regulatory control, but to date promoters for these genes have not been identified. The CD18 gene codes for the common beta-subunit of the leukocyte adhesion receptors. Transcription of CD18 is highly tissue-specific, hormonally inducible (by retinoic acid [RA]), and coordinately regulated with leukocyte integrin alpha-chains. To identify the CD18 promoter, we screened a human genomic phage library with a human CD18 cDNA probe and obtained a clone that contains an exon coding for the 5' untranslated region (UTR). Using rapid amplification of cDNA ends (RACE), RNAse protection, S1 nuclease, and primer extension assays, we demonstrated the existence of multiple transcription start sites clustered in a 45-nt region. We investigated the transcription-promoting activity of the genomic sequences 5' to the CD18 gene by performing transient expression assays with a growth hormone reporter gene in various hematopoietic cell lines. The CD18 promoter was active in Jurkat cells, a lineage that normally expresses CD18 but was considerably less active in K562, an early erythroid line that does not normally express CD18. The genomic sequences upstream of the start site cluster lack CAAT and TATA boxes, but have two Sp1 binding sites and 10 T(G/C)AC(C/A) boxes, which may represent binding sites for RA receptors (RAR). These features distinguish the CD18 promoter from the promoters of other tissue-specific, hormone-inducible genes, and may be representative of leukocyte integrin promoters in general.

Antigens, CD

Ly-1 B (B-1) cells are the main source of B cell-derived interleukin 10.

We have previously reported (O'Garra, A. et al., Int. Immunol. 1990, 2:821) that murine B lymphomas and purified normal peritoneal B cells produce interleukin (IL) 10. We now show that this production of IL 10 B cells correlates with the presence of Ly-1 (B-1) B cells, in both normal and diseased mice. Using a semi-quantitative modification of the polymerase chain reaction, we show that IL 10 expression is detectable in peritoneal B cells but only becomes apparent in splenic B cells of aged mice of which a high proportion are Ly-1+. Furthermore, the expression of IL 10 is constitutive in splenic B cells from mice carrying the Ly-1+ BCL1 lymphoma. Since IL 10 is a potent regulator of in vitro immune function, its production by Ly-1 lineage B (B-1) cells raises the possibility that this subset of B cells may regulate their own development and/or the function of other immunocompetent cells.

Aging

Biological properties of interleukin 10.

An enormous amount of information on interleukin 10 (IL-10) has been gathered since its original description as cytokine synthesis inhibition factor (CSIF) several years ago. In this short article, Maureen Howard and Anne O'Garra summarize what is currently known of the biological properties of IL-10 and speculate on its clinical potential.

Animals

Local cytokine production in a murine model of Escherichia coli pyelonephritis.

Cytokines may play an important role in the regulation of host defense against local bacterial infections. We have evaluated the local production of cytokines in a BALB/c mouse model of Escherichia coli pyelonephritis. Kidneys, draining lymph nodes, and spleens, were harvested at specific time intervals after bladder inoculation with E. coli corresponding to the stages of renal infection, infiltration, and bacterial clearance seen in this model. The presence of messenger RNA for specific cytokines (interleukins 1 through 6, chemotactic factors, granulocyte and granulocyte macrophage-colony stimulating factor (GM-CSF), tumor necrosis factor (TNF alpha) and beta, IFN gamma, transforming growth factor (TGF beta), and cytokine synthesis inhibitory factor (CSIF)/IL-10) was determined by polymerase chain reaction (PCR) amplification of reverse transcribed RNA. We have demonstrated mRNA encoding IL-1, IL-6, G-CSF, GM-CSF, TNF alpha, H400 (a protein homologous to a family of chemotactic factors and identical to MIP-1 beta), and CSIF/IL-10 in the kidney at 12 h and 1, 2, and 3 d after bacterial challenge. No signal was seen in normal animals or in mice after 5 d. This pattern of cytokine expression was observed only in renal tissues suggesting a localized response. IL-6 was present in the urine at 4 h with rapid resolution to baseline levels by 24 to 48 h. In contrast, IL-6 was not usually detectable in the serum. TNF alpha was not detectable in the serum or urine during the course of the infection. By immunohistochemical staining of kidney sections we have shown that IL-6 is produced predominantly by mesangial cells rather than by the inflammatory infiltrate. This study provides additional evidence utilizing novel techniques that specific cytokines are produced locally in response to bacterial infections. The time course of production demonstrated in this model supports the important role of cytokines in natural host resistance to local infection.

Animals

Cytokines and Ly-1 (B1) B cells.

In an attempt to elucidate the possible role of cytokines in autocrine growth of Ly-1+B cells, and the role of this subset of B cells in immune regulation, both in normal and diseased hosts, we have performed a systematic analysis of cytokine production by a series of mouse Ly-1+B lymphomas, as well as normal peritoneal Ly-1+ and conventional B cells. The lymphomas all express TGF-beta, and some express IL-3 and IL-4. We observed that both the lymphomas and the peritoneal cells produce TNF-alpha, TNF-beta and IL-6. Another cytokine, IL-10, is produced predominantly by peritoneal Ly-1+B cells from healthy mice and by Ly-1+ B lymphomas, but not by conventional B cells. As IL-10 regulates the production of monokines and a subset of T-cell derived cytokines, our results suggest a broad immunoregulatory role for Ly-1 B cells. To complement these studies we have also examined the responses of Ly-1 B cells to mitogens and cytokines previously shown to stimulate conventional B cells. In summary, Ly-1 B cells, in contrast to conventional B cells do not respond to anti-Ig antibodies, even in the presence of IL-4. They do respond to LPS, and this response is preferentially enhanced by IL-5, and marginally enhanced by IL-3. Surprisingly LPS-induced proliferation of peritoneal B cells is inhibited by IL-6 and to a greater extent by IL-10. Whether this inhibition is a result of differentiation into Ig secreting cells is currently being evaluated. We discuss our findings in terms of the potential of Ly-1 B cells to regulate their own development and the immunocompetence of other cells.

Animals

[Value of electrocardiogram in localization of the coronary artery occlusion in acute inferior wall myocardial infarction].

Early EKG changes may contribute to predict the site of coronary artery occlusion during acute inferior myocardial infarction (MI). Its interpretation is relevant to therapeutic clinical decisions. We have prospectively evaluated early EKG changes of 40 consecutive patients with acute inferior MI and correlated them with the site and location of the coronary artery culprit lesion. Proximal right coronary artery occlusion was characterized by negative ST-T wave changes in leads D1 and aVL and ST segment elevation in leads D3 > D2. However the most distinctive EKG pattern of proximal right coronary artery occlusion was ST segment elevation with positive T wave in V4R (specificity 96%, predictive value 89%, p < 0.001). Distal right coronary artery occlusion was characterized by a positive T wave without ST segment elevation in V4R. Finally circumflex coronary artery occlusion was defined by a positive R/S > 1 relationship in V1, ST segment elevation in V5 and V6. Again lead V4R with flat or negative ST-T wave morphology had the highest predictive value for circumflex coronary artery occlusion (100%). Thus early EKG changes may contribute to precise the site and location of coronary artery occlusion and may help to implement clinical therapeutic strategies in patient with inferior MI. Right precordial leads are most useful in the EKG interpretation of inferior MI.

Adult

The Advanced Trauma Life Support course for senior medical students.

The authors conducted the Advanced Trauma Life Support (ATLS) Course for 90 students who were in their 4th year of medicine at the University of Manitoba. The impact of the course was evaluated through questionnaires completed by students, instructors and emergency-room physicians. The students' performances were also compared with those of 96 practising physicians who took the ATLS course in Manitoba. The failure rate for students (3.3%) was not statistically different from that for practising physicians (4.2%). Overall, the students' performances in the written test were better (55% of students scored over 90% on the test compared with 15% of practising physicians). The student-to-faculty ratio was 1.5:1 and included 21 physician-instructors. Ninety-five percent of the faculty and students suggested that this course should be mandatory in the 4th year curriculum of medicine and that the course improves trauma care provided by the students and interns by increasing their confidence and improving communication with specialist surgeons. However, 10% of the faculty suggested that more time should be allocated to the surgical-skills practicum. The authors' experience with this program suggests that the ATLS course should be uniformly incorporated in the Canadian undergraduate 4th year medical curriculum and that techniques used in this course should be considered in other areas of the undergraduate medical curriculum.

Canada

IL-10 inhibits cytokine production by activated macrophages.

IL-10 inhibits the ability of macrophage but not B cell APC to stimulate cytokine synthesis by Th1 T cell clones. In this study we have examined the direct effects of IL-10 on both macrophage cell lines and normal peritoneal macrophages. LPS (or LPS and IFN-gamma)-induced production of IL-1, IL-6, and TNF-alpha proteins was significantly inhibited by IL-10 in two macrophage cell lines. Furthermore, IL-10 appears to be a more potent inhibitor of monokine synthesis than IL-4 when added at similar concentrations. LPS or LPS- and IFN-gamma-induced expression of IL-1 alpha, IL-6, or TNF-alpha mRNA was also inhibited by IL-10 as shown by semiquantitative polymerase chain reaction or Northern blot analysis. Inhibition of LPS-induced IL-6 secretion by IL-10 was less marked in FACS-purified peritoneal macrophages than in the macrophage cell lines. However, IL-6 production by peritoneal macrophages was enhanced by addition of anti-IL-10 antibodies, implying the presence in these cultures of endogenous IL-10, which results in an intrinsic reduction of monokine synthesis after LPS activation. Consistent with this proposal, LPS-stimulated peritoneal macrophages were shown to directly produce IL-10 detectable by ELISA. Furthermore, IFN-gamma was found to enhance IL-6 production by LPS-stimulated peritoneal macrophages, and this could be explained by its suppression of IL-10 production by this same population of cells. In addition to its effects on monokine synthesis, IL-10 also induces a significant change in morphology in IFN-gamma-stimulated peritoneal macrophages. The potent action of IL-10 on the macrophage, particularly at the level of monokine production, supports an important role for this cytokine not only in the regulation of T cell responses but also in acute inflammatory responses.

Animals

IL-10 acts on the antigen-presenting cell to inhibit cytokine production by Th1 cells.

Murine IL-10 (cytokine synthesis inhibitory factor) inhibits cytokine production by Th1 cell clones when they are activated under conditions requiring the presence of APC. By preincubating APC with IL-10, we demonstrate that IL-10 acts principally on APC to inhibit IFN-gamma production by Th1 clones. Moreover, IL-10 is not active when Th1 cells are stimulated with glutaraldehyde-fixed APC, which also indicates that its action involves regulation of APC function. Furthermore, IL-10 inhibits cytokine synthesis by Th1 cells stimulated with the super-antigen Staphylococcus enterotoxin B, which does not appear to require processing. Flow microfluorimetry purified splenic or peritoneal B cells and macrophages, and B cell and macrophage cell lines can present Ag to Th1 clones. However, IL-10 acts only on sorted macrophages and the macrophage cell line to suppress IFN-gamma production by Th1 clones. IL-10 does not show this effect when B cells are used as APC. In contrast, IL-10 does not impair the ability of APC to stimulate cytokine production by Th2 cells. IL-10 does not decrease IFN-gamma-induced I-Ad levels on a macrophage cell line. Inasmuch as IL-10 also inhibits IL-2-induced IFN-gamma production by Th1 cells in an Ag-free system requiring only the presence of accessory cells, these data suggest that IL-10 may inhibit macrophage accessory cell function which is independent of TCR-class II MHC interactions.

Animals

Interleukin-4 enhances anti-IgM stimulation of B cells by improving cell viability and by increasing the sensitivity of B cells to the anti-IgM signal.

The lymphokine IL-4 is a potent enhancer of anti-IgM-induced B cell proliferation. Although the mechanism of this enhancement is not known, a commonly held view suggests that IL-4 acts together with anti-IgM as a costimulating factor for the activation of a subpopulation of B cells. To evaluate this hypothesis we examined the effect of IL-4 on the proportion of B cells stimulated to divide by different doses of anti-IgM using flow cytometry in combination with measurements of tritiated-thymidine incorporation. The results suggest a novel and surprisingly simple model for the mode of action of IL-4. Our analysis revealed that at high saturating anti-IgM concentrations, the proportion of live B cells which enter into S phase of the cell cycle is the same (approximately 65%) for cells cultured with or without IL-4. Cultures containing IL-4, however, exhibit a twofold increase in thymidine uptake over cultures without IL-4. This increase can be explained completely by the ability of IL-4 to enhance the viability of small dense B cells over the first 24 hr from approximately 50 to 90% of the starting cell number. Normalizing the maximum response levels obtained with and without IL-4 reveals that B cells incubated with IL-4 exhibit a 10-fold decrease in the concentration of anti-IgM required to stimulate the half-maximum proliferation level. Furthermore, evaluation of the number of cells in S phase by flow cytometry and analysis of the kinetics of cell proliferation revealed that the increased response effected by IL-4 at lower anti-IgM concentrations was due to a greater number of proliferating B cells rather than the same number of cells undergoing a faster division rate. We also found a highly nonlinear relationship between B cell number and proliferative response, implying a requirement for an additional, cell cooperation-mediated, activating signal for maximum B cell proliferation. IL-4 enhanced proliferation by the same proportion at all cell concentrations indicating that it does not replace or alter this requirement for cell cooperation. Taken together these results suggest that anti-IgM in combination with a second unidentified cell-cooperation-dependent signal leads to proliferation of up to 65% of small resting B cells. IL-4 does not provide an essential activation signal but serves to raise the sensitivity of B cells to the anti-IgM-generated signal.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals