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M A Chaves

Publications and source records attributed to M A Chaves.

8 recordsLinked to original sources

Hb Costa Rica or alpha 2 beta 2 77(EF1)His --> Arg: the first example of a somatic cell mutation in a globin gene.

We have identified a minor hemoglobin component (approximately 5%) in the blood of a healthy Costa Rican female, but not in her mother and two brothers (father not studied), that has an His --> Arg replacement at position beta 77 (Hb Costa Rica). No other amino acid replacements were observed and no beta- or gamma-chain-like peptides were present. Hb Costa Rica has abnormal stability. Sequence analyses of numerous polymerase chain reaction (PCR)-amplified segments of DNA that contain exon 2 of the beta gene failed to identify a CAC --> CGC (His --> Arg) mutation. The same was the case when cDNA was sequenced, indicating that a beta-Costa Rica-mRNA could not be detected with this procedure. Gene mapping of genomic DNA with Bg/II, BamHI, and HindIII gave normal fragments only and with the same intensity as observed for the fragments of a normal control. The quantities of the beta chain variants Hb J-Iran and Hb Fukuyama with related mutations at beta 77 vary between 30% and 45% in heterozygotes, whereas that of Hb F-Kennestone with the same His --> Arg mutation but in the G gamma-globin gene, is a high 40%-45% (as percentage of total G gamma) in a heterozygous newborn. These different observations exclude a heterozygosity of the A --> G mutation at codon beta 77, as well as a deletion comparable to that of Hbs Lepore or Kenya, or a beta-globin gene duplication, and point to a nontraditional inheritance of Hb Costa Rica. Allele-specific amplification of cDNA with appropriate primers identified the presence of a low level of mutated mRNA in the reticulocytes of the patient, which was confirmed by dotblot analysis of the same material with 32P-labeled probes. Comparable amplification products were not observed in genomic DNA. The A --> G mutation apparently occurred in a somatic cell at a relatively early stage in the development of the hematopoietic cell system, and Hb Costa Rica accumulated through rapid cell divisions in patchy areas in the bone marrow (somatic mosaicism). An unequal distribution of Hb Costa Rica over the red cells supports this possibility.

Adult

Protective effect of a T-cell-dependent immunosuppressive, B-cell-mitogenic protein (F3'EP-Si, or P90) produced by Streptococcus intermedius.

The role of a previously described bacterial protein (F3'EP-Si), now designated P90, in the survival of Streptococcus intermedius in the host was investigated, and the immunosuppressive and B-cell-mitogenic effects of this protein were further characterized. C57BL6 mice treated with P90 were about 50 times more susceptible to infection with this bacterium than untreated mice. One of seven splenocytes of C57BL/6 mice were activated by P90. Marked splenomegaly was observed in mice treated with P90, with increased numbers of splenic mononuclear cells and polyclonal immunoglobulin-secreting plaque-forming cells. Peak responses were seen on day 3 for immunoglobulin M (IgM) and on day 5 for IgG, with an isotypic pattern consisting predominantly of IgG2a and IgG2b. When mice were treated with P90 before being primed with sheep erythrocytes, polyclonal immunoglobulin synthesis was accompanied by an ephemeral stimulation of the specific immune response against sheep erythrocytes that was quickly replaced by a dramatic immunosuppression. In contrast, when mice were treated with P90 after being primed, the polyclonal activation was comparatively much less evident and there was no suppression of the specific immune response. Immunosuppression was considerably reduced in mice thymectomized as adults or depleted of CD8+ cells. Adoptive transfer experiments showed that B cells obtained from P90-treated mice were less able to respond to an antigenic challenge, even in the presence of normal T cells, and that T cells obtained from P90-treated mice could actively suppress the specific immune response of normal B cells.

Animals

A new low-frequency antigen BOW (Bowyer).

BOW is a 'new' low-frequency red-cell antigen, detected in 2 unrelated English blood donors, that is sensitive to alpha-chymotrypsin and pronase. Anti-BOW is present in many polyspecific reagents used to define low-frequency antigens. Red-cell groups of the proposita, R.B., and her family show that the BOW blood group segregates independently from the ABO, Rh, MNSs, P1 and Kell blood group systems.

Blood Donors

Skjelbred, a low frequency antigen in serum and on red cells.

The Skjelbred (Sk) antigen has been studied in the donor population of South London and found to have a frequency of 0.0035%. Its presence in serum as well as on red cells, its transient nature and its absence in relatives of Sk(+) individuals are suggestive of a non-genetic background for Sk. The antibody is not uncommon in normal donor sera (3--12%).

Adsorption

[Transfer factor].

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Antibody-Producing Cells