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C Rodríguez-Gallego

Publications and source records attributed to C Rodríguez-Gallego.

11 recordsLinked to original sources

Mannose-binding lectin polymorphisms in a Canary Islands (Spain) population.

We have compared the structural and promoter variants of the mannose-binding lectin (MBL) gene in a population from Gran Canaria with that from other populations previously reported. The observed frequencies of the seven alleles of the MBL gene in our population were: HYPA, 0.24; LYQA, 0.22; LYPA, 0.08; LXPA, 0.19; LYPB, 0.17; LYQC, 0.03 and HYPD, 0.07. The frequency of non-producer alleles and of MBL-deficient individuals in our population is higher than in other European and Asian population.

Atlantic Islands↗

CD154 polymorphism in Spanish populations. Differences in the allelic distribution between Canary islanders and Peninsulars.

The CD154 gene contains a dinucleotide repeat (CA)n in the 3' untranslated region. Allelic distribution in Spanish populations from two areas with different genetic background, the Canary Islands and Peninsula, are described. Seven alleles with different allelic distribution between the two groups, were found. This represents a highly polymorphic marker, useful for genetic studies on a critical molecule in immunity.

3' Untranslated Regions↗

Retinol (vitamin A) is a cofactor in CD3-induced human T-lymphocyte activation.

Immunomodulatory effects of different retinoids have been demonstrated, both in vivo and in vitro, in different cellular lineages including human and murine thymocytes, human lung fibroblasts, Langerhans' cells, tumoral cells and natural killer (NK) cells; however, any attempt to demonstrate the effect of retinoids on human peripheral blood mononuclear cells (PBMC) resulted in negative results. In the present work, it is shown that retinol and retinoic acid induce a marked increase of proliferation on human PBMC from 32 unrelated healthy individuals, which had previously been stimulated with anti-CD3 antibodies 48 hr before. Serum-free medium, specific retinoid concentration (10(-7) M) and a particular timing of retinol addition to the cultures (48 hr after CD3 stimulation) was necessary clearly to detect this retinol-enhancing effect. The increased proliferative response is specifically mediated via the clonotipic T-cell receptor-CD3 complex and correlates with the up-regulation of certain adhesion/activation markers on the T-lymphocyte surface: CD18, CD45RO and CD25; also Th1-type of cytokines (interleukin-2 and interferon-gamma) are found concordantly increased after retinoid costimulation, both measured by a direct protein measurement and by a specific mRNA increase. In addition, it is shown that the in vitro retinol costimulation is only present in immunodeficient patients who have no defect on CD3 molecules and activation pathway. The fact that retinol costimulate lymphocytes only via CD3 (and not via CD2 or CD28) and the lack of response enhancement in immunodeficients with impaired CD3 activation pathway indicates that retinoids may be used as therapeutic agents in immune system deficiencies that do not affect the clonotypic T-cell receptor.

CD3 Complex↗

Herpes virus saimiri transformation of T cells in CD3 gamma immunodeficiency: phenotypic and functional characterization.

The characterization of T cell immunodeficiencies could in part be supported by using stable cell lines in which biochemical and molecular studies of the defect could be carried out thereby omitting frequent bleeding of patients. First attempts to obtain such cell lines included HTLV-I transformation and exogenous IL-2 administration, but both models have important disadvantages. Recently, a virus isolated from the squirrel monkey, Herpes virus saimiri (HVS), has been reported to have the ability to transform T cells. A stable IL-2-dependent HVS-transformed T cell line from a CD3 gamma deficient patient has been obtained; and this cell line displays both the phenotypic and the functional characteristics of the patient's lymphocytes. Moreover, the line down-modulates TCR/CD3 surface expression upon CD3 engagement, as do the patient's lymphocytes, showing that CD3 gamma and its phosphorylation are not necessary for TCR/CD3 internalization. In addition, the abnormal staining pattern of different anti-TCR/CD3 monoclonal antibodies is preserved in the HVS-patient line. Since HVS is capable of transforming CD3 gamma- T cells, the CD3 gamma chain does not seem to be involved in the HVS receptor process. The fact that it is not possible to obtain a CD8+ HVS line from the CD3 gamma- patient supports the existence of a functional anomaly in his scanty CD8+ peripheral lymphocytes. Thus, HVS transformation is a suitable model for T cell immunodeficiency studies and characterization. It may also be used in the future in cellular models for in vitro gene therapy trials.

CD3 Complex↗

Peripheral blood reduction of memory (CD29+, CD45RO+, and "bright" CD2+ and LFA-1+) T lymphocytes in Papillon-Lefèvre syndrome.

A Papillon-Lefèvre patient with characteristic chronic periodontal disease and palmoplantar keratoderma was studied over a 4-year period. An abnormal T-cell phenotype was steadily observed in peripheral blood; both low numbers of CD29+ and CD45RO+ cells and a low density surface expression of CD2 and LFA-1 molecules were found. T-cell activation through CD3, CD2 and ConA, PWM and IL-2 receptors was normal; however, there was impairment in the activation via CD28. CD2, LFA-1 and CD45 molecules were normal in charge and molecular weight. There was no tissue sequestering of T lymphocytes in periodontal lesions, but rather a relative T-cell reduction. It is suggested that an important decrease of the so-called "memory/hyperreactive" (CD45RO-positive) T cells does exist; therefore, hyperreactive T cells would not be available in sufficient numbers to leave the bloodstream through blood vessel endothelium, and the periodontium would be left without these important defenses and thus exposed to chronic infections. A disregulated factor affecting the transition from "naive" to "memory" T cells and the increase in certain surface molecules expression (i.e., CD2, LFA-1, CD29, and CD45RO) or the reversion from memory to naive T cells may be responsible for the disease pathogenesis. CD2 and LFA-1 molecule synthesis might be conjointly regulated on T lymphocytes.

Adolescent↗

Primary T lymphocyte immunodeficiency associated with a selective impairment of CD2, CD3, CD43 (but not CD28)-mediated signal transduction.

A 2-year-old female with important signs of immune response failure against virus, bacteria, fungi and protozoa and no obvious humoral or lymphocyte phenotypical defect was studied. Both peripheral blood mononuclear cells and IL-2-dependent T cell lines derived from the patient showed a severe selective T cell activation impairment via CD2, CD3 and CD43; however, this defect was reversible with the addition of either IL-2, or phorbol myristate acetate (PMA) or anti-CD28 antibodies. Concordantly, the induction of IL-2 (and, in part, IL-3 and IL-4) messenger RNA was severely reduced in stimulated T cells, but that of other cytokines was either normal (IL-5) or only slightly diminished (interferon-gamma (IFN-gamma)). It is concluded that an activation T cell defect exists previous to protein kinase C (PKC) and between membrane receptors and the activation pathway of certain response genes encoding for interleukins involved in proliferation (i.e. IL-2, IL-3 and IL-4), but not of others (i.e. IL-5). The use of T cell lines from human T lymphocyte activation deficiencies allows dissection of T cell pathology and the corresponding physiological pathways. In the present description, there is an evident independence of the CD28 T cell activation pathway from those induced through CD2 or CD3, and the differential gene regulation of the different interleukins.

Antigens, CD↗

Selective disbalances of peripheral blood T lymphocyte subsets in human CD3 gamma deficiency.

The selection of T lymphocytes in the thymus and their activation upon the encounter with foreign antigens in the periphery require the aggregation and signals of the T cell receptor (TcR)/CD3 complex and several surface molecules termed coreceptors (notably CD4 or CD8 and CD45). The spatial arrangement and interactions of the different molecules in the resulting multimolecular recognition structure are mostly unknown. Here we report, from studies on a healthy human CD3 gamma deficiency, that the lack of the CD3 gamma component of the TcR/CD3 complex is associated with a long-term severe defect of peripheral blood CD4+ CD45RA+ and CD8+ lymphocytes, whereas CD4+CD45RO+, B and natural killer lymphocytes are unaffected. These results suggest that the CD3 gamma site of the TcR/CD3 complex is required for the peripheral representation of certain T cell types.

CD3 Complex↗

Human T-cell activation deficiencies.

The increasing understanding of T-cell activation is paralleled by the recognition of a growing range of 'experiments of nature' that cause T-cell activation deficiencies. Analysis of these deficiencies is, in turn, contributing to the understanding of T-cell function in vivo. Here, José Regueiro, Antonio Arnaiz-Villena and colleagues review current knowledge of structural and functional T-cell defects and the implications of these for T-cell biology.

Adenosine Deaminase↗

From pathology to physiology of the human T-lymphocyte receptor.

The recent description of a selective human CD3 gamma deficiency and other T-cell receptor (TCR)/CD3 structural and functional defects, together with previous biochemical data on the structure and interactions of the TCR/CD3 complex, may aid in elucidating the physiology of this multi-subunit membrane ensemble. CD3 gamma seemed to be required for the commitment and thymic maturation of an important fraction of T lymphocytes to the CD8 (but not CD4) lineage, perhaps by participating with the CD8 co-receptor in the instructive signal delivered through the alpha beta TCR during intrathymic positive selection by HLA class I molecules. The homologous CD3 delta component would, in contrast, be necessary for the selection of CD4 lymphocytes by HLA class II molecules. The interaction of CD4 and CD8 with the TCR/CD3 complex during antigen recognition may thus be asymmetrical, taking place through CD3 delta and gamma, respectively. Also, the existence of in vivo functional TCR/CD3 hemireceptors (lacking either CD3 gamma or CD3 delta) is suggested, and defects in their relative amount on the T-cell surface may disrupt unresponsiveness to self antigens and generate autoimmunity.

Antigens, Differentiation, T-Lymphocyte↗