PubMed Health⌕ Search

Biomedical subjects

N López-Moratalla

Publications and source records attributed to N López-Moratalla.

At least 19 recordsLinked to original sources

Production of nitric oxide and self-nitration of proteins during monocyte differentiation to dendritic cells.

Nitric oxide (NO) can stimulate dendritic cells to a more activated state. However, nitric oxide and peroxynitrites production by dendritic cells has been usually associated with pathological situations such as autoimmunity or inflammatory diseases. This study was designed to determine if dendritic cells obtained from healthy volunteers produce nitric oxide and peroxynitrites, which results in protein nitration. The expression of arginase II, but not arginase I, isoform was detected in monocytes and dendritic cells. There was higher inducible nitric oxide synthase (iNOS) protein expression and lower arginase activity both in immature and mature dendritic cells, compared to monocytes. This caused nitric oxide production, and maturation of dendritic cells which provoked a significative increase of nitrites and nitrates compared to immature dendritic cells. There was also peroxynitrites synthesis during monocyte differentiation as shown by the nitration of proteins. Immunoblot revealed a pattern of nitrated proteins in cell extracts obtained from monocytes and dendritic cells, however there were bands that appeared only in human dendritic cells, in particular an intense 90 kDa band. Nitric oxide production and nitrotyrosine formation could affect the antigen presentation and modify the immune response.

Adult↗

Does nitric oxide play a role in maternal tolerance towards the foetus?

In pregnancy there occurs maternal tolerance to the foetus. Several mechanisms have been proposed to explain this phenomenon. The main immune population in the decidua are macrophages and natural killer cells, but with some "special" suppressor characteristics. There is also a predominant TH2 response. The non classical MCH type I HLA-G is expressed by trophoblasts and can suppress lymphomononuclear cytotoxicity. Other system to avoid the immune system is the expression of indoleamine-2,3-dioxygenase, that suppresses T cell activation by degrading tryptophan. Even though in the placenta there is a high production of nitric oxide, a well-known immune modulator, low attention has been paid to its role in maternal tolerance. There are many data showing that NO affects the IDO, CD95/CD95-L and the balance between TH1/TH2. Maybe NO could interact with several mechanisms at the same time, which could modify the tolerogenic activity depending on the concentration and the presence of other factors in the medium.

Decidua↗

Molecular mechanisms of apoptosis induced by an immunomodulating peptide on human monocytes.

A short immunomodulating peptide (Pa) containing a defined structural motif present in a number of extracellular matrix proteins and autoantigens was found to stimulate human monocytes. Pa-induced apoptosis of isolated monocytes, as indicated by internucleosomal DNA cleavage, increased annexin V binding capacity and cleavage of caspase substrates, such as poly(ADP)ribosylpolymerase. In addition, Bcl-2 protein levels were downregulated during Pa-induced cell death. Nuclear extracts of monocytes incubated with Pa showed higher neutral, Ca(2+)-dependent DNase activity than those obtained from nontreated monocytes. Caspase inhibitors prevented Pa-induced apoptosis, Bcl-2 depletion, and DNase activation. Treatment of monocytes with Pa activated c-Jun N-terminal kinases and p38 kinase, in an acidic sphingomyelinase- and caspase-dependent fashion. Pa-induced apoptosis was blocked by selective inhibitors of p38 kinase (SB203580) and acidic sphingomyelinase (SR33557). These results indicate that JNK and p38 kinase stimulation as well as monocyte apoptosis induced by Pa could depend, at least in part, on early activation of acidic sphingomyelinase.

Adjuvants, Immunologic↗

Differential gene expression in the activation and maturation of human monocytes.

Differential-display or RNA fingerprint was applied to identify genes differentially expressed in monocyte maturation induced by an immunomodulating peptide on human peripheral blood mononuclear cells. Two unknown sequences (06c22 and 06c71) and p21 protein (cyclin dependent kinase inhibitor) were repressed, and three genes activated: Cathepsin D, DRP2 (dihydropirimidinase related protein 2), and gp91phox (91-kDa subunit of citochrome b(558)). Phenotype of evolving monocytes was analyzed by flow cytometry and mRNA level of identified genes determined by reverse transcription-PCR. The expression pattern of identified genes seemed to correlate with different monocyte subsets, monocyte-derived cells, and expected functional changes. After peptide addition, immature monocytes were initially activated, increasing the expression of CD25, CD69, and HLA-DR markers. This was accompanied by repression of p21 and the two unknown sequences, along with the simultaneous activation of Cathepsin D and DRP2. Later, the differentiation marker CD16 rose, and gp91phox gene expression activated. Further maturation led certain monocytes to express marker CD23 and gp91phox expression to reach a maximum, while Cathepsin D and DRP2 dropped to preactivation levels. Results reflect part of the evolution of immature monocytes toward macrophages and monocyte-derived dendritic cell precursors.

Base Sequence↗

Correlation between profile of circulating mononuclear cells and clinical manifestations in patients with pemphigus vulgaris.

Phenotypes of 38 samples of mononuclear (PBMC) cells from 11 different patients with pemphigus vulgaris (PV) at different stages of the disease were explored looking for a possible relationship between cell immunity, mucocutaneous or mucosal lesion intensity and capacity of serum autoantibodies to elicit the disease in mice. PBMC from 5 patients with mucocutaneous lesions and sera with IgG capable of inducing the disease in neonatal mice had a high proportion of mature monocytes with CD14low DRhigh, and co-expressing CD16 and CD11b. In addition, a high proportion of CD19+CD5+ activated B cells and a very low proportion of naive CD4+CD45RA+ and CD8+CD11b+ T lymphocytes was observed. Monocytes from these patients expressed inducible nitric oxide synthase (iNOS). In contrast, PBMC from 6 patients, with lesions restricted to mucosal membranes and IgG lacking the capacity to induce the disease in mice, contained a high proportion of CD14high DRlow co-expressing CD16 circulating macrophages, CD8+CD11b+ T cells, and a low proportion of activated B lymphocytes. The results suggest a possible association between proportion of different antigen presenting cells (monocytes with high HLA-DR and low CD14 expression and activated B lymphocytes, or differentiated monocytes/macrophages), type of PV and capacity of serum autoantibodies to elicit the disease in mice.

Acantholysis↗

Co-expression of inducible nitric oxide synthase and arginases in different human monocyte subsets. Apoptosis regulated by endogenous NO.

Human monocyte subsets, isolated from cultures of mononuclear cells, or freshly obtained from patients with multiple sclerosis, Graves' disease or pemphigus vulgaris, differed in phenotype, apoptotic features, mRNA levels of arginase II (A-II) and the inducible form of nitric oxide synthase (iNOS). Liver-type arginase I mRNA was present in all subsets. Apoptosis was followed by the expression of T cell intracellular antigen (TIA) and the simultaneous detection of DNA stainability by propidium iodine and annexin V binding. Apoptosis was practically absent both in activated CD14(++)CD33(++)DR(++)CD25(++)CD69(++)CD71(++/+) CD16(-) cells, expressing A-II mRNA and having arginase activity, but not iNOS mRNA, and in not fully mature large CD14(++)CD16(+)CD23(+)DR(++) monocytes, expressing simultaneously both mRNAs and having both enzyme activities. However, differentiated small CD14(+/++)CD16(+)CD69(+)CD25(+/-)CD71(++)CD23(+) DR(++) monocytes, expressing high levels of iNOS mRNA, exhibited apoptotic signs. Amounts of NO synthesised by monocytes co-expressing iNOS and arginase changed with the addition of arginine or an iNOS inhibitor; in that case a correlation of NO production and apoptotic features was observed. Data suggest a regulatory role for endogenous NO in apoptosis of stimulated and differentiated monocytes, and also that iNOS and A-II, when simultaneously present, could control the production of NO as a consequence of their competition for arginine.

Antigens, CD↗

Inducible nitric oxide synthase (iNOS) expression in human monocytes triggered by beta-endorphin through an increase in cAMP.

Evidence suggesting a relationship between neuroendocrine and immune systems is steadily growing. We demonstrate now that inducible nitric oxide synthase (iNOS) is expressed in human peripheral blood monocytes after incubation of lymphomononuclear cells in the presence of beta-endorphin, a neuropeptide released by the pituitary in response to mental or physical stress or by activated lymphocytes. beta-endorphin raised cAMP level in monocytes. The possible relationship between cAMP and iNOS expression on monocytes was investigated. Immunostaining for iNOS decreased, when besides beta-endorphin an inhibitor of protein kinase A (H-89) was added to the medium at the beginning of the incubation. The cAMP level raised by beta-endorphin was lowered by naloxone, which also reduced slightly iNOS expression. These results clearly point to the monocyte as a link between neuroendocrine and immune systems, an observation of potential relevance in our understanding of how stress and autoimmunity could be interconnected.

Amino Acid Sequence↗

Granule associated DNase in T4 and T8 lymphocytes from patients with autoimmune diseases.

The presence of a DNase activity associated with secretion granules was detected in T4 and T8 lymphocytes from patients with autoimmune diseases. This activity was much higher in primary biliary cirrhosis (PBC) than in Graves' disease (GD) and multiple sclerosis (MS) or in healthy subjects. This granule associated DNase activity was Ca(2+)-dependent, inhibited by Zn2+, and higher at low pH; its molecular weight corresponded to 66kDa; it was more active with double-strand than single-strand DNA. Judging from its properties this enzyme differed from the three types of endonucleases described as involved in DNA fragmentation (DNase I, DNase II and NUC18). Flow cytometry analysis of T lymphocytes showed that DNase activity associated with CD4+ lymphocyte granules correlated with the ratio CD4+CD45RO+/CD4+CD45RA+ (memory and cytotoxic cells/naive cells, inducers of suppression). In contrast, T8 lymphocyte DNase activity correlated with the proportion of CD4+ lymphocytes with CD4+CD45RA- phenotype (helpers and inducers of cytotoxicity). The possible role of this DNase activity in the mechanisms of lysis or apoptosis mediated by CTL is discussed. We suggest that this DNase activity could be implicated in some of the alterations of the autoimmune response depending on cytotoxic T lymphocytes or T cell inducers of apoptosis.

Adult↗

Nitric oxide activates granule-associated DNase in human monocytes.

Activated and differentiated human monocytes with a CD14+CD16+ phenotype were found to contain a DNase activity associated with secretion granules. Activated cells were obtained from patients with autoimmune diseases. Activation and differentiation of monocytes were also achieved after incubation of PBMC from healthy subjects with protein A (SpA) or immunopotentiating peptides. DNase activity corresponded to a 66-kDa protein, similar to that described in granules from T lymphocytes, active preferentially on double-strand DNA. DNA fragmentation activity increased when NO donors were present; the activity was higher in the presence of Ca2+, and at low pH values. The Ca2+-dependent activity was inhibited by Zn2+. NO-dependent activity was additive with that of Ca2+-dependent and it was not inhibited by Zn2+. Dithiothreitol did not modify the effect of NO on DNase activity. Incubation of PBMC in the presence of NMLA, an inhibitor of NO synthases, decreased this DNase activity. Data reported clearly suggest a regulatory role of NO in granule-associated DNase activity.

Adult↗

cAMP activates transcription of the human glucocorticoid receptor gene promoter.

Glucocorticoids and cAMP regulate, either in a synergistic or additive fashion, the transcription of multiple genes, although some antagonistic effects of dexamethasone on cAMP-activated transcription have been described. The increased glucocorticoid receptor (GR) mediated response of some cell types, as a result of augmented cAMP, has been considered to be mainly due to an increased stability of GR mRNA, although other plausible explanations should not be ruled out. We studied the possibility that GR transcription itself could be affected by cAMP levels. HeLa cells were transfected with human GR (hGR) promoter constructs and their transcriptional activity determined after inducing a cAMP increase with forskolin. We found that forskolin almost doubled the transcriptional activity of the promoter construct spanning -2995 to +38 of the hGR, whereas no significant variations were observed with shorter chimeras containing sequences downstream -979. Shift mobility showed binding of CREB in vitro to a putative cAMP responsive element located at -1000, suggesting that hGR may be upregulated by cAMP at the transcriptional level, thus adding a new mechanism ascribable to this second messenger, which in conjunction with the cAMP-induced GR mRNA increased stability, would lead to a more precise control of the amount of GR protein within the cell.

Colforsin↗

The role of nitric oxide in the pathogenesis of multiple sclerosis.

Nitric oxide is a free radical gas, NO, of paramount relevance in biology. The enzymes responsible for the synthesis of NO from L-arginine in mammalian tissues are known as nitric oxide synthases (NOS). The inducible NOS (iNOS) is associated with the development of a number of autoimmune diseases. iNOS is induced on monocytes, cells playing a key role in the initiation and progression of the immune response. Induction of the enzyme is effected by proinflammatory cytokines, immunomodulating peptides, and even beta-endorphin through a mechanism involving an increase in cAMP. An excessive production of NO has been implicated in the severe lesions observed in multiple sclerosis (MS). Nitrosation of proteins caused by NO in monocytes may contribute to the formation of new epitopes involved in the autoimmune response. Monocytes/macrophages enhance also their cytotoxic capacity through an increase in NO. iNOS seems to establish a link between neuroendocrine and immune system through beta-endorphin explaining stress-related relapses in MS. One of the causes of demyelination is the lysis of oligodendrocytes by cytotoxic T lymphocytes (CTLs); and T cell response is also known to be modulated by NO.

Humans↗

Correlation of activated monocytes or B cells with T lymphocyte subsets in patients with Graves' disease.

We analyzed the phenotypic characteristics of PBMC from 34 patients with Graves' disease (GD) at different stages of the disease to explore the sequence of immunological events associated with it. In all cases their monocytes were in a state of activation and differentiation more advanced than those of a group of 23 healthy individuals. Strikingly, some patients had CD14++DR- immature monocytes, which were absent in healthy individuals. CD14+CD16+DRhigh monocytes were more abundant in patients. We found a positive correlation between the CD14++DR- monocyte and CD4+CD45RA- helper cells and a negative correlation between the same monocyte subset and CD4+CD45RA+ naive cells. CD14+/++DRlow monocytes directly correlated with this latter T4 subset and CD14+ CD16+DRhigh with CD4+CD45RO+ memory lymphocytes. There was also a positive correlation between memory T4 cells and the subset of activated B lymphocytes (CD19+CD5+) and suppressor T8 cells (CD8+CD11b+). T8 cytotoxic cells (CD8+CD11b-) positively correlated with T4 naive cells. The circulating levels of T3 and TSI (thyroid-stimulating immunoglobulin) directly correlated with a decrease in naive cells and an increase in T8 suppressors. The results suggest that the imbalance suppression/cytotoxicity in GD may be due to a reiterated presentation of autoantigens, or mimetic antigens, to T helpers by mature monocytes and activated B cells.

Antigens, CD↗

Signaling pathway triggered by a short immunomodulating peptide on human monocytes.

A short synthetic peptide (Pa) containing a structural motif ("2-6-11" motif) present in a number of human extracellular matrix proteins was found to stimulate the production of cytokines IL-1alpha, IL-1beta, IL-6, and TNFalpha by human peripheral blood mononuclear cells. We have now investigated the signal transduction pathway involved in the elicitation of these immunomodulating properties on isolated human monocytes. Our results show that active peptide Pa provoked phosphoinositide hydrolysis, intracellular calcium elevation, and cAMP accumulation. Herbimycin A, an inhibitor of protein tyrosine kinases (PTK), markedly reduced these effects of peptide Pa. We have also found that this peptide stimulated CREB, NF-kappaB, and AP-1 DNA-binding activity. With the help of inhibitors of PTK (herbimycin A), phospholipase C (neomycin sulfate), protein kinase C (bis-indolyl maleimide), protein kinase A (H89), and the calmodulin antagonist W-7, as well as cholera toxin, an agent that increases intracellular cAMP, we showed that cytokine (IL-1alpha, IL-1-beta, IL-6, and TNFalpha) production could be modified by the signal transduction pathway triggered by peptide Pa on monocytes.

Adjuvants, Immunologic↗

Correlation between the release of IL-2 and granule-associated DNase activity in human lymphomononuclear cells stimulated with immunomodulating peptides and proteins. Role of different antigen-presenting cells.

The authors have already described that a series of short peptides, modelled after sequences related to human extracellular matrix (ECM) proteins and sharing some common structural features, activate Th1 clones through a process involving peptide presentation in HLA-DR proteins. Those peptides induce also LAK- and NK-dependent cytotoxicity as well as activation of monocytes/macrophages present in human peripheral blood mononuclear cell (PBMC) populations. The release of interleukin 2 (IL-2) and interferon gamma (IFN-gamma) by Th cells present in PBMC depleted of macrophages, or B cells is reported, after incubation in the presence of those peptides, fibronectin or Staphylococcus aureus protein A. The authors found that all the molecules tested needed at least the presence of a type of antigen-presenting cell (APC) to exert their stimulatory effect. Some peptides seem to be preferentially presented to Th cells by B cells, while others seem to depend on monocyte/macrophages for this presentation. The dependence on one or another APC seems to be due to differences in the sequences of these peptides. The immunomodulatory agents studied also gave rise to a clear increase in a DNase activity associated with secretion granules of PBMC. That there is a correlation between the release of IL-2 and this DNase activity when using a complete PBMC population, B cell-depleted PBMC or macrophage-depleted PBMC stimulated with the peptides tested has been found.

Adjuvants, Immunologic↗

Monocyte inducible nitric oxide synthase in multiple sclerosis: regulatory role of nitric oxide.

Immunophenotypic analysis of peripheral blood leukocytes from patients with multiple sclerosis (MS) showed a profile reflecting a state of activation and differentiation of monocytes. A subset of CD16+ monocytes with high HLA-DR expression was more prominent in patients with MS than in healthy subjects. The presence of the inducible form of nitric oxide synthase (iNOS) in these differentiated and activated monocytes freshly obtained from patients with MS was demonstrated by immunocytochemistry and flow cytometry analysis with two different antibodies. Incubation of lymphomononuclear cells from healthy volunteers in the presence of an immunomodulating peptide (NVLGAPKKLNESQAV) led to stimulation and maturation of monocytes manifested by changes in phenotype and an increase in both iNOS mRNA and protein, as well as HLA-DR expression. In this case also iNOS was expressed mainly on subsets of CD16+ monocytes with high HLA-DR expression. NO produced by human monocytes seems to have a function in the upregulation of membrane HLA-DR. These results are suggestive of a role for monocytic iNOS in the autoimmune response underlying the pathogenesis of multiple sclerosis.

Amino Acid Sequence↗

A common structural motif in immunopotentiating peptides with sequences present in human autoantigens. Elicitation of a response mediated by monocytes and Th1 cells.

We have found a common structural motif in human autoantigens, heat shock proteins and viral proteins. Peptides modelled after sequences present in those molecules were synthesized and immunomodulating properties tested. They share a core of 15 amino acid residues and a common pattern ('2-6-11' motif) characterized by requirements at fixed positions with respect to a Pro (position 6); an apolar residue or a Lys at position 2; and a Glu, Asp or Lys at position 11. Any of these peptides, when added to cultures of lymphomononuclear cells, caused the activation of monocytes manifested by a release of IL-1 alpha, IL-1 beta and TNF alpha. A release of INF gamma and IL-2 took also place; this release was abolished by anti-DR antibodies. Neither IL-4 nor IL-5 could be detected. This suggests a presentation by APCs and the appearance of cells with a Th1 phenotype. Monocytes and Th1 cells freshly obtained from 12 patients of Graves' disease, 8 of Hashimoto's disease and 8 of primary biliary cirrhosis exhibited activation features similar to those found in cells from healthy subjects incubated in the presence of peptides with a "2-6-11' motif and representing fragments of autoantigens. Their immunopotentiating properties suggest their involvement in the initiation or progression of the autoimmune response mediated by activated monocytes and Th1 cells.

Amino Acid Sequence↗

Inducible nitric oxide synthase in monocytes from patients with Graves' disease.

The presence of inducible nitric oxide synthase (iNOS) in fresh monocytes from patients with Graves' disease was demonstrated for the first time. Immunophenotypic analysis showed a profile reflecting a state of activation and differentiation of monocytes. Incubation of lymphomononuclear cells from healthy volunteers in the presence of synthetic peptides with sequences related to thyroid autoantigens (TSH receptor, thyroid peroxidase, or thyroglobulin) led to a stimulation of monocytes manifested by a change in phenotype and expression of iNOS. This expression did not take place on isolated monocytes, unless products associated with Th1 activity were present in the medium. Active peptides contained a characteristic "2-6-11" motif already described [López-Moratalla et al. (1995) Biochim. Biophys. Acta 1265, 181-188]. These results are suggestive of a new role for autoantigens in the pathogenesis of Graves' disease: that of inducing the expression of iNOS and activating the monocyte possibly underlying the autoimmune response.

Amino Acid Sequence↗

Activation of human lymphomononuclear cells by peptides derived from extracellular matrix proteins.

A series of peptides of 15 amino acids with sequences contained in human extracellular matrix (ECM) proteins (fibronectin, laminin A, laminin B1, tenascin, undulin, alpha 1-chain of type IV and VIII collagen and alpha 2-chain of type VIII collagen) have been synthesized. The selected structures conformed to the following pattern: (i) Pro at position 6, (ii) Leu, Lys, Ile, Val, Ala or Gly at position 2, (iii) Glu or Asp at position 11. Fibronectin and the indicated peptides, when present in cultures of lymphomononuclear cells from healthy donors, promoted stimulation of monocytes manifested by a release of IL-1 alpha, IL-beta, IL-6 and TNF alpha; an increase in the percentage of cells expressing CD14, CD16, CD11b and CD14/CD16; an increase in cytotoxicity against HT-29. Cytotoxicity against K562 and Daudi cells (targets of NK and LAK cells) was also observed together with an increase in the percentage of cells expressing CD56, CD56/CD16 (corresponding to NK cells), and CD56/CD8 (corresponding to NK-like lymphocytes), indicating a stimulation of lymphocytes. Activated monocytes and lymphocytes contained a large number of granules with DNAse activity. These results suggest that at least some of the immunological properties of ECM proteins could be accounted for by motifs fulfilling a characteristic sequence pattern shared by all of them.

Amino Acid Sequence↗