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F Matesanz

Publications and source records attributed to F Matesanz.

13 recordsLinked to original sources

The 1858T PTPN22 gene variant contributes to a genetic risk of type 1 diabetes in a Ukrainian population.

The 1858T variant of the protein tyrosine phosphatase gene, PTPN22, is associated with an increased risk of several autoimmune diseases. The aim of this study has been to investigate the possible association of 1858C-->T PTPN22 polymorphism and type 1 diabetes (T1D) in Caucasians from Ukraine. Overall, the distribution of 1858 PTPN22 genotypes differed significantly between the T1D patient group (n = 296) and the control group (n = 242) (P = 0.0036). When both groups were classified according to sex, the TT genotype and T allele showed a statistically significant higher frequency in T1D female patients (5.9 and 22.8%, respectively) in comparison with the female controls (0 and 11.9%) (P = 0.008 for both analyses). The patients with the TT genotype were significantly younger at the onset of T1D compared with those with genotypes TC and CC (P = 0.035 and 0.019, respectively). In our Ukrainian Caucasian cohort, we confirmed the association between T1D and the PTPN22,1858T allele.

Adolescent↗

OAS1 gene haplotype confers susceptibility to multiple sclerosis.

Multiple sclerosis (MS) is associated with genetic susceptibility and unknown environmental triggers, possible viral infections, but the specific etiological mechanism that subsequently develops into an inflammatory/autoimmune cascade of events is poorly understood. Recently, genetic variants of 2',5'- oligoadenylate synthetase 1 (OAS1) gene, a critical enzyme involved in innate antivirus response, have been associated with differential enzyme activity and type 1 diabetes in both case-control and family studies. We hypothesized that polymorphisms in the OAS1 gene could influence the susceptibility to MS. To test this hypothesis, we conducted a case-control study of 333 patients with MS and 424 healthy controls and genotyped two OAS1 single nucleotide polymorphisms (SNPs) by restriction fragment length polymorphism method: rs 10774671, A/G SNP altering the splicing site at the seventh exon, and rs 3741981, a nonsynonymous (Ser162Gly) A/G SNP in the third exon. Haplotype but not single-marker analysis revealed an association of the haplotype created by the G allele at rs 10774671 and the A allele at rs 3741981 with the susceptibility to MS (P value = 8.8 x 10(-5)). Subjects carrying this haplotype had an increased risk of MS comparing with those not carrying it (odds ratio = 4.7, 95% confidence interval 2.1-10.9). Our findings indicate that the OAS1 gene polymorphisms may confer susceptibility to MS or serve as markers of functional variants and suggest that OAS1 activity is involved in the etiology of the disease. Future studies in a larger sample and association analysis with functional variants will clarify the role of the OAS1 gene in the susceptibility to MS.

2',5'-Oligoadenylate Synthetase↗

Analysis of -631 and -475 interleukin-2 promoter single nucleotide polymorphisms in multiple sclerosis.

We have analysed the interleukin-2 (IL-2) promoter single nucleotide polymorphisms -475 A/T and -631 G/A, relative to the initiation codon, in patients with multiple sclerosis (MS) and in healthy controls. Both groups showed a very low frequency of T at -475 and A at -631. Our results suggest that these polymorphisms do not contribute to MS susceptibility.

Genetic Predisposition to Disease↗

The -174/-597 promoter polymorphisms in the interleukin-6 gene are not associated with susceptibility to multiple sclerosis.

Interleukin-6 (IL-6) has been implicated in the etiology of experimental autoimmune encephalomyelitis (EAE) in transgenic animals and contributes to neuropathology in humans. A single nucleotide polymorphism (SNP) at position -174 in the IL-6 gene promoter (IL-6pr) appears to influence IL-6 expression. Complete linkage disequilibrium was observed between the -174 and the -597 alleles. The aim of this study was to investigate the possible influence of -174/-597 IL-6pr polymorphisms on susceptibility to multiple sclerosis (MS). Genotyping of the -597 variant was performed by an RFLP method in 131 MS patients [88 relapsing-remitting (RR-MS), 43 secondary progressive (SP-MS)] and 157 healthy subjects. No differences were found between MS patients and controls with respect to the distribution of -597 IL-6pr genotypes. Neither was found when genotypes were analyzed according to the clinical course of the disease (RR-MS or SP-MS). Future studies focusing on complex transcriptional interactions between the IL-6pr and 3' flanking region polymorphic sites will be necessary to determine the IL-6 haplotype influence on susceptibility to MS.

Adult↗

Allelic expression and interleukin-2 polymorphisms in multiple sclerosis.

We have investigated the association of two single nucleotide polymorphisms (SNPs) at positions -384 and 114 in the human interleukin-2 (hIL-2) with multiple sclerosis (MS). For two of the -384 genotypes (G/T, T/T), we observed an association with the susceptibility to secondary progressive (SP) course of MS (P=0.005 and P=0.013, respectively). Expression level differences of the IL-2 alleles (between one- and three-fold) were not attributable to the -384 promoter polymorphism. These data indicate for the first time the relevance of the il-2 gene locus in human MS and its possible involvement in other autoimmune diseases.

Age of Onset↗

Allelic selection of human IL-2 gene.

The allelic expression of mouse IL-2 cannot be definitely extrapolated to what might happen in humans. Therefore, we investigated the regulation of allelic expression of the IL-2 gene in non-genetically manipulated human T lymphocytes by following natural allelic polymorphisms. We found a phenotypically silent punctual change in the human IL-2 at position 114 after the first nucleotide of the initiation codon, which represents a dimorphic polymorphism at the first exon of the IL-2 gene. This allowed the study by single-cell PCR of the regulation of the human IL-2 allelic expression in heterozygous CD4(+) T cells, which was found to be tightly controlled monoallelically. These findings may be used as a suitable marker for monitoring the IL-2 allelic contribution to effector activities and in immune responses against different infections or in pathological situations.

Alleles↗

The cloning and expression of Pfacs1, a Plasmodium falciparum fatty acyl coenzyme A synthetase-1 targeted to the host erythrocyte cytoplasm.

Plasmodium is unable to carry out de novo fatty acid synthesis and has to obtain these compounds from their host for subsequent activation by thioesterification with coenzyme A. This activity is catalyzed by a fatty acyl-CoA synthetase enzyme (EC 6.2.1.3). Here, we describe a novel gene from P. falciparum whose recombinant purified product from baculovirus-transfected insect cell line had the enzymatic activity of a long-chain fatty acyl-CoA synthetase. It was named pf acs1, since it belongs to a multi-member gene family as revealed by the sequence of several clones and a multi-band pattern in Southern blots. The sequence specifies a product of 820 amino acid residues. It was transcribed and expressed in infected erythrocytes having an apparent molecular mass of 100 kDa. Immuno-labeling of infected erythrocytes with a specific antibody against the carboxy-terminal part of the PfACS1 localized the product early after the erythrocyte invasion in vesicle-like structures budding off the parasitoforous membrane toward the red cell cytoplasm. Its unique carboxy- terminal structure of 70 extra amino acid residues, longer than any other reported acyl-CoA synthetase, is probably related to its localization in the cytoplasm of the host erythrocyte. The phylogenetic relationship among other AMP-forming enzymes, placed PfACS1 closer to Saccharomyces cerevisiae, sharing significant amino acid identities, especially in the conserved signature motif that modulates fatty acid substrate specificity and ATP/AMP-binding domains. Taking into account the importance of this enzymatic activity for the parasite, its extra-cellular location inside the infected erythrocyte, and the divergence with respect to the homologous human enzymes, it may be an important protein as a potential target candidate for chemotherapeutic antimalaria drugs.

Amino Acid Sequence↗

Induction of autoantibodies to different interleukin-2 allotypes.

We report the development of an in vivo system to induce the generation, and study the potential role, of autoantibodies to the lymphokine interleukin-2 (IL-2). To elicit IL-2 autoantibodies, mice were immunized with purified fusion proteins containing the N-terminal region of different IL-2 allotypes, where major changes have been observed. This part of the IL-2 molecule includes a conserved sequence with an essential residue for interacting with the beta-chain of the heterotrimeric IL-2 receptor. Mice bearing an RF IL-2 allotype, immunized with several N-terminal IL-2 fusion proteins, produced IgG antibodies against Mus musculus, C57BL/6, Mus spretus and the self molecule RF IL-2, but there were large differences among then in reactivity. These N-terminal IL-2 immunogens break the maintenance of self tolerance possibly by the introduction of new T cell epitopes on self IL-2. The immunized mice developed a complex set of immunopathologies such as splenomegaly, haemolytic anaemia and lymphoadenopathy with a long latency period after the last immunization. These pathologies resembled those described for IL-2-deficient mice (IL-2(-/-)) and mice injected with anti-IL-2 receptor alpha-antibody. Human IL-2 autoantibodies have been detected in several immune-affected situations and therefore this model would be of interest to study the potential evolution of these autoantibodies in relation to immunopathology. The production of these autoantibodies against conserved epitopes of mouse IL-2 may facilitate studies on the structural homologies between different IL-2 allotypes and from various species, and could be applied to other cytokines.

Amino Acid Sequence↗

High expression in bacteria and purification of polymorphic mouse interleukin 2 molecules.

Recently, besides the known mouse interleukin 2 (IL-2) molecule, six other IL-2 alleles have been found in different mouse strains. In order to study their in vivo and in vitro biological activities large quantities are required. We cloned the corresponding IL-2 cDNAs into a pET7-7/BL21(DE3) bacterial system, a T7-RNA-polymerase-dependent expression vector, producing between 30 to 100 mg of IL-2 per litre of culture. The purification step is based on the resolution properties of the sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) technique and the capability of the IL-2 to regain its activity after SDS denaturation. These purified IL-2 molecules supported the growth of an IL-2-dependent cell line, CTL-L2, in a similar way to a commercial mouse IL-2 control. However, RF IL-2 allele, which is also expressed in NOD mice had a relatively lower growth activity in the CTL-L2 assay. These IL-2 molecules can be obtained in a purified form and totally recovered their activity after elimination of the SDS and 2-mercaptoethanol used in the extraction procedure.

Alleles↗

Glutamine and tetrapeptide repeat variations affect the biological activity of different mouse interleukin-2 alleles.

Mouse interleukin-2 (IL-2) was thought to be encoded by a single allele. We have recently described N-terminal differences in five IL-2 molecules from nine mouse strains analyzed (Matesanz, F., Alcina, A. and Pellicer, A., Immunogenetics 1993. 38: 300). In this study, we isolated and sequenced the cDNA of three polymorphic IL-2 molecules and constructed two recombinant IL-2 molecules to cover representative structural changes and to address the functional significance of these changes using human and mouse cellular assays in vitro. Apart from punctual codon changes, major differences include an expanding CAG codon (translated into glutamine) and the presence of the tetrapeptide Pro-Thr-Ser-Ser repeated 1, 2, or 3.5 times which is also present once in human IL-2. This tetrapeptide repeat includes an O-glycosylation site. These recombinant IL-2 proteins were expressed at high levels in bacteria and purified by preparative SDS-PAGE with a complete activity recovery. Differences in growth-inducing activity on mouse primary splenocytes were observed in some of them, although no differences were observed in proliferative stimulation of CTLL cells. In human peripheral blood lymphocytes and the T cell line Kit-225, the growth stimulation capacity was inversely dependent on the size of the glutamine stretch and the number of tetrapeptide repeats. These results suggest an evolutionary adaptation of the mouse IL-2/IL-2 receptor system that maintains polyglutamine extensions in the IL-2 molecule. In summary, mouse IL-2 polymorphism results in different bioactivities which may determine susceptibility or resistance to disease.

Alleles↗

Differential expression of the H-ras mutated and normal alleles in rabbit DMBA-induced keratoacanthomas.

Keratoacanthomas (KAs) are benign and self-regressing tumors in which a high incidence of the mutated H-ras oncogene has been observed both in humans and in experimental models. To determine the level of expression of the mutated H-ras allele with respect to its normal counterpart in 7,12-dimethylbenz(a)anthracene (DMBA)-induced KAs in rabbit skin, we have utilized a quantitative technique based on reverse transcription polymerase chain reaction (RT-PCR) and selective cleavage of the mutated molecules of the H-ras gene. Analysis of 16 KAs showed that the mutated H-ras transcripts were up to 3-fold more abundant than the non-mutated H-ras transcript in the different tumors. This higher expression of the mutated allele appears to correlate with increased differentiation in the KAs and in turn may contribute to tumor regression.

9,10-Dimethyl-1,2-benzanthracene↗

A new cDNA sequence for the murine interleukin-2 gene.

We have amplified by PCR and sequenced the first exon of the interleukin 2 gene from the RF/J mouse strain DNA. When we compared the RF/J first exon sequence with the one reported previously, we found several differences. These differences are also reflected in the deduced amino acid sequence and they have been localized in the first 23 amino acids of the mature polypeptide. The finding of this new IL-2 sequence shows that there is more than one allele for the mouse IL-2 molecule and raises the possibility of functional differences between alleles.

Amino Acid Sequence↗