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J Concepcion

Publications and source records attributed to J Concepcion.

3 recordsLinked to original sources

A base substitution in the interleukin-10 (IL-10) promoter between Sp1 and ets-1 binding sites is not associated with variation of IL-10 levels.

Interleukin 10 (IL-10) may play an important anti-inflammatory and immunoregulatory role in asthma. In this study, we investigated the role of a C to A substitution at position -627 of the IL-10 promoter, located in a necessary transcriptional region, which contains a number of putative transcriptional binding sites. The -627 nucleotide position is itself flanked by Sp-1 and ets-1 binding sites. We studied the allele frequency in 53 unrelated subjects from an admixed Caucasian, Asian and Pacific Islander group with personal or family histories of asthma. The frequency of homozygous C/C, heterozygous C/A, and homozygous A/A alleles at position -627 was 0.28, 0.44 and 0.28, respectively. In vitro assays indicated no differences between the C/C and A/A forms in binding transcriptional factors, especially Sp-1 factor, or in promoter activity. Moreover, in this selected population, there was no association between the C to A substitution and serum IL-10 levels. The mean level of IL-10 serum was determined to be 3.87 +/- 1.23 pg/ml in subjects carrying the A/A genotype, 3.47 +/- 0.57 for C/C genotype and 3.13 +/- 0.41 for the heterozygous (C/A genotype). This requires confirmation by comparing to non-asthmatic subjects. We conclude that although the -627 A allele occurs frequently (50% of alleles) in this selected group, in vitro assays and serum IL-10 levels suggest that the -627C-->A substitution represents a silent or neutral variant in the IL-10 promoter.

Alleles↗

Mechanisms of beta-cell death in response to double-stranded (ds) RNA and interferon-gamma: dsRNA-dependent protein kinase apoptosis and nitric oxide-dependent necrosis.

Viral infection is one environmental factor that has been implicated as a precipitating event that may initiate beta-cell damage during the development of diabetes. This study examines the mechanisms by which the viral replicative intermediate, double-stranded (ds) RNA impairs beta-cell function and induces beta-cell death. The synthetic dsRNA molecule polyinosinic-polycytidylic acid (poly IC) stimulates beta-cell DNA damage and apoptosis without impairing islet secretory function. In contrast, the combination of poly IC and interferon (IFN)-gamma stimulates DNA damage, apoptosis, and necrosis of islet cells, and this damage is associated with the inhibition of glucose-stimulated insulin secretion. Nitric oxide mediates the inhibitory and destructive actions of poly IC + IFN-gamma on insulin secretion and islet cell necrosis. Inhibitors of nitric oxide synthase, aminoguanidine, and N(G)-monomethyl-L-arginine, attenuate poly IC + IFN-gamma-induced DNA damage to levels observed in response to poly IC alone, prevent islet cell necrosis, and prevent the inhibitory actions on glucose-stimulated insulin secretion. N(G)-monomethyl-L-arginine fails to prevent poly IC- and poly IC + IFN-gamma-induced islet cell apoptosis. PKR, the dsRNA-dependent protein kinase that mediates the antiviral response in infected cells, is required for poly IC- and poly IC + IFN-gamma-induced islet cell apoptosis, but not nitric oxide-mediated islet cell necrosis. Alone, poly IC fails to stimulate DNA damage in islets isolated from PKR-deficient mice; however, nitric oxide-dependent DNA damage induced by the combination of poly IC + IFN-gamma is not attenuated by the genetic absence of PKR. These findings indicate that dsRNA stimulates PKR-dependent islet cell apoptosis, an event that is associated with normal islet secretory function. In contrast, poly IC + IFN-gamma-induced inhibition of glucose-stimulated insulin secretion and islet cell necrosis are events that are mediated by islet production of nitric oxide. These findings suggest that at least one IFN-gamma-induced antiviral response (islet cell necrosis) is mediated through a PKR-independent pathway.

Animals↗