1.Effects of MBL2 polymorphisms in patients with diisocyanate-induced occupational asthma.
Seung Hyun KIM ; Su Jin BAE ; Sailesh PALIKHE ; Young Min YE ; Hae Sim PARK
Experimental & Molecular Medicine 2015;47(4):e157-
Diisocyanate (DI) is the most common cause of occupational asthma (OA) in Korea. Mannose-binding lectin (MBL) initiates the lectin complement activation pathway following oxidative stress and plays an important role in the regulation of inflammatory processes. To determine whether there is a genetic association between MBL2 polymorphisms and DI-OA, 99 patients with DI-OA, 99 asymptomatic exposed controls (AECs) and 144 unexposed normal controls were enrolled in this study. Three polymorphisms (-554 G>C, - 431A>C and - 225 G>C) in the MBL2 promoter were genotyped, and serum MBL levels were determined by enzyme-linked immunosorbent assay. Functional variabilities in the promoter polymorphisms were analyzed by a luciferase reporter assay and electrophoretic mobility shift assay (EMSA). A significantly higher frequency of haplotype (ht) 2 [CAG] was noted in the DI-OA group compared with the AEC group (P=0.044). The patients with DI-OA carrying ht2 [CAG] had significantly lower PC20 methacholine levels (P<0.001) than the non-carriers. The serum MBL levels were significantly higher in the DI-exposed subjects (both the DI-OA patients and AECs) carrying ht1 [GAG] (P=0.028). Luciferase activity was significantly enhanced in ht1 [GAG] compared with ht2 [CAG] in human hepatocarcinoma cells (Hep3B) (P=0.002). The EMSA showed that a - 554G probe produced a specific shifted band compared with the - 554C probe. These findings suggest that decreased serum MBL levels due to polymorphisms of the MBL2 gene may increase susceptibility to the development of DI-OA in DI-exposed individuals.
Adult
;
Alleles
;
Asthma, Occupational/diagnosis/*etiology
;
Cell Line
;
Female
;
Forced Expiratory Volume
;
Gene Frequency
;
Genotype
;
Haplotypes
;
Humans
;
Immunoglobulin E/immunology
;
Immunoglobulin G/immunology
;
Isocyanates/*adverse effects/immunology
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Male
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Mannose-Binding Lectin/blood/*genetics
;
Middle Aged
;
*Polymorphism, Genetic
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Polymorphism, Single Nucleotide
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Protein Binding
;
Transcriptional Activation
;
Young Adult
2.Association Between PTPN22 Polymorphisms and IgE Responses to Staphylococcal Superantigens in Chronic Urticaria.
Sailesh PALIKHE ; Seung Hyun KIM ; Le Duy PHAM ; Young Min YE ; Hae Sim PARK
Allergy, Asthma & Immunology Research 2015;7(3):290-294
Protein tyrosine phosphatase-22 (PTPN22) gene encodes lymphoid-specific tyrosine phosphatase (Lyp), an inhibitor of T cell activation. A polymorphism of the PTPN22 gene has been found to be associated with chronic urticaria (CU). We investigated the associations between PTPN22 gene polymorphisms and CU characteristics, including serum specific IgE antibodies response to toxic shock syndrome toxin-1 (TSST-1) and staphylococcal enterotoxin A (SEA). CU patients (n=409) and normal healthy controls (n=388) were enrolled in the present study. Serum specific IgE to TSST-1 and SEA were measured by ImmunoCAP(R). Five PTPN22 single nucleotide polymorphisms, -1123G>C, 1858C>T, 13145A>G, 14943C>T, and 20628A>G, were genotyped. There were no significant differences in genotype or haplotype frequencies of these polymorphisms between the 2 groups. CU patients carrying the GG genotype at 20628A>G (P=0.035) or haplotype 3 [GGG] (P=0.047) had a significantly higher prevalence of serum specific IgE to TSST-1 compared to non-carriers. Similarly, CT/TT genotype at 14943C>T had a significantly higher prevalence of serum specific IgE to SEA (P=0.045). The findings suggest that the PTPN22 gene polymorphisms at 20628A>G and 14943C>T may enhance serum specific IgE responses to TSST-1 and SEA, which may contribute to CU pathogenesis.
Antibodies
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Enterotoxins
;
Genotype
;
Haplotypes
;
Humans
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Immunoglobulin E*
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Polymorphism, Single Nucleotide
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Prevalence
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Shock, Septic
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Superantigens*
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Tyrosine
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Urticaria*