• Title/Summary/Keyword: genotype frequencies

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Association between Endometriosis and Human ${\alpha}2$-Heremans Schmidt Glycoprotein (AHSG) Polymorphism (한국 여성에서 중증 자궁내막증과 Human ${\alpha}2$-Heremans Schmidt Glycoprotein (AHSG) 유전자 다형성의 연관성)

  • Kim, Jin-Ju;Chae, Soo-Jin;Kim, Jong-Mee;Lee, Gyoung-Hoon;Choi, Young-Min;Kim, Sung-Hoon;Shin, Jung-Ho;Lee, Taek-Hoo;Hur, Jun-Young;Lee, Byoung-Suk;Oh, Sung-Tack;Lee, Kyu-Sup;Lim, Young-Tack
    • Clinical and Experimental Reproductive Medicine
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    • v.35 no.4
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    • pp.267-274
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    • 2008
  • Objective: To evaluate the relationship between advanced stage endometriosis and polymorphisms in $\alpha$2-Heremans Schmidt glycoprotein (AHSG) gene in Korean women. Methods: One-hundred thirty women with endometriosis stage III and IV, and 224 women without endometriosis were enrolled. In these patients, we determined AHSG gene polymorphisms by PCR and RFLP (restriction fragment length polymorphism) analysis. Results: The genotype distribution of the AHSG gene polymorphism in the endometriosis group was not different from that of the control group (AHSG 1*1/AHSG 1*2/AHSG 2*2 frequencies were 56.2%/37.7%/6.2% and 55.8%/39.3%/4.9% for the endometriosis and control groups, respectively, p=.864). Also, the frequency of AHSG 2 haplotype was not different between endometriosis patients and controls (AHSG 1 haplotype /AHSG 2 haplotype rates were 75.0%/25.0% and 75.4%/24.6% for the endometriosis and control groups, respectively, p=0.894). Conclusion: AHSG gene polymorphism was not associated with the risk of advanced stage endometriosis in the Korean population.

Exonic SNP (rs7144, 3’-UTR) in CD46 Molecule and Complement Regulatory Protein (CD46) Gene Associated with Excess Syndrome to Categorize Korean Bronchial Asthma Patients (한국인 기관지 천식 허증(虛證), 실증(實證) 환자와 CD46 유전자 다형성과의 관계)

  • Lee, Mei;Baek, Hyun-jung;Park, Eui-keun;Kim, Kwan-il;Lee, Beom-joon;Kim, Su-kang;Chung, Joo-ho;Kim, Jin-ju;Kim, Mi-a;Jung, Hee-jae;Jung, Sung-ki
    • The Journal of Internal Korean Medicine
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    • v.36 no.4
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    • pp.547-561
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    • 2015
  • Objectives In this study, we divided Korean asthma patients into excess syndrome or deficiency syndrome groups according to clinical phenotype. Genetic analysis was conducted to investigate the association of exonic SNPs in the CD46 gene polymorphism with the clinical phenotype based on the differentiation syndrome of the bronchial asthma patients.Methods There were 95 healthy patients (control group) and 53 asthma patients. (The deficiency syndrome group included 24 and the excess syndrome group 29). We searched the exonic areas of the CD46 gene in the NCBI website SNPs with <0.01 minor allele frequency (MAF) and <0.01 heterozygosity. We finally selected two SNPs: rs138843816, Ser13Phe and rs7144, 3’-UTR. Hardy-Weinberg equilibrium was calculated using SNPStats.Results There were significant differences in the codominant 1 model and the dominant model between the healthy group and the asthma group. There were significant differences between deficiency syndrome group and the excess syndrome group in the genotype frequencies and in the codominant 1 model, the dominant model, and the log-additive model. The allele frequency of rs7144C showed a significant difference between the deficiency syndrome group and the excess syndrome group. Two-SNP haplotype analysis showed a significant difference in frequency in the deficiency syndrome group and in the excess syndrome group. There were significant differences between the healthy group and the excess syndrome group in the codominant 1 model, the dominant model, and the log-additive model. The frequency of the rs7144 C allele exhibited a significant difference in the demonstration. SNP haplotype analysis between the healthy group and the excess syndrome group showed a significant difference in the frequency of the CT haplotype and the CC haplotype.Conclusions The results indicate that two CD46 SNPs (rs138843816, Ser13Phe and rs7144, 3′–UTR) might be associated with the symptomatic excess syndrome in Korean asthma patients.

Diagnosis of Pigs Producing PSE Meat using DNA Analysis (DNA검사기법을 이용한 PSE 돈육 생산 돼지 진단)

  • Chung Eui-Ryong;Chung Ku-Young
    • Food Science of Animal Resources
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    • v.24 no.4
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    • pp.349-354
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    • 2004
  • Stress-susceptible pigs have been known as the porcine stress syndrome (PSS), swine PSS, also known as malignant hyperthermia (MH), is characterized as sudden death and production of poor meat quality such as PSE (pale, soft and exudative) meat after slaughtering. PSS and PSE meat cause major economic losses in the pig industry. A point mutation in the gene coding for the ryanodine receptor (RYR1) in porcine skeletal muscle, also known calcium (Ca$^{2+}$) release channel, has been associated with swine PSS and halothane sensitivity. We used the PCR-RFLP(restriction fragment length polymorphism) and PCR-SSCP (single strand conformation polymorphism) methods to detect the PSS gene mutation (C1843T) in the RYR1 gene and to estimate genotype frequencies of PSS gene in Korean pig breed populations. In PCR-RFLP and SSCP analyses, three genotypes of homozygous normal (N/M), heterozygous carrier (N/n) and homozygous recessive mutant (n/n) were detected using agarose or polyacrylamide gel electrophoresis, respectively. The proportions of normal, carrier and PSS pigs were 57.1, 35.7 and 7.1% for Landrace, 82.5, 15.8 and 1.7% far L. Yorkshire, 95.2, 4.8 and 0.0% for Duroc and 72.0, 22.7 and 5.3% for Crossbreed. Consequently, DNA-based diagnosis for the identification of stress-susceptible pigs of PSS and pigs producing PSE meat is a powerful technique. Especially, PCR-SSCP method may be useful as a rapid, sensitive and inexpensive test for the large-scale screening of PSS genotypes and pigs with PSE meat in the pork industry.y.

Ser326Cys Polymorphism of hOGG1 Gene and Risk of Primary Lung Cancer in Koreans (한국인에서 hOGG1 유전자의 Ser326Cys 다형성과 원발성 폐암의 위험도)

  • Chae, Sang-Chul;Kim, Kyung-Rock;Joo, So-Young;Lee, Su-Yean;Kang, Kyung-Hee;Jeon, Kyung-Neoyh;Cha, Seung-Ick;Kim, Chang-Ho;Jung, Tae-Hoon;Park, Jae-Yang
    • Tuberculosis and Respiratory Diseases
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    • v.52 no.1
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    • pp.5-13
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    • 2002
  • Background: DNA repair plays a crucial role in protecting the genome from cancer-causing agents. Therefore, a reduced DNA repair capacity can increase the susceptibility to cancer. The human OGG1 (hOGG1) gene encodes DNA glycosylase/apurinic lyase and excise 8-hydroxyguanine, one of the major premutagenic DNA lesions, which is produced by oxygen radical forming agents including smoking. Recently several polymorphisms in the hOGG1 gene were identified, and it is possible that these polymorphism') may affect the DNA repair capacity and thus modulate cancer susceptibility. The relationship between the codon 326 polymorphism (Ser to Cys) in the hOGG1 gene and lung cancer risk was investigated. Materials and Method: The Ser326Cys genotypes were determined using PCR-RFLP analysis in 299 primary lung cancer patients and 186 healthy controls who were frequency (case:control=3:2) matched according to age and sex. Result: The frequencies of the Ser326Cys genotypes (Ser/Ser, Ser/Cys and Cys/Cys) among cases (23.4%, 51.8%, and 24.7%, respectively) were not significantly different from those among the controls (22.6%,52.1% and 25.3%, respectively). When the analyses were stratified according to age, sex, smoking status and packyears of smoking, no significant association between this polymorphism and lung cancer risk was found. Moreover, the Ser326Cys genotype showed no apparent relationship with any of the histological types of lung cancer. Conclusion: These result suggest that the hOGG1 Ser326Cys polymorphism is not a major contributor to individual lung cancer susceptibility in Koreans.