• 제목/요약/키워드: TPH1 gene

검색결과 9건 처리시간 0.03초

초기 성인기 우울증에 대한 유전적, 환경적 요인의 영향 (Effects of Genetic and Environmental Factors on the Depression in Early Adulthood)

  • 김시경;이상익;신철진;손정우;엄상용;김헌
    • 생물정신의학
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    • 제15권1호
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    • pp.14-22
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    • 2008
  • 우울 장애는 유전적 요인과 함께 환경적 요인이 복합적으로 작용하는 정신 장애이다. 본 연구에서는 세로토닌 체계와 연관된 유전적 요인과 생활사건과 같은 환경적 요인이 초기 성인기 우울 장애 발현에 미치는 영향을 조사함으로써 우울 장애의 원인론에 있어 유전자${\times}$환경 상호작용을 설명할 수 있는 자료를 제시하고자 하였다. 534명의 대학 신입생을 종적으로 추적 조사하여 생활사건 빈도와 중요도, 우울 척도와 불안 척도를 조사하였으며 전화 면담을 통해 DSM-IV 우울 장애 여부를 확인하였다. 최종적으로 150명이 연구에 포함되었으며 이전 연구로 확인된 TPH1 유전형과 함께 보관되어 있던 대상군의 DNA를 이용하여 SNaPshot$^{TM}$ 방식으로 TPH2, 5HTR2A 유전자를 추가 분석하였다. 유전자 정보와 생활사건 특성이 우울 증상에 미치는 영향을 확인하기 위해 로지스틱 회귀 분석과 상관 분석, 카이 자승 분석을 사용하였다. TPH1 유전형 중 C 대립 유전자가 존재하지 않는 집단과 달리 C 대립 유전자가 존재하는 집단에서는 생활사건 빈도가 우울 장애 유발에 유의한 영향을 미쳤다. 이러한 영향은 다른 대립 유전자나 유전형을 보이는 집단에서는 관찰되지 않았다. 본 연구의 결과는 TPH1 유전형은 생활사건 이후 우울 장애 발생의 유의미한 예측 요인임을 시사한다. 이는 우울 장애의 유전${\times}$환경 상호작용에 TPH1 유전자가 작용하고 있음을 제시한다.

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Two Dinucleotide Repeat Polymorphisms (AC/TG and GT/CA) in the 5' Upstream Region of the Mouse Tryptophan Hydroxylase Gene

  • Yim, Sung-Vin;Chi, Sung-Gil;Chung, Sung-Hyun;Lee, Hee-Jae;Kim, Mi-Ja;Park, Seung-Joon;Jung, Jee-Chang;Chung, Joo-Ho
    • The Korean Journal of Physiology and Pharmacology
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    • 제3권5호
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    • pp.501-505
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    • 1999
  • Tryptophan hydroxylase (TPH), the rate-limiting enzyme in serotonin biosynthesis, is primarily expressed in serotonergic neurons of the raphe nuclei. Simple tandem repeat polymorphisms, typically one to four nucleotides long, are tandemly repeated several times and often characterized by many alleles. To identify the presence of polymorphic repeats, we sequenced the 5'-upstream region of the mouse TPH gene. For the detection of any allelic variants, polymerase chain reaction, nonisotopic single-strand conformation polymophism, and DNA sequencing analyses of the tandem repeat sequences were performed using genomic DNA extracted from 60 ICR mice. Two dinucleotide repeats, $5'-(AC/TG)_{22}-3'$ and $5'-(GT/CA)_{17}3',$ were identified at approximately - 5.7 kb and - 3.4 kb upstream from the transcriptional initiation site of the mouse TPH gene, respectively. Minor allelic variants, $5'-(AC/TG)_{21}-3'$ and $5'-(GT/CA)_{18}-3',$ were observed in heterozygous pairs from 3 of 60 and 1 of 60 ICR mice, respectively. The identification of these microsatellites in the mouse TPH promoter raises the possibility that identical and/or other polymorphic sequences might exist in the upstream region of the human TPH gene.

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Gray Matter Volume Reductions Were Associated with TPH1 Polymorphisms in Depressive Disorder Patients with Suicidal Attempts

  • Lee, Sang Min;Lee, Soyoen;Kang, Won Sub;Jahng, Geon-Ho;Park, Hae Jeong;Kim, Su Kang;Park, Jin Kyung
    • Psychiatry investigation
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    • 제15권12호
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    • pp.1174-1180
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    • 2018
  • Objective Structural changes of brain areas have been reported in depressive disorder and suicidal behavior (SB), in which TPH1 also has been known as a promising candidate gene. We investigated gray matter volume (GMV) differences, TPH1 rs1800532 and rs1799913 polymorphisms previously found to be associated with depressive disorder and SB, and the relationship between the two markers. Methods Thirteen depressive disorder patients with suicidal attempts (SA) and twenty healthy controls were included. We examined GMV differences using a voxel-based morphometry and regions of interest analysis. Direct sequencing was used for genotyping. Results The patients showed significant GMV reduction in left cerebral region including middle frontal gyrus, inferior frontal gyrus, and anterior cingulate cortex; in right middle temporal gyrus; in left cerebellar tonsil; and in right cerebral region including precentral gyrus and postcentral gyrus (corrected p<0.005). The right precentral and postcentral gyri GMV values of AA and CA genotypes patients were significantly decreased compared to those of CC genotype subjects (corrected p=0.040). Conclusion These findings show the possibility that both GMV reductions and TPH1 rs1800532/rs1799913 A allele may be involved in the pathogenesis of depressive disorder patients with SA.

Enhanced Biodegradation of Total Petroleum Hydrocarbons (TPHs) in Contaminated Soil using Biocatalyst

  • Owen, Jeffrey S.;Pyo, Sunyeon;Kang, Guyoung
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권5호
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    • pp.47-51
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    • 2015
  • Biocatalytic degradation of total petroleum hydrocarbons (TPHs) in contaminated soil by hemoglobin and hydrogen peroxide is an effective soil remediation method. This study used a laboratory soil reactor experiment to evaluate the effectiveness of a nonspecific biocatalytic reaction with hemoglobin and H2O2 for treating TPH-contaminated soil. We also quantified changes in the soil microbial community using real-time PCR analysis during the experimental treatment. The results show that the measured rate constant for the reaction with added hemoglobin was 0.051/day, about 3.5 times higher than the constant for the reaction with only H2O2 (0.014/day). After four weeks of treatment, 76% of the initial soil TPH concentration was removed with hemoglobin and hydrogen peroxide treatment. The removal of initial soil TPH concentration was 26% when only hydrogen peroxide was used. The soil microbial community, based on 16S rRNA gene copy number, was higher (7.1 × 106 copy number/g of bacteria, and 7.4 × 105 copy number/g of Archaea, respectively) in the hemoglobin catalyzed treatment. Our results show that TPH treatment in contaminated soil using hemoglobin catalyzed oxidation led to the enhanced removal effectiveness and was non-toxic to the native soil microbial community in the initial soil.

Effects of Plant and Soil Amendment on Remediation Performance and Methane Mitigation in Petroleum-Contaminated Soil

  • Seo, Yoonjoo;Cho, Kyung-Suk
    • Journal of Microbiology and Biotechnology
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    • 제31권1호
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    • pp.104-114
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    • 2021
  • Petroleum-contaminated soil is considered among the most important potential anthropogenic atmospheric methane sources. Additionally, various rhizoremediation factors can affect methane emissions by altering soil ecosystem carbon cycles. Nonetheless, greenhouse gas emissions from soil have not been given due importance as a potentially relevant parameter in rhizoremediation techniques. Therefore, in this study we sought to investigate the effects of different plant and soil amendments on both remediation efficiencies and methane emission characteristics in diesel-contaminated soil. An indoor pot experiment consisting of three plant treatments (control, maize, tall fescue) and two soil amendments (chemical nutrient, compost) was performed for 95 days. Total petroleum hydrocarbon (TPH) removal efficiency, dehydrogenase activity, and alkB (i.e., an alkane compound-degrading enzyme) gene abundance were the highest in the tall fescue and maize soil system amended with compost. Compost addition enhanced both the overall remediation efficiencies, as well as pmoA (i.e., a methane-oxidizing enzyme) gene abundance in soils. Moreover, the potential methane emission of diesel-contaminated soil was relatively low when maize was introduced to the soil system. After microbial community analysis, various TPH-degrading microorganisms (Nocardioides, Marinobacter, Immitisolibacter, Acinetobacter, Kocuria, Mycobacterium, Pseudomonas, Alcanivorax) and methane-oxidizing microorganisms (Methylocapsa, Methylosarcina) were observed in the rhizosphere soil. The effects of major rhizoremediation factors on soil remediation efficiency and greenhouse gas emissions discussed herein are expected to contribute to the development of sustainable biological remediation technologies in response to global climate change.

Monitoring of petroleum hydrocarbon degradative potential of indigenous microorganisms in ozonated soil

  • 안영희;정해룡;;;최희철;김인수
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.152-157
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    • 2003
  • Diesel-contaminated soils were ozonated for different times (0 - 900 min) and incubated for 9 wk to monitor petroleum hydrocarbons (PH)-degradative potential of indigenous microorganisms in the soils. Increased ozonation time decreased not only concentration of PH but also number of microorganisms in the soils. Microorganisms in the ozonated soils increased during 9-wk incubation as monitored by culture- and nonculture-based methods. Higher (1-2 orders of magnitude) cell number was observed by quantitative analysis of soil DNA using probes detecting genes encoding 165 rRNA(rrn), naphthalene dioxygenase (nahA), toluene dioxygenase (todC), and alkane hydroxylase (alkB) than microbial abundance estimated by culture-based methods. Such PH-degraders were relatively a few or under detection limit in 900-min ozonated soil. Further PH-removal observed during the incubation period supported the presence of PH-degraders in ozonated soils. Highest reduction (25.4%) of total PH (TPH) was observed in 180-min ozonated soil white negligible reduction was shown in 900-min ozonated soil during the period, resulting in lowest TPH-concentration in 180-min ozonated soil among the ozonated soils. Microbial community composition in 9-wk incubated soils revealed slight difference between 900-min ozonated and unozonated soils as analyzed by whole cell hybridization using group-specific rRNA-targeted oligonucleotides. Results of this study suggest that appropriate ozonation and subsequent biodegradation by indigenous microorganisms may be a cost-effective and successful remediation strategy for PH-contaminated soils.

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특수 목적견으로서의 품성 및 능력 관련 유전자들에 관한 생물정보학적 분석 (Bioinformatic Analysis of the Canine Genes Related to Phenotypes for the Working Dogs)

  • 권윤정;어정우;최봉환;최유리;김정안;김다희;김태헌;성환후;김희수
    • 생명과학회지
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    • 제23권11호
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    • pp.1325-1335
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    • 2013
  • 특수 목적견(구조견, 군견, 안내견 및 탐지견)은 집중력, 소유욕, 대담성 등을 기반으로 한 훈련시험을 통해 선별된다. 최근 특수견으로서의 특수한 능력 및 품성에 대해 유전적인 정보가 중요한 인자로 다뤄지고 있다. 본 연구에서는 특수견으로서의 개의 특수한 능력 및 품성과 관련된 유전자들의 분자적인 특징을 고찰하고자 하였다. 이전 연구에서 보고된 24개의 유전자(AR, BDNF, DAT, DBH, DGCR2, DRD4, MAOA, MAOB, SLC6A4, TH, TPH2, IFT88, KCNA3, TBR2, TRKB, ACE, GNB1, MSTN, PLCL1, SLC25A22, WFIKKN2, APOE, GRIN2B, PIK3CG)를 선택하여 품성, 후각, 운동 및 학습능력 관련 유전자, 네 가지 카테고리로 분류하였다. 본 연구에서는 생물학적인 기법을 이용하여 이 유전자들의 염색체상의 위치, 유전자들 간의 네트워크를 통한 상호관계를 조사하였으며, 어떤 생물학적 기능과 관련이 있는지 Gene Ontology 분석과 데이터베이스를 기반으로 in silico 발현 양상을 살펴보았다. 또한 이전 연구를 통하여 품성 관련 유전자들의 다양한 유전적 다형성에 대한 보고를 조사하였다. 본 연구는 특수 견으로서 주요하게 고려되는 개의 고유한 능력 및 품성 관련된 유전자에 대해 분자적 특징을 제시하고 있다. 이 후보 유전자들은 개의 특수한 표현형과의 관계를 밝힐 수 있는 연구의 기초자료로서 이용될 수 있을 뿐만 아니라 핵심적인 유전인자로 응용되어 신속하고 정확한 특수견 선발에 기여할 수 있을 것으로 전망된다.

Monitoring Bacterial Population Dynamics Using Real-Time PCR During the Bioremediation of Crude-Oil-Contaminated Soil

  • Baek, Kyung-Hwa;Yoon, Byung-Dae;Cho, Dae-Hyun;Kim, Byung-Hyuk;Oh, Hee-Mock;Kim, Hee-Sik
    • Journal of Microbiology and Biotechnology
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    • 제19권4호
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    • pp.339-345
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    • 2009
  • We evaluated the activity and abundance of the crude-oil-degrading bacterium Nocardia sp. H17-1 during bioremediation of oil-contaminated soil, using real-time PCR. The total petroleum hydrocarbon(TPH) degradation rate constants(k) of the soils treated with and without H17-1 were $0.103\;d^{-1}$ and $0.028\;d^{-1}$ respectively. The degradation rate constant was 3.6 times higher in the soil with H17-1 than in the soil without H17-1. In order to detect and quantify the Nocardia sp. H17-1 in soil samples, we quantified the genes encoding 16S ribosomal RNA(16S rRNA), alkane monooxygenase(alkB4), and catechol 2,3-dioxygenase(23CAT) with real-time PCR using SYBR green. The amounts of H17-1 16S rRNA and alkB4 detected increased rapidly up to 1,000-folds for the first 10 days, and then continued to increase only slightly or leveled off. However, the abundance of the 23CAT gene detected in H17-1-treated soil, where H17-1 had neither the 23CAT gene for the degradation of aromatic hydrocarbons nor the catechol 2,3-dioxygenase activity, did not differ significantly from that of the untreated soil($\alpha$=0.05,p>0.22). These results indicated that H17-1 is a potential candidate for the bioaugmentation of alkane-contaminated soil. Overall, we evaluated the abundance and metabolic activity of the bioremediation strain H17-1 using real-time PCR, independent of cultivation.

Monitoring of Microbial Diversity and Activity During Bioremediation of Crude Oil-Contaminated Soil with Different Treatments

  • Baek, Kyung-Hwa;Yoon, Byung-Dae;Kim, Byung-Hyuk;Cho, Dae-Hyun;Lee, In-Sook;Oh, Hee-Mock;Kim, Hee-Sik
    • Journal of Microbiology and Biotechnology
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    • 제17권1호
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    • pp.67-73
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    • 2007
  • The present study compared the microbial diversity and activity during the application of various bioremediation processes to crude oil-contaminated soil. Five different treatments, including natural attenuation (NA), biostimulation (BS), biosurfactant addition (BE), bioaugmentation (BA), and a combined treatment (CT) of biostimulation, biosurfactant addition, and bioaugmentation, were used to analyze the degradation rate and microbial communities. After 120 days, the level of remaining hydrocarbons after all the treatments was similar, however, the highest rate (k) of total petroleum hydrocarbon (TPH) degradation was observed with the CT treatment (P<0.05). The total bacterial counts increased during the first 2 weeks with all the treatments, and then remained stable. The bacterial communities and alkane monooxygenase gene fragment, alkB, were compared by denaturing gradient gel electrophoresis (DGGE). The DGGE analyses of the BA and CT treatments, which included Nocardia sp. H17-1, revealed a simple dominant population structure, compared with the other treatments. The Shannon-Weaver diversity index (H') and Simpson dominance index (D), calculated from the DGGE profiles using 16S rDNA, showed considerable qualitative differences in the community structure before and after the bioremediation treatment as well as between treatment conditions.