• 제목/요약/키워드: Novel mutation

검색결과 297건 처리시간 0.024초

비소세포폐암에서 종양억제유전자와 극소위성 변이에 관한 연구 (Genetic Alteration of Tumor Suppressor Gene and Microsatellite in Nonsmall Cell Lung Cancer)

  • 신태림;홍영숙;김진국;장중현
    • Tuberculosis and Respiratory Diseases
    • /
    • 제49권4호
    • /
    • pp.453-465
    • /
    • 2000
  • 연구배경 : 폐암의 발생과정은 다양한 유전자 이상과 여러 가지경로 이상을 포함한 다단계 과정이다. 암유전자의 활성화나 종양억제유전자의 불활성화, 그리고 결과적인 유전적 불안정성의 증가는 폐암의 발암과정에서 일어나는 주요한 사건이며 임상적으로 폐암이 진단되기까지 10내지 20여 가지의 유전적 변화가 축적되는 것으로 알려져 있다. 본 연구에서 저자들은 비소세포폐암에서 종양억제유전자인 p53과 FHIT의 돌연변이, FHIT 유전자의 전사체 이상 여부를 확인하고 종양억제유전자부근에 위치하는 극소위성의 유전적 변화를 관찰하였다. 대상 및 방법 : 비소세포폐암으로 진단된 후 외과적 적출술을 시행받은 환자 29명의 생검조직과 그에 대응하는 동일인의 정상조직을 대상으로 하였다. p53과 FHIT의 돌연변이 여부는 PCR-SSCP, DNA 염기분석으로 확인하였고 D3S1285, D9S171, TP53에서 극소위성 불안정성과 이형접합성 상실은 PCR로 확인하였다. FHIT 유전자의 전사체 이상 여부 확인을 위해서는 RT-PCR을 사용하였다. 결과 : 1) p53 유전자의 2예에서 관찰되었고 모두 exon 5에서 1개의 염기가 치환되는 점돌연변이였다. 2) 극소위성 불안정성은 D3S1285와 D9S171에서 각각 2예, 1예, 이형접합성 상실은 D3S1285, D9S171, TP53에서 각각 3예, 4예, 7예가 관찰되었다. 3) FHIT 유전자의 변이는 11예에서 관찰되었으며 이중 6예는 exon 8의 codon 98에서 염기서열이 CAT가 CAC로 바뀌는 잠재적 치환이었다. 4) FHIT 유전자의 전사체 이상은 $\beta$-actin이 제대로 발현되는 15예중 4예에서 관찰되었으며 exon 6-9의 결실로 확인되었다. 결론 : 이상으로 비소세포폐암 발생에 p53, FHIT 유전자의 변이, 극소위성 불안정성과 이형접합성 상실 등 다양한 분자유전학적 기전이 복합적으로 작용할 것으로 생각되며 이번 연구에서 조사된 유전적 이상의 빈도는 앞서 발표된 서양의 연구결과와 대체적으로 일치한다. 특히 극소위성의 분석은 편평세포암에서 종양표지자로서의 역할이 기대된다. 이런 발암과정에 대한 이해는 예방, 진단 및 치료적 접근을 발전시키는데 도움을 줄 수 있을 것이고 향후 이들에 관한 가능적 연구들이 수행되어야 할 것이다.

  • PDF

Genenation of structural diversity in polyketides by combinatorial biosynthesis of polyketides: Part I. Generation of multiple bioactive macrolides by hybrid modular polyketide synthases in Streptomyces venezuelae, Part II. Production of novel rifamycins by combinatorial biosynthesis

  • Yoon, Yeo-Joon
    • 한국미생물생명공학회:학술대회논문집
    • /
    • 한국미생물생명공학회 2002년도 학술발표대회
    • /
    • pp.18-25
    • /
    • 2002
  • The pikromycin biosynthetic system in Streptomyces venezuleae is unique for its ability to produce two groups of antibiotics that include the 12-membered ring macrolides methymycin and neomethymycin, and the 14-membered ring macrolides narbomycin and pikromycin. The metabolic pathway also contains two post polyketide-modification enzymes, a glycosyltransferase and P450 hydroxylase that have unusually broad substrate specificities. In order to explore further the substrate flexibility of these enzymes a series of hybrid polyketide synthases were constructed and their metabolic products characterized. The plasmid-based replacement of the multifunctional protein subunits of the pikromycin PKS in S. venezuelae by the corresponding subunits from heterologous modular PKSs resulted in recombinant strains that produce both 12- and 14-membered ring macrolactones with predicted structural alterations. In all cases, novel macrolactones were produced and further modified by the DesVII glycosyltransferase and PikC hydroxylase leading to biologically active macrolide structures. These results demonstrate that hybrid PKSs in S. venezuelae can produce a multiplicity of new macrolactones that are modified further by the highly flexible DesVII glycosyltransferase and PikC hydroxylase tailoring enzymes. This work demonstrates the unique capacity of the S. venezuelae pikromycin pathway to expand the toolbox of combinatorial biosynthesis and to accelerate the creation of novel biologically active natural products. The polyketide backbone of rifamycin B is assembled through successive condensation and ${\beta}$-carbonyl processing of the extender units by the modular rifamycin PKS. The eighth module, in the RifD protein, contains nonfunctional DH domain and functional KR domain, which specify the reduction of the ${\beta}$-carbonyl group resulting in the C-21 bydroxyl of rifamycin B. A four amino acid substitution and one amino acid deletion were introduced in the putative NADPH binding motif in the proposed KR domain encoded by rifD. This strategy of mutation was based on the amino acid sequences of the corresponding motif of the KR domain of module 3 in the RifA protein, which is believed dysfunctional, so as to introduce a minimum alteration and retain the reading frame intact, yet ensure loss of function. The resulting strain produces linear polyketides, from tetraketide to octaketide, which are also produced by a rifD disrupted mutant as a consequence of premature termination of polyketide assembly. Much of the structural diversity within the polyketide superfamily of natural products is due to the ability of PKSs to vary the reduction level of every other alternate carbon atom in the backbone. Thus, the ability to introduce heterologous reductive segments such as ketoreductase (KR), dehydratase (DH), and enoylreductase (ER) into modules that naturally lack these activities would increase the power of the combinatorial biosynthetic toolbox. The dehydratase domain of module 7 of the rifamycin PKS, which is predicted to be nonfunctional in view of the sequence of the apparent active site, was replaced with its functional homolog from module 7 of rapamycin-producing polyketide synthase. The resulting mutant strain behaved like a rifC disrupted mutant, i.e., it accumulated the heptaketide intermediate and its precursors. This result points out a major difficulty we have encountered with all the Amycolatopsis mediterranei strain containing hybrid polyketide synthases: all the engineered strains prepared so far accumulate a plethora of products derived from the polyketide chain assembly intermediates as major products instead of just analogs of rifamycin B or its ansamycin precursors.

  • PDF

FAH gene novel mutation을 가진 만성형 Hereditary tyrosinemia 1형 (Chronic Hereditary Tyrosinemia Type I with Novel Mutation in FAH Gene)

  • 양성민;최효원;강윤구;이진성;남궁미경
    • 대한유전성대사질환학회지
    • /
    • 제20권2호
    • /
    • pp.55-62
    • /
    • 2020
  • HT-1은 FAH의 돌연변이에 의한 FAH의 결함으로 타이로신 대사의 중간산물인 FAA, SA가 간세포, 신세뇨관 세포에 축적되어 증상을 일으키는 대사이상 질환의 일종이다. 생후 6개월 내에 증상이 발현되는 급성형의 경우 간기능 저하에 따른 간부전, 응고장애, Fanconi 증후군, FAA 축적에 의한 델타-아미노레부릭산 탈수효소의 기능 저하에 의한 포르피린증 유사 증상이 발생한다. 증상이 생후 12개월 이후 발현되는 만성형의 경우 간경화, 간세포암종, 저인산혈증 구루병, 인지기능 저하와 같은 증상이 발생할 수 있다. 본 증례는 생후 20개월 경 간비장비대, 내반슬, 대상산증으로 대사이상질환 감별을 위하여 시행한 탠덤매스 분석에서 특이 소견이 보고되지 않았으나, 57개월에 시행한 복부 초음파 검사에서 간경화, 소변 유기산 분석에서 SA 상승, NGS에서 FAH 돌연변이 c.107T>C (p.Ile 36Thr), c.614T>C (pPhe205Ser)가 확인되어 HT-1이 진단된 증례로, 환아는 현재까지 NTBC 및 단백제한식이를 유지하며 특이 합병증 없이 외래 추적관찰 중이다. HT-1은 혈장 타이로신 농도가 증가하지 않는 경우도 있으며, 만성형의 경우 임상양상이 생후 12개월 이후에 나타나므로 탠덤매스 검사에서 음성 소견이 보고되어도 임상적으로 의심되는 경우 소변 유기산 분석과 같은 추가적 검사가 필요하다. 또한 기존의 탠덤매스 분석을 통하여는 HT-1이 진단되지 않는 경우가 있을 수 있어, 신생아 선별검사에서 혈장 타이로신 농도뿐 아니라 SA 농도도 추가로 확인하는 것의 비용 편익에 대한 추가적 연구가 필요하다.

유전자 패널 검사로 진단된 당원병 III형 증례 (A Case of Glycogen Storage Disease Type III Diagnosed by Gene Panel Sequencing)

  • 김성완;장주영;이장훈;손영배;장자현
    • 대한유전성대사질환학회지
    • /
    • 제20권1호
    • /
    • pp.24-28
    • /
    • 2020
  • 당원병 III형은 GDE 결핍으로 분해되지 않은 당원이 간 또는 근육에 축적되는 유전대사이상질환이다. AGL 유전자 변이에 의해 발생하고 높은 유전적 이질성을 가지고 있다. 당원병 III형의 임상증상은 간 비대, 성장 지연, 저혈당 등이 있다. 이러한 임상 증상은 다른 타입의 당원병의 증상과 비슷하여 임상적으로는 구분하기가 어렵다. 저자들은 간 비대 주소로 내원한 11개월 환아에서 유전자 패널 검사로 진단된 당원병 III형 증례를 보고하고자 한다. 간 조직검사결과 간세포에 글리코겐이 축적되어 있어 당원병을 의심하였으며, 당원병 아형의 감별 진단을 위해 유전자 패널 검사를 시행하였다. 그 결과, AGL 유전자에서 이전에 보고된 바 없는 c.311_312del와 c.3314+1G>A 변이가 이형접합체로 발견되어 당원병 III형으로 진단하였다. 진단 후 생옥수수 전분가루를 복용하는 식이요법 시작하였고, 생후 35개월인 현재까지 급·만성 합병증 없는 상태이다. 또한, 가족 검사를 통해 부모가 각각 보인자임을 확인하였고, 임신된 동생의 융모막 검사에서도 동일한 변이가 확인되어 출산 후 재검 및 조기 식이요법을 시행할 예정이다. 유전자 패널 검사법은 당원병과 같이 임상적으로 구분이 어려우며 높은 유전적 이질성을 가진 질환의 감별 진단 시 시간과 비용을 아낄 수 있어 유용하다. 또한 정확한 분자 유전학적 진단은 환아와 가족에게 질환에 대한 정확한 정보 및 치료 예방, 산전 유전상담을 제공하는 데 도움이 된다.

한국인 제3형 당원병 환자의 임상상 및 AGL 유전자형 (AGL gene mutation and clinical features in Korean patients with glycogen storage disease type III)

  • 고정민;이정현;김구환;유한욱
    • 대한유전성대사질환학회지
    • /
    • 제6권1호
    • /
    • pp.15-23
    • /
    • 2006
  • Purpose: Glycogen storage disease type III (GSD-III), is a rare autosomal recessive disorder of glycogen metabolism. The affected enzyme is amylo-1,6-glucosidase, 4-alpha-glucanotransferase (AGL, glycogen debranching enzyme), which is responsible for the debranching of the glycogen molecule during catabolism. The disease has been demonstrated to show clinical and biochemical heterogeneity, reflecting the genotype-phenotype heterogeneity among different patients. In this study, we analyzed mutations of the AGL gene in three unrelated Korean GSD-III patients and discussed their clinical and laboratory implications. Methods: We studied three GSD-III patients and the clinical features were characterized. Sequence analysis of 35exons and part exon-intron boundaries of the AGLgene in patients were carried out by direct DNA sequencing method using genomic DNA isolated from patients' peripheral leukocytes. Results: The clinical features included hepatomegaly (in all patients), seizures (in patient 2), growth failure (in patients 1), hyperlipidemia (in patients 1 and 3), raised transaminases and creatinine kinase concentrations (in all patients) and mild EKG abnormalities (in patients 2). Liver transplantation was performed in patient 2due to progressive hepatic fibrosis. Administration of raw-corn-starch could maintain normoglycemia and improve the condition. DNA sequence analysis revealed mutations in 5 out of 6 alleles. Patient 1 was a compound heterozygote of c.1282 G>A (p.R428K) and c.1306delA (p.S603PfsX6), patient 2 with c.1510_1511insT (p.Y504LfsX10), and patient 3 with c.3416 T>C (p.L1139P) and c.l735+1 G>T (Y538_R578delfsX4) mutations. Except R428K mutation, 4 other mutations identified in3 patients were novel. Conclusion: GSD-III patients have variable phenotypic characteristics resembling GSD-Ia. The molecular defects in the AGL gene of Korean GSD-III patients were genetically heterogeneous.

  • PDF

Clinical Features, Response to Treatment, Prognosis, and Molecular Characterization in Korean Patients with Inherited Urea Cycle Defects

  • Yoo, Han-Wook;Kim, Gu-Hwan;Seo, Eul-Ju
    • 대한유전성대사질환학회지
    • /
    • 제2권1호
    • /
    • pp.77-79
    • /
    • 2002
  • The urea cycle, consisting of a series of six enzymatic reactions, plays key roles to prevent the accumulation of toxic nitrogenous compound and synthesize arginine de novo. Five well characterized diseases have been described, resulting from an enzymatic defect in the biosynthesis of one of the normally expressed enzyme. This presentation will focus on two representative diseases; ornithine transcarbamylase(OTC) deficiency and citrullinemia(argininosuccinate synthetase deficiency). OTC deficiency is one of the most common inborn error of urea cycle, which is inherited in X-linked manner. We identified 17 different mutations in 20 unrelated Korean patients with OTC deficiency; L9X, R26P, R26X, T44I, R92X, G100R, R141Q, G195R, M205T, H214Y, D249G, R277W, F281S, 853 del C, R320X, V323M and 10 bp del at nt. 796-805. These mutations occur at well conserved nucleotide sequences across species or CpG hot spot. The L9X and R26X lead to the disruption of leader sequences, required for directing mitochondrial localization of the OTC precursor. Their phenotypes are severe, and neonatal onset. The G100R, R277W and V323M mutations were uniquely identified in patients with late onset OTC deficiency. The other genotypes are associated with neonatal onset. Out of 20 patients with OTC deficiency, only 6 patients are alive; two were liver transplanted, and normal in growth and development at 2, 4 years after transplantation respectively. Citrullinemia is an autosomal recessive disease, caused by the mutations in the argininosuccinate synthetase(ASS) gene. We identified in 3 major mutations in 11 unrelated Korean patients with citrullinemia; G324S, $IVS6^{-2}$ A to G, and 67 bp ins at nt 1125-1126. Among these, the 67 base pair insertion mutation is novel. The allele frequency of each mutation is; G324S(45%), IVS6-2 A to G(32%), and 67 base pair insertion(14%). All patients are diagnosed at neonatal or infantile age. Interestingly, two patients presented with stroke like episode. Out of 11 patients, 5 patients died. Among 6 patients alive, one patient was successfully liver transplanted.

  • PDF

SCNN1A 유전자 변이로 발생한 상염색체 열성 가성 저 알도스테론증 1형 1례 (A Case of Autosomal Recessive Pseudohypoaldosteronism Type 1 with a Novel Mutation in the SCNN1A Gene)

  • 김수연;이주훈;정해일;박영서
    • Childhood Kidney Diseases
    • /
    • 제17권2호
    • /
    • pp.137-142
    • /
    • 2013
  • 전신형 PHA 1은 ENaC의 ${\alpha}$ (SCNN1A), ${\beta}$ (SCNN1B), ${\gamma}$ (SCNN1G) 아단위를 암호화하는 유전자의 변이로 경상피나트륨 수송의 결함으로 발생하게 되며 신생아기에 생명을 위협하는 염분 소실, 고칼륨혈증, 대사성 산증이 발생하게 된다. 또한 신장 뿐 아니라 대장, 침샘, 땀샘 및 호흡기상피 등의 다양한 표적 기간에서 전신적으로 알도스테론에 대한 저항성이 나타난다. 최근 전신형 PHA 1의 임상상과 유전자형 및 이환된 환아들의 장기 추적 결과에 대한 보고가 되고 있으나 질환의 희소성으로 임상 표현형을 설명하기는 어려운 실정이다. 저자들은 사망을 초래할 수 있는 심각한 전해질 이상을 보인 환아에서 PHA를 의심하여 염분 및 양이온 교환수지를 투여하여 효과적으로 전해질 교정이 되어 추적관찰 중이며, 유전자 검사를 통해 missense mutation을 나타낸 전신형 PHA1을 경험하였기에 보고하는 바이다.

Utilizing cell-free DNA to validate targeted disruption of MYO7A in rhesus macaque pre-implantation embryos

  • Junghyun Ryu;Fernanda C. Burch;Emily Mishler;Martha Neuringer;Jon D. Hennebold;Carol Hanna
    • 한국동물생명공학회지
    • /
    • 제37권4호
    • /
    • pp.292-297
    • /
    • 2022
  • Direct injection of CRISPR/Cas9 into zygotes enables the production of genetically modified nonhuman primates (NHPs) essential for modeling specific human diseases, such as Usher syndrome, and for developing novel therapeutic strategies. Usher syndrome is a rare genetic disease that causes loss of hearing, retinal degeneration, and problems with balance, and is attributed to a mutation in MYO7A, a gene that encodes an uncommon myosin motor protein expressed in the inner ear and retinal photoreceptors. To produce an Usher syndrome type 1B (USH1B) rhesus macaque model, we disrupted the MYO7A gene in developing zygotes. Identification of appropriately edited MYO7A embryos for knockout embryo transfer requires sequence analysis of material recovered from a trophectoderm (TE) cell biopsy. However, the TE biopsy procedure is labor intensive and could adversely impact embryo development. Recent studies have reported using cell-free DNA (cfDNA) from embryo culture media to detect aneuploid embryos in human in vitro fertilization (IVF) clinics. The cfDNA is released from the embryo during cell division or cell death, suggesting that cfDNA may be a viable resource for sequence analysis. Moreover, cfDNA collection is not invasive to the embryo and does not require special tools or expertise. We hypothesized that selection of appropriate edited embryos could be performed by analyzing cfDNA for MYO7A editing in embryo culture medium, and that this method would be advantageous for the subsequent generation of genetically modified NHPs. The purpose of this experiment is to determine whether cfDNA can be used to identify the target gene mutation of CRISPR/Cas9 injected embryos. In this study, we were able to obtain and utilize cfDNA to confirm the mutagenesis of MYO7A, but the method will require further optimization to obtain better accuracy before it can replace the TE biopsy approach.

MGMT-B Gene Promoter Hypermethylation in Patients with Inflammatory Bowel Disease - A Novel Finding

  • Mokarram, Pooneh;Kavousipour, Soudabeh;Sarabi, Mostafa Moradi;Mehrabani, Golnosh;Fahmidehkar, Mohammad Ali;Shamsdin, Seyedeh Azra;Alipour, Abbas;Naini, Mahvash Alizade
    • Asian Pacific Journal of Cancer Prevention
    • /
    • 제16권5호
    • /
    • pp.1945-1952
    • /
    • 2015
  • Inflammatory bowel disease (IBD) is a disease strongly associated with colorectal cancer (CRC) as a well-known precancerous condition. Alterations in DNA methylation and mutation in K-ras are believed to play an early etiopathogenic role in CRC and may also an initiating event through deregulation of molecular signaling. Epigenetic silencing of APC and SFRP2 in the WNT signaling pathway may also be involved in IBD-CRC. The role of aberrant DNA methylation in precancerous state of colorectal cancer (CRC) is under intensive investigation worldwide. The aim of this study was to investigate the status of promoter methylation of MGMT-B, APC1A and SFRP2 genes, in inflamed and normal colon tissues of patients with IBD compared with control normal tissues. A total of 52 IBD tissues as well as corresponding normal tissues and 30 samples from healthy participants were obtained. We determined promoter methylation status of MGMT-B, SFRP2 and APC1A genes by chemical treatment with sodium bisulfite and subsequent MSP. The most frequently methylated locus was MGMT-B (71%; 34 of 48), followed by SFRP2 (66.6 %; 32 of 48), and APC1A (43.7%; 21 of 48). Our study demonstrated for the first time that hypermethylation of the MGMT-B and the SFRP2 gene promoter regions might be involved in IBD development. Methylation of MGMT-B and SFRP2 in IBD patients may provide a method for early detection of IBD-associated neoplasia.

Positional Cloning of Novel Genes in Zebrafish Developmental Mutants

  • Kim, Cheol-Hee
    • 한국발생생물학회:학술대회논문집
    • /
    • 한국발생생물학회 2003년도 제3회 국제심포지움 및 학술대회
    • /
    • pp.24-25
    • /
    • 2003
  • The zebrafish (Danio rerio) is now the pre-eminent vertebrate model system for clarification of the roles of specific genes and signaling pathways in development. I will talk about positional cloning of two developmental mutants in zebrafish. The first mutant is headless: The vertebrate organizer can induce a complete body axis when transplanted to the ventral side of a host embryo by virtue of its distinct head and trunk inducing properties. Wingless/Wntantagonists secreted by the organizer have been identified as head inducers. Their ectopic expression can promote head formation, whereas ectopic activation of Wnt signalling during early gastrulation blocks head formation. These observations suggest that the ability of head inducers to inhibit Wntsignalling during formation of anterior structures is what distinguishes them from trunk inducers that permit the operation of posteriorizing Wnt signals. I describe the zebrafish headless (hdl) mutant and show that its severe head defects are due to a mutation in T-cell factor-3 (Tcf3), a member of the Tcf/Lef family. Loss of Tcf3 function in the hdl mutant reveals that hdl represses Wnt target genes. I provide genetic evidence that a component of the Wntsignalling pathway is essential in vertebrate head formation and patterning. Second mutant is mind bomb: Lateral inhibition, mediated by Notch signaling, leads to the selection of cells that are permitted to become neurons within domains defined by proneuralgene expression. Reduced lateral inhibition in zebrafish mib mutant embryos permits too many neural progenitors to differentiate as neurons. Positional cloning of mib revealed that it is a gene in the Notch pathway that encodes a RING ubiquitin ligase. Mib interacts with the intracellular domain of Delta to promote its ubiquitylation and internalization. Cell transplantation studies suggest that mib function is essential in the signaling cell for efficient activation of Notch in neighboring cells. (중략)

  • PDF