• 제목/요약/키워드: Chromosome duplication

검색결과 42건 처리시간 0.031초

First Korean Case of 16p11.2 Duplication Syndrome Diagnosed by Chromosomal Microarray Analysis

  • Shim, Ye Jee;Park, So Yun;Jung, Nani;Kang, Seok Jin;Kim, Heung Sik;Ha, Jung-Sook
    • Journal of Interdisciplinary Genomics
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    • 제1권1호
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    • pp.10-13
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    • 2019
  • A 10-year and 5 month-old girl with developmental delay, intellectual disability, attention deficit hyperactivity disorder, poor weight gain, and microcephaly was transferred to our pediatric clinic for genetic evaluation. Her height was within the 5-10th percentile, and her weight was under the 3rd percentile. On the social maturity scale, her developmental status was scored as 3 years 9 months for social age, and the social quotient was 35.98. A chromosomal microarray analysis was performed and the microduplication at chromosome 16p was observed: arr[GRCh37] 16p11.2 (29580020_30190029)${\times}3$. Currently, the patient is diagnosed with Grade 2 intellectual disability and is attending a computerized cognitive rehabilitation class twice weekly. In addition, nutritional support and growth follow up are also ensured in the Pediatric Gastrointestinal and Endocrinology clinic.

메틸화 특이 PCR로 진단된 거설증을 동반한 일과성 신생아 당뇨병 (Transient neonatal diabetes mellitus with macroglossia diagnosed by methylation specific PCR (MS-PCR))

  • 진혜영;최진호;김구환;유한욱
    • Clinical and Experimental Pediatrics
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    • 제53권3호
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    • pp.432-436
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    • 2010
  • 일과성 신생아 당뇨병은 6번 염색체의 부친 이체성, 부친으로부터 유래한 염색체 6q24의 중복, ZAC 또는 HYMAI 유전자의 CpG 섬의 메틸화 결함에 의해 야기된다. 저자들은 고혈당, 거설증, 자궁내성장지연으로 발현되어 부친으로부터 유래된 HYMA1 유전자만을 보인 일과성 신생아 당뇨병 1례를 경험하였다. 생후 18일된 여아가 거설증과 반복되는 고혈당으로 입원하였다. 거설증과 함께 큰 대천문, 작은 턱, 두드러진 눈을 보였으며 혈중 포도당 농도는 200-300 mg/dL로 유지되다가 입원 2일 후부터 인슐린 투여 없이도 정상 범위로 유지되었다. 모체로부터 유래된 메틸화된 대립유전자 유무를 확인하기 위하여 말초 혈액으로부터 genomic DNA를 추출하여 bisulfite를 처리한 후, 메틸화 특이 중합 효소 연쇄 반응으로 HYMAI 유전자의 일부분을 증폭시키고, 제한 효소 BssHII를 이용한 제한 효소 절편 길이 다형성 (restriction fragment length polymorphism, RFLP) 분석을 이용하여 HYMAI 유전자의 메틸화 여부를 확인한 결과, HYMAI 유전자의 메틸화 결함을 보여 부친에서 유래된 HYMAI 유전자만을 갖고 있음을 확인하였다. HYMAI 유전자의 메틸화 검사를 통해 6번 염색체의 각인된 유전자가 증명되었으며 메틸화 결함으로 인해 일과성 신생아 당뇨병이 발생하였다.

Identification of Genetic Causes of Inherited Peripheral Neuropathies by Targeted Gene Panel Sequencing

  • Nam, Soo Hyun;Hong, Young Bin;Hyun, Young Se;Nam, Da Eun;Kwak, Geon;Hwang, Sun Hee;Choi, Byung-Ok;Chung, Ki Wha
    • Molecules and Cells
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    • 제39권5호
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    • pp.382-388
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    • 2016
  • Inherited peripheral neuropathies (IPN), which are a group of clinically and genetically heterogeneous peripheral nerve disorders including Charcot-Marie-Tooth disease (CMT), exhibit progressive degeneration of muscles in the extremities and loss of sensory function. Over 70 genes have been reported as genetic causatives and the number is still growing. We prepared a targeted gene panel for IPN diagnosis based on next generation sequencing (NGS). The gene panel was designed to detect mutations in 73 genes reported to be genetic causes of IPN or related peripheral neuropathies, and to detect duplication of the chromosome 17p12 region, the major genetic cause of CMT1A. We applied the gene panel to 115 samples from 63 non-CMT1A families, and isolated 15 pathogenic or likelypathogenic mutations in eight genes from 25 patients (17 families). Of them, eight mutations were unreported variants. Of particular interest, this study revealed several very rare mutations in the SPTLC2, DCTN1, and MARS genes. In addition, the effectiveness of the detection of CMT1A was confirmed by comparing five 17p12-nonduplicated controls and 15 CMT1A cases. In conclusion, we developed a gene panel for one step genetic diagnosis of IPN. It seems that its time- and cost-effectiveness are superior to previous tiered-genetic diagnosis algorithms, and it could be applied as a genetic diagnostic system for inherited peripheral neuropathies.

Molecular Data Concerning Alloploid Character and the Origin of Chloroplast and Mitochondrial Genomes in the Liverwort Species Pellia borealis

  • Pacak, Andrezej
    • Journal of Plant Biotechnology
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    • 제2권2호
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    • pp.101-108
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    • 2000
  • The liverwort Pellia borealis is a diploid, monoecious, allopolypliod species (n=18) that as it was postulated, originated after hybridization and duplication of chromosome sets of two cryptic species: Pellia epiphylta-species N (n=9) and Pellia epiphylla-species 5 (n=9). Our recent results have supported the allopolyploid origin of P.borealis. We have shown that the nuclear genome of P.borealis consists of two nuclear genomes: one derived from P.epiphylla-species N and the other from P.epiphylla-species 5. In this paper we show the origin of chloroplast and mitochondrial genomes in an allopolyploid species P.borealis. To our knowledge there is no information concerning the way of mitochondria and chloroplast inheritance in Brophyta. Using an allopolyploid species of p. borealis as a model species we have decided to look into chloroplast and mitochondrial genomes of P.borealis, P.epiphylla-species N and P.epiphylla-species S for nucleotide sequences that would allow us to differentiate between both cryptic species and to identify the origin of organelle genomes in the alloploid species. We have amplified and sequenced a chloroplast $tRNA^{Leu}$ gene (anticodon UAA) containing an intron that has shown to be highly variable in a nucleotide sequence and used for plant population genetics. Unfortunately these sequences were identical in all three liverwort species tested. The analysis of the nucleotide sequence of chloroplast, an intron containing $tRNA^{Gly}$ (anticodon UCC) genes, gave expected results: the intron nucleotide sequence was identical in the case of both P.borealis and P.epiphyllaspecies N, while the sequence obtained from P.epiphyllasperies S was different in several nucleotide positions. These results were confirmed by the nucleotide sequence of another chloroplast molecular marker the chloroplast, an intron-contaning $tRNA^{Lys}$ gene (anticodon UUU). We have also sequenced mitochondrial, an intron-containing $tRNA^{Ser}$ gene (anticodon GCU) in all three liverwort species. In this case we found that, as in the case of the chloroplast genome, P.borealis mitochondrial genome was inherited from P.epiphylla-species N. On the basis of our results we claim that both organelle genomes of P.borealis derived from P.epiphylla-species N.

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Comparative Genome Analysis Reveals Natural Variations in the Genomes of Erwinia pyrifoliae, a Black Shoot Blight Pathogen in Apple and Pear

  • Lee, Gyu Min;Ko, Seyoung;Oh, Eom-Ji;Song, Yu-Rim;Kim, Donghyuk;Oh, Chang-Sik
    • The Plant Pathology Journal
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    • 제36권5호
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    • pp.428-439
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    • 2020
  • Erwinia pyrifoliae is a Gram-negative bacterial plant pathogen that causes black shoot blight in apple and pear. Although earlier studies reported the genome comparison of Erwinia species, E. pyrifoliae strains for such analysis were isolated in 1996. In 2014, the strain E. pyrifoliae EpK1/15 was newly isolated in the apple tree showing black shoot blight in South Korea. This study aimed to better understand the similarities and differences caused by natural variations at the genomic level between newly isolated E. pyrifoliae EpK1/15 and the strain Ep1/96, which were isolated almost 20 years apart. Several comparative genomic analyses were conducted, and Clusters of Orthologous Groups of proteins (COG) database was used to classify functional annotation for each strain. E. pyrifoliae EpK1/15 had similarities with the Ep1/96 strain in stress-related genes, Tn3 transposase of insertion sequences, type III secretion systems, and small RNAs. The most remarkable difference to emerge from this comparison was that although the draft genome of E. pyrifoliae EpK1/15 was almost conserved, Epk1/15 strain had at least three sorts of structural variations in functional annotation according to COG database; chromosome inversion, translocation, and duplication. These results indicate that E. pyrifoliae species has gone natural variations within almost 20 years at the genomic level, and we can trace their similarities and differences with comparative genomic analysis.

In silico genome wide identification and expression analysis of the WUSCHEL-related homeobox gene family in Medicago sativa

  • Yang, Tianhui;Gao, Ting;Wang, Chuang;Wang, Xiaochun;Chen, Caijin;Tian, Mei;Yang, Weidi
    • Genomics & Informatics
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    • 제20권2호
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    • pp.19.1-19.15
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    • 2022
  • Alfalfa (Medicago sativa) is an important food and feed crop which rich in mineral sources. The WUSCHEL-related homeobox (WOX) gene family plays important roles in plant development and identification of putative gene families, their structure, and potential functions is a primary step for not only understanding the genetic mechanisms behind various biological process but also for genetic improvement. A variety of computational tools, including MAFFT, HMMER, hidden Markov models, Pfam, SMART, MEGA, ProtTest, BLASTn, and BRAD, among others, were used. We identified 34 MsWOX genes based on a systematic analysis of the alfalfa plant genome spread in eight chromosomes. This is an expansion of the gene family which we attribute to observed chromosomal duplications. Sequence alignment analysis revealed 61 conserved proteins containing a homeodomain. Phylogenetic study sung reveal five evolutionary clades with 15 motif distributions. Gene structure analysis reveals various exon, intron, and untranslated structures which are consistent in genes from similar clades. Functional analysis prediction of promoter regions reveals various transcription binding sites containing key growth, development, and stress-responsive transcription factor families such as MYB, ERF, AP2, and NAC which are spread across the genes. Most of the genes are predicted to be in the nucleus. Also, there are duplication events in some genes which explain the expansion of the family. The present research provides a clue on the potential roles of MsWOX family genes that will be useful for further understanding their functional roles in alfalfa plants.

The first Korean case of a newborn with 3p26 microdeletion and 5q35 microduplication inherited from paternal balanced translocation

  • Jang, Jin A;Sohn, Young Bae;Lee, Jang Hoon;Park, Moon Sung
    • Journal of Genetic Medicine
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    • 제18권1호
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    • pp.48-54
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    • 2021
  • Genetic imbalances are a major cause of congenital and developmental abnormalities. We report the first case of a 3p26 microdeletion and 5q35.2q35.3 microduplication in a newborn with multiple congenital anomalies evaluated using chromosomal microarray analysis (CMA) and fluorescence in situ hybridization (FISH). The patient was born at 30 weeks and 2 days of gestation with a body weight of 890 g. He had symmetric intrauterine growth restriction, microcephaly, facial dysmorphism (hypertelorism, blepharophimosis, mild low-set ears, high-arched palate, and micrognathia), and right thumb polydactyly. Echocardiography revealed an atrial septal defect and patent ductus arteriosus. Furthermore, CMA revealed a concurrent microdeletion in 3p26 and a microduplication in 5q35.2q35.3. FISH analysis showed that these genetic changes resulted from a translocation mutation between chromosomes 3 and 5. The patient's mother had mild intellectual disability, short stature, and facial dysmorphism, while his father had a normal phenotype. However, parental FISH analysis revealed that the asymptomatic father carried a balanced translocation of chromosomes 3p26 and 5q35. CMA and FISH tests are useful for diagnosing neonates with multiple congenital abnormalities. Further parental genetic investigation and proper genetic counseling are necessary in cases of chromosomal abnormalities inherited from parental balanced translocations.

염색체 마이크로어레이를 이용한 표지염색체의 분자세포유전학적 특성 (Molecular Cytogenetic Characterization of Supernumerary Marker Chromosomes by Chromosomal Microarray)

  • 배미현;유한욱;이진옥;홍마리아;서을주
    • Journal of Genetic Medicine
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    • 제8권2호
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    • pp.119-124
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    • 2011
  • 목적: 표지염색체(supernumerary marker chromosome, SMC)는 유래한 염색체에 따라서 임상 증상이 다양하다. 본 연구는 염색체 마이크로어레이를 이용하여 SMC의 기원을 밝히고 각 증례마다 분자세포유전학적 특성과 임상 표현형을 분석하고자 하였다. 대상 및 방법: 염색체 검사에서 SMC가 검출된 환자들 중에서 15번 염색체 유래를 제외한 4명의 환자에서 CGH 기법의 올리고 뉴클레오티드 염색체 마이크로어레이를 시행하였다. 결과: 3명의 환자에서 유래된 염색체 부위를 확인할 수 있었다. 증례1은 1q21.1-q23.3에서 16.1 Mb의 SMC를 가졌고, 증례2는 19p13.11-q13.12에서 21 Mb, 증례3은 22q11.1-q11.21과 22q11.22-q11.23의 두 구간에서 각각 2.5Mb와 2.0Mb로 재배열된 4.5 Mb의 SMC를 나타내었다. 결론: 증례1은 1q21.1 중복증후군을 포함하여 광범위한 임상표 현형을 나타내었다. 증례2는 아스퍼거 증후군과 유사한 정신행동 이상 소견은 19p12-q13.11, 청력장애와 사시는 19p13.11, 그 외 증상은 19q13.12의 유전자와 연관 가능성이 높다. 증례3은 묘안 증후군 type I 및 22q11.2 미세중복증후군과 비교했을 때 항문폐쇄는 22q11.1-q11.21, 그 외 증상들은 22q11.22-q11.23과 연관성을 시사하였다. 고해상도 염색체 마이크로어레이 분석은 SMC의 유래를 확인할 수 있고 유전형-표현형 상관성을 이해함으로써 유전상담에 도움이 된다.

Genomic DNA Chip: Genome-wide profiling in Cancer

  • 이종호
    • 한국생물정보학회:학술대회논문집
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    • 한국생물정보시스템생물학회 2001년도 제2회 생물정보 워크샵 (DNA Chip Bioinformatics)
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    • pp.61-86
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    • 2001
  • All cancers are caused by abnormalities in DNA sequence. Throughout life, the DNA in human cells is exposed to mutagens and suffers mistakes in replication, resulting in progressive, subtle changes in the DNA sequence in each cell. Since the development of conventional and molecular cytogenetic methods to the analysis of chromosomal aberrations in cancers, more than 1,800 recurring chromosomal breakpoints have been identified. These breakpoints and regions of nonrandom copy number changes typically point to the location of genes involved in cancer initiation and progression. With the introduction of molecular cytogenetic methodologies based on fluorescence in situ hybridization (FISH), namely, comparative genomic hybridization (CGH) and multicolor FISH (m-FISH) in carcinomas become susceptible to analysis. Conventional CGH has been widely applied for the detection of genomic imbalances in tumor cells, and used normal metaphase chromosomes as targets for the mapping of copy number changes. However, this limits the mapping of such imbalances to the resolution limit of metaphase chromosomes (usually 10 to 20 Mb). Efforts to increase this resolution have led to the "new"concept of genomic DNA chip (1 to 2 Mb), whereby the chromosomal target is replaced with cloned DNA immobilized on such as glass slides. The resulting resolution then depends on the size of the immobilized DNA fragments. We have completed the first draft of its Korean Genome Project. The project proceeded by end sequencing inserts from a library of 96,768 bacterial artificial chromosomes (BACs) containing genomic DNA fragments from Korean ethnicity. The sequenced BAC ends were then compared to the Human Genome Project′s publicly available sequence database and aligned according to known cancer gene sequences. These BAC clones were biotinylated by nick translation, hybridized to cytogenetic preparations of metaphase cells, and detected with fluorescein-conjugated avidin. Only locations of unique or low-copy Portions of the clone are identified, because high-copy interspersed repetitive sequences in the probe were suppressed by the addition of unlabelled Cotl DNA. Banding patterns were produced using DAPI. By this means, every BAC fragment has been matched to its appropriate chromosomal location. We have placed 86 (156 BAC clones) cytogenetically defined landmarks to help with the characterization of known cancer genes. Microarray techniques would be applied in CGH by replacement of metaphase chromosome to arrayed BAC confirming in oncogene and tumor suppressor gene: and an array BAC clones from the collection is used to perform a genome-wide scan for segmental aneuploidy by array-CGH. Therefore, the genomic DNA chip (arrayed BAC) will be undoubtedly provide accurate diagnosis of deletions, duplication, insertions and rearrangements of genomic material related to various human phenotypes, including neoplasias. And our tumor markers based on genetic abnormalities of cancer would be identified and contribute to the screening of the stage of cancers and/or hereditary diseases

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인간 게놈의 Copy Number Variation과 유전자 질환 (UNDERSTANDING OF EPIGENETICS AND DNA METHYLATION)

  • 오정환
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제30권2호
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    • pp.205-212
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    • 2008
  • 인간 게놈의 DNA서열의 차이는 개개인의 특이성을 의미하기 때문에 염기서열의 변화는 질병에 대한 감수성, 약물에 대한 반응 등 개인의 성향에 큰 영향을 미치게 된다. 인간 게놈에는 여러 가지 형태의 유전적 변이가 존재하지만 그 중 단일염기다형성이 인간의 유전적, 표현형의 다양성을 설명하는 주된 유전적 변이로 생각되었으나 최근 유전체 전체 분석법의 발전으로 1 kb 이상 크기의 CNV의 발견으로 개체간의 유전적 다양성에 대한 더 많은 이해가 가능하게 되었고, 진화와 유전 질환에 대한 CNV의 역할을 조사하는 연구의 기초를 제공하게 되었다. 현재 인간게놈의 CNV를 찾아내고 특성화 작업을 목표로 하는 The Copy Number Variation Project를 위해 The Wellcome Trust Institute (Hinxton, United Kingdom), Hospital for Sick Children (Toronto), University of Tokyo (Tokyo), Affymetrix (Santa Clara, CA), 그리고 Harvard Medical School/Brigham and Women's Hospital (Boston, MA) 등이 참여하는 international consortium이 구성되어 보다 심도 있는 연구가 진행되고, 또한 향후 진보된 DNA microarray-based technology와 서열화 기술의 개발로 인간 게놈 상의 모든 유전적 변이를 발견하게 되고 포괄적인 CNV 지도를 완성하고 인간 유전자 다양성 인간의 진화, 유전적 질환 개인 맞춤형 의학에 대한 새로운 이해와 연구가 가능하게 될 것으로 기대된다.