• 제목/요약/키워드: Chromosome aneuploidy

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How Chromosome Mis-Segregation Leads to Cancer: Lessons from BubR1 Mouse Models

  • Lee, Hyunsook
    • Molecules and Cells
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    • 제37권10호
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    • pp.713-718
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    • 2014
  • Alteration in chromosome numbers and structures instigate and foster massive genetic instability. As Boveri has seen a hundred years ago (Boveri, 1914; 2008), aneuploidy is hall-mark of many cancers. However, whether aneuploidy is the cause or the result of cancer is still at debate. The molecular mechanism behind aneuploidy includes the chromosome mis-segregation in mitosis by the compromise of spindle assembly checkpoint (SAC). SAC is an elaborate network of proteins, which monitor that all chromosomes are bipolarly attached with the spindles. Therefore, the weakening of the SAC is the major reason for chromosome number instability, while complete compromise of SAC results in detrimental death, exemplified in natural abortion in embryonic stage. Here, I will review on the recent progress on the understanding of chromosome missegregation and cancer, based on the comparison of different mouse models of BubR1, the core component of SAC.

FISH 기법을 이용한 방사선에 의한 소핵과 이수성 분석 (Analysis of radiation-induced micronuclei and aneuploidy involving chromosome 1 and 4 by FISH technique)

  • 정해원;김태연;조윤희;김수영;강창모;하성환
    • Journal of Radiation Protection and Research
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    • 제29권4호
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    • pp.243-249
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    • 2004
  • 본 연구는 소핵분석과 염색체 1번 및 4번의 DNA probe를 이용한 FISH 기법을 병행하여 방사선에 의한 소핵과 이수성에 관여하는 각 염색체의 감수성을 평가하고자 하였다. 방사선 선량에 따라 소핵의 빈도는 증가하였으며 염색체 1번과 4번의 이수성도 대조군, 1 Gy 및 2 Gy 에서 각각 2000개의 BN세포 당 9개, 47개 및 71개로 유의하게 증가하였다. 염색체 1번의 이수성 빈도는 4번에 비해 높게 관찰되었다. 염색체 1번 및 4번을 포함하는 소핵도 방사선의 선량에 따라 증가하였으며, 소핵내 염색체 1번의 포함빈도가 4번보다 높게 관찰되었다. 또한 방사선에 의한 소핵 중 낮은 빈도의 염색체 signal를 포함하는 소핵이 관찰됨으로써 방사선에 의한 소핵은 대부분 절단에 의한 것임을 확인할 수 있었다. 따라서 본 연구 결과 방사선은 이수성을 유도하며 이에 염색체가 다르게 관여할 수 있음을 보여준다.

벤젠 대사산물에 의해 유도된 HL-60 세포의 8번 및 21번 염색체의 이수성 및 상호전좌 (Detection of Benzene Metabolite Induced Aneuploidy and Translocation in HL-60 Cells by Fluorescence in situ Hybridization using Whole Chromosome-specific Probes for Chromosome 8 and 21)

  • 김수영;정해원
    • 한국환경성돌연변이발암원학회지
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    • 제22권2호
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    • pp.90-96
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    • 2002
  • Benzene is a widespread human carcinogen, inducing leukemia and hematotoxicity. Exposure to benzene metabolites has been shown to cause genetic damage, including aneusomy and chromosome aberrations. Fluorescence in situ hybridization(FISH) procedure was used to determine if the benzene metabolite, 1, 2, 4-benzenetriol(BT), hydroquinone(HQ) and trans, trans-muconic acid(t,t-MA) induced specific chromosomal change in HL-60 cells. Treatment with BT, HQ and t,t-MA resulted in the induction of monosomy 8 and 21 in HL-60 cells in a dose-dependent manner. All of these metabolites also induced trisomy 8 and 21, but no correlation between frequencies of trisomy and concentration was found. Translocations between chromosome 8 and another unidentified chromosome [t(8:\ulcorner)], and between chromosome 21 and another unidentified chromosome [t(8:21)] were found. However, translocation between chromosome 8 and 21 [t(8:21)] was not found. Results indicate that the benzene metabolites, BT, HQ and t,t-MA, induce chromosome specific numerical and structural aberrations, and the fluorescence in situ hybridization (FISH) approach may be a useful and powerful technique for detection of aneuploidy.

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유전질환 및 염색체 이상의 예방을 위한 착상전 유전진단의 결과 (Outcome of Preimplantation Genetic Diagnosis for Chromosome Aneuploidy and Genetic Disease)

  • 김진영;임천규;송인옥;유근재;양광문;한국선;허걸;송지홍;전진현;민동미;박소연;전종영;궁미경;강인수
    • Clinical and Experimental Reproductive Medicine
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    • 제29권4호
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    • pp.269-278
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    • 2002
  • Objective s: Chromosome aneuploidy is associated with recurrent abortion and congenital anomaly and genetic diseases occur repeatedly in the specific families. Preimplantation genetic diagnosis (PGD) can prevent aneuploidy or genetic disease by selecting normal embryos before implantation and is an alternative to prenatal diagnosis. The aim of this study is to assess the outcome of PGD cycles by using FISH or PCR, and to determine the clinical usefulness and values in patients with risk of chromosomal aneuploidy or genetic disease. Materials and Methods: From 1995 to Apr. 2001, a total of 108 PGD cycles in 65 patients with poor reproductive outcome were analyzed. The indications of PGD were translocation (n=49), inversion (n=2), aneuploidy screening (n=7), Duchenne muscular dystrophy (n=5) and spinal muscular atrophy (n=2). PGD was applied due to the history of recurrent abortion, previous birth of affected child or risk of aneuploidy related to sex chromosome aneuploidy or old age. Blastomere biopsy was performed in 6$\sim$10 cell stage embryo after IVF with ICSI. In the single blastomere, chromosome aneuploidy was diagnosed by using FISH and PCR was performed for the diagnosis of exon deletion in DMD or SMA. Results: The FISH or PCR amplification was successful in 94.3% of biopsied blastomeres. The rate of transferable balanced emb ryos was 24.0% in the chromosome translocation and inversion, 57.1% for the DMD and SMA, and 28.8% for the aneuploidy screening. Overall hCG positive rate per transfer was 17.8% (18/101) and clinical pregnancy rate was 13.9% (14/101) (11 term pregnancy, 3 abortion, and 4 biochemical pregnancy). The clinical pregnancy rate of translocation and inversion was 12.9% (11/85) and abortion rate was 27.3% (3/11). In the DMD and SMA, the clinical pregnancy rate was 33.3% (3/9) and all delivered at term. The PGD results were confirmed by amniocentesis and were correct. When the embryos developed to compaction or morula, the pregnancy rate was higher (32%) than that of the cases without compaction (7.2%, p<0.01). Conclusions: PGD by using FISH or PCR is useful to get n ormal pregnancy by reducing spontaneous abortion associated with chromosome aneuploidy in the patients with structural chromosome aberration or risk of aneuploidy and can prevent genetic disease prior to implantation.

Application of digital polymerase chain reaction technology for noninvasive prenatal test

  • Lee, Seung Yong;Hwang, Seung Yong
    • Journal of Genetic Medicine
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    • 제12권2호
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    • pp.72-78
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    • 2015
  • Recently, noninvasive prenatal test (NIPT) has been adopted as a primary screening tool for fetal chromosomal aneuploidy. The principle of NIPT lies in isolating the fetal fraction of cell-free DNA in maternal plasma and analyzing it with bioinformatic tools to measure the amount of gene from the target chromosome, such as chromosomes 21, 18, and 13. NIPT will contribute to decreasing the need for unnecessary invasive procedures, including amniocentesis and chorionic villi sampling, for confirming fetal aneuploidy because of its higher positive predictive value than that of the conventional prenatal screening method. However, its greater cost than that of the current antenatal screening protocol may be an obstacle to the adoption of this innovative technique in clinical practice. Digital polymerase chain reaction (dPCR) is a novel approach for detecting and quantifying nucleic acid. dPCR provides real-time diagnostic advantages with higher sensitivity, accuracy, and absolute quantification than conventional quantitative PCR. Since the groundbreaking discovery that fetal cell-free nucleic acid exists in maternal plasma was reported, dPCR has been used for the quantification of fetal DNA and for screening for fetal aneuploidy. It has been suggested that dPCR will decrease the cost by targeting specific sequences in the target chromosome, and dPCR-based noninvasive testing will facilitate progress toward the implementation of a noninvasive approach for screening for trisomy 21, 18, and 13. In this review, we highlight the principle of dPCR and discuss its future implications in clinical practice.

DNA 회복 저해제 Cytosine Arabinoside, 3-Aminobenzamide 및 Hydroxyurea가 방사선에 의해 유도된 소핵과 이수성에 미치는 영향 (Effect of Cytosine Arabinoside, 3-Aminobenzamide and Hydroxyurea on the frequencies of radiation-induced micronuclei and aneuploidy in human lymphocytes)

  • 조윤희;김양지;강창모;하성환;정해원
    • Journal of Radiation Protection and Research
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    • 제30권4호
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    • pp.209-219
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    • 2005
  • 소핵분석은 방사선의 생물학적 선량계로서 활용되고 있으나 이의 생성 기전은 아직까지 확실치 않다. 본 연구에서는 사람 림프구에 방사선을 조사한 후 DNA 손상회복 저해물질, Cytosine Arabinoside(Ara C)와 3-Aminobenzamide(3-AB) 그리고 Hydroxyurea(HU)를 특정 세포주기에 처리하고 소핵분석과 FISH기법을 이용하여 방사선에 의한 소핵 및 이수성의 정도를 구명하고자 하였다. 방사선 선량에 따라 소핵과 이수성의 빈도는 양반응 관계를 보이며 증가하였고 DNA 손상회복 저해물질 처리 후 소핵의 빈도는 모든 DNA 손상 회복 저해물질에 의해 증가하였으며 Ara C, 3AB, HU 순으로 나타났다. 이수성의 빈도는 HU와 Ara C에 의해서 크게 증가하였으나, 3AB는 아무런 영향을 주지 않았다. 또한 1번 염색체가 4번 염색체보다 방사선에 의한 소핵형성 및 이수성에 더 많이 관여되었다. 본 연구 결과, 방사선에 의한 소핵 및 이수성의 형성 과정은 여러 다른 기전이 관여하고 있음을 알 수 있었다.

Meiotic chromosome numbers of five Carex taxa in Korea (Cyperaceae)

  • CHUNG, Kyong-Sook;IM, Hyoung-Tak
    • 식물분류학회지
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    • 제48권3호
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    • pp.201-205
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    • 2018
  • Carex L. (Cyperaceae) is the largest angiosperm genus in the temperate zones with more than 2,000 species worldwide. Unusual chromosome structures, called holocentric chromosomes, have been postulated to contribute to species diversity in the genus. In Korea, this genus has the greatest number of species, but chromosome information as it pertains to the taxa is mostly unknown. Here, we report meiotic chromosome numbers of five Carex taxa in Korea. The following observations are made: Carex jaluensis Kom. ($n=27_{II}$, $28_{II}$, $29_{II}$, $30_{II}$), C. japonica Thunb. ($n=28_{II}$, $29_{II}$), C. planiculmis Kom. ($n=30_{II}$), C. miyabei Franch. ($n=33_{II}$, $36_{II}$), C. neurocarpa Maxim. ($n=51_{II}$, $53_{II}$, $54_{II}$). Except for C. planiculmis, all of the species exhibit variations in chromosome numbers within individuals and/or taxa. The findings with regard to chromosome number diversity in Carex suggest that chromosome number variation (aneuploidy, agmatoploidy and/or symploidy) plays an important role in the richness of the species in the genus. Further cytological investigations are needed for a better understanding of sedge diversity in Korean flora.

Validation of fetus aneuploidy in 221 Korean clinical samples using noninvasive chromosome examination: Clinical laboratory improvement amendments-certified noninvasive prenatal test

  • Kim, Min-Jeong;Kwon, Chang Hyuk;Kim, Dong-In;Im, Hee Su;Park, Sungil;Kim, Ji Ho;Bae, Jin-Sik;Lee, Myunghee;Lee, Min Seob
    • Journal of Genetic Medicine
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    • 제12권2호
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    • pp.79-84
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    • 2015
  • Purpose: We developed and validated a fetal trisomy detection method for use as a noninvasive prenatal test (NIPT) including a Clinical Laboratory Improvement Amendments (CLIA)-certified bioinformatics pipeline on a cloud-based computing system using both Illumina and Life Technology sequencing platforms for 221 Korean clinical samples. We determined the necessary proportions of the fetal fraction in the cell-free DNA (cfDNA) sample for NIPT of trisomies 13, 18, and 21 through a limit of quantification (LOQ) test. Materials and Methods: Next-generation sequencing libraries from 221 clinical samples and three positive controls were generated using Illumina and Life Technology chemistries. Sequencing results were uploaded to a cloud and mapped on the human reference genome (GRCh37/hg19) using bioinformatics tools. Based on Z-scores calculated by normalization of the mapped read counts, final aneuploidy reports were automatically generated for fetal aneuploidy determination. Results: We identified in total 29 aneuploid samples, and additional analytical methods performed to confirm the results showed that one of these was a false-positive. The LOQ test showed that the proportion of fetal fraction in the cfDNA sample would affect the interpretation of the aneuploidy results. Conclusion: Noninvasive chromosome examination (NICE), a CLIA-certified NIPT with a cloud-based bioinformatics platform, showed unambiguous success in fetus aneuploidy detection.

Karyomorphological Studies on the Genus Spirogyra Link (Conjugales, Chlorophyta) from Korea

  • Kim, Jee-Hwan;Chaudhary, B.R.;Kim, Young-Hwan;Lee, In-Kyu
    • 생태와환경
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    • 제42권2호
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    • pp.192-199
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    • 2009
  • Freshwater green algae are one of the important sources of bioenergy in the future. Spirogyra is a conjugating filamentous zygnematacean green algal genus that is widely distributed worldwide with more than 400 species. Despite its widespread occurrence throughout the world, cytological studies of the genus have been limited. We investigated karyological features and chromosome numbers for seven Korean Spirogyra species. Most of the species examined in the present study showed significant karyological features, inner organization of nucleolus, heavily stainable nucleolar substance and the diffuse-centric nature of chromosomes, typical of the Conjugales. Chromosome number ranged from n=12 in S. varians to n=38 in S. africana. Aberrant cytokinesis resulted in binucleate and tetranucleate cells, which sometimes provide cytological explanation for different morphology and ploidal changes in clonal culture of Spirogyra or even different cells within the same filament. The present chromosome data also substantiates the earlier held assumption that aneuploidy must have been the chief driving force for speciation and evolution of the genus Spirogyra.

클라인펠터 증후군 환자에서 착상전 유전진단의 결과 (Outcome of Preimplantation Genetic Diagnosis in Patients with Klinefelter Syndrome)

  • 김진영;임천규;전진현;박소연;서주태;차선화;궁미경;강인수
    • Clinical and Experimental Reproductive Medicine
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    • 제31권4호
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    • pp.253-260
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    • 2004
  • Objectives: Klinefelter syndrome is the most common genetic cause of male infertility and presents with 47, XXY mainly or 46, XX/47, XXY mosaicism. It is characterized by hypogonadism and azoospermia due to testicular failure, however, sporadic cases of natural pregnancies have been reported. With the development of testicular sperm extraction (TESE) and intracytoplasmic sperm injection (ICSI), sperm can be retrieved successfully and ART is applied in these patients for pregnancy. It has been suggested that the risk of chromosome aneuploidy for both sex chromosome and autosome is increased in the sperms from 47, XXY germ cells. Considering the risk for chromosomal aneuploidy in the offspring, preimplantation genetic diagnosis (PGD) could be applied as a safe and more effective treatment option in Klinefelter syndrome. The aim of this study is to assess the outcome of PGD cycles by using FISH for sex chromosome and autosome in patients with Klinefelter syndrome. Materials and Methods: From Jan. 2001 to Dec. 2003, PGD was attempted in 8 cases of Klinefelter syndrome but TESE was failed to retrieve sperm in the 3 cases, therefore PGD was performed in 8 cycles of 5 cases (four 47, XXY and one 46, XY/47, XXY mosaicism). In one case, ejaculated sperm was used and in 4 cases, TESE sperm was used for ICSI. After fertilization, blastomere biopsy was performed in $6{\sim}7$ cell stage embryo and the chromosome aneuploidy was diagnosed by using FISH with CEP probes for chromosome X, Y and 17 or 18. Results: A total of 127 oocytes were retrieved and ICSI was performed in 113 mature oocytes. The fertilization rate was $65.3{\pm}6.0%$ (mean$\pm$SEM) and 76 embryos were obtained. Blastomere biopsy was performed in 61 developing embryos and FISH analysis was successful in 95.1% of the biopsied blastomeres (58/61). The rate of balanced embryos for chromosome X, Y and 17 or 18 was $39.7{\pm}6.9%$. The rate of aneuploidy for sex chromosome (X and Y) was $45.9{\pm}5.3%$ and $43.2{\pm}5.8%$ for chromosome 17 or 18, respectively. Embryo transfer was performed in all 8 cycles and mean number of transferred embryos was $2.5{\pm}0.5$. In 2 cases, clinical pregnancies were obtained and normal 46, XX and 46, XY karyotypes were confirmed by amniocentesis, respectively. Healthy male and female babies were delivered uneventfully at term. Conclusion: The patients with Klinefelter syndrome can benefit from ART with TESE and ICSI. Considering the risk of aneuploidy for both sex chromosome and autosome in the sperms and embryos of Klinefelter syndrome, PGD could be offered as safe and more effective treatment option.