Literature DB >> 8786090

High resolution multicolor fluorescence in situ hybridization using cyanine and fluorescein dyes: rapid chromosome identification by directly fluorescently labeled alphoid DNA probes.

Y B Yurov1, I V Soloviev, S G Vorsanova, B Marcais, G Roizes, R Lewis.   

Abstract

We tested DNA probes directly labeled by fluorescently labeled nucleotides (Cy3-dCTP, Cy5-dCTP, FluorX-dCTP) for high resolution uni- and multicolor detection of human chromosomes and analysis of centromeric DNA organization by in situ hybridization. Alpha-satellite DNA probes specific to chromosomes 1, 2, 3, 4 + 9, 5 + 19, 6, 7, 8, 10, 11, 13 + 21, 14 + 22, 15, 16, 17, 18, 20, 22, X and Y were suitable for the accurate identification of human chromosomes in metaphase and interphase cells. Cy3-labeled probes had several advantages: (1) a high level of fluorescence (5-10 times more compared with fluorescein-labeled probes); (2) a low level of fluorescence in solution, allowing the detection of target chromosomes in situ during hybridization without the washing of slides; and (3) high resistance to photobleaching during prolonged (1-2 h) exposure to strong light, thus allowing the use of a high energy mercury lamp or a long integration time during image acquisition in digital imaging microscopy for the determination of weak signals. For di- and multicolor fluorescence in situ hybridization (FISH), we successfully used different combinations of directly fluorophorated probes with preservation of images by conventional microscopy or by digital imaging microscopy. FluorX and Cy3 dyes allowed the use of cosmid probes for mapping in a one-step hybridization experiment. Cyanine-labeled fluorophorated DNA probes offer additional possibilities for rapid chromosome detection during a simple 15-min FISH procedure, and can be recommended for basic research and clinical studies, utilizing FISH.

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Year:  1996        PMID: 8786090     DOI: 10.1007/bf02185780

Source DB:  PubMed          Journal:  Hum Genet        ISSN: 0340-6717            Impact factor:   4.132


  31 in total

1.  Analysis of alphoid DNA variation and kinetochore size in human chromosome 21: evidence against pathological significance of alphoid satellite DNA diminutions.

Authors:  B Marzais; S G Vorsanova; G Roizes; Y B Yurov
Journal:  Tsitol Genet       Date:  1999 Jan-Feb

2.  Translocation t(1;17)(q12;q25) with a clinical picture like of a proximal deletion of 1q: identification by in situ hybridization with chromosome 1-specific satellite DNA probes.

Authors:  S G Vorsanova; Y B Yurov; M B Kurbatov; L Z Kazantzeva
Journal:  Hum Genet       Date:  1990-12       Impact factor: 4.132

3.  [Cloned fragment of human alphoid DNA--a molecular marker of the pericentromeric region of chromosome 18].

Authors:  I A Aleksandrov; Iu B Iurov; S P Mitkevich; V M Gindilis
Journal:  Genetika       Date:  1986-05

4.  18p- syndrome: an unusual case and diagnosis by in situ hybridization with chromosome 18-specific alphoid DNA sequence.

Authors:  S G Vorsanova; Y B Yurov; I A Alexandrov; I A Demidova; S P Mitkevich; A F Tirskaia
Journal:  Hum Genet       Date:  1986-02       Impact factor: 4.132

5.  The phylogeny of human chromosome specific alpha satellites.

Authors:  I A Alexandrov; S P Mitkevich; Y B Yurov
Journal:  Chromosoma       Date:  1988       Impact factor: 4.316

6.  Segment substitutions in alpha satellite DNA. Unusual structure of human chromosome 3-specific alpha satellite repeat unit.

Authors:  I A Alexandrov; T D Mashkova; L Y Romanova; Y B Yurov; L L Kisselev
Journal:  J Mol Biol       Date:  1993-05-20       Impact factor: 5.469

7.  Rapid identification of marker chromosomes by in situ hybridization under different stringency conditions.

Authors:  S G Vorsanova; Y B Yurov; I V Soloviev; I A Demidova; P Malet
Journal:  Anal Cell Pathol       Date:  1994-10       Impact factor: 2.916

8.  High resolution visual mapping of stretched DNA by fluorescent hybridization.

Authors:  I Parra; B Windle
Journal:  Nat Genet       Date:  1993-09       Impact factor: 38.330

9.  Instant PRINS: a rapid method for chromosome identification by detecting repeated sequences in situ.

Authors:  J Gosden; D Lawson
Journal:  Cytogenet Cell Genet       Date:  1995

10.  Prenatal diagnosis of trisomy 21 using interphase fluorescence in situ hybridization of post-replicated cells with site-specific cosmid and cosmid contig probes.

Authors:  I V Soloviev; Y B Yurov; S G Vorsanova; F Fayet; G Roizes; P Malet
Journal:  Prenat Diagn       Date:  1995-03       Impact factor: 3.050

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  14 in total

1.  Visualization of individual DNA loops and a map of loop domains in the human dystrophin gene.

Authors:  Olga V Iarovaia; Andrey Bystritskiy; Dmitrii Ravcheev; Ronald Hancock; Sergey V Razin
Journal:  Nucleic Acids Res       Date:  2004-04-15       Impact factor: 16.971

2.  Specific spatial organization of chromosomes in nuclei of primary human fibroblasts is maintained by nuclear matrix.

Authors:  N V Petrova; O V Yarovaya; S V Razin
Journal:  Dokl Biochem Biophys       Date:  2006 Jan-Feb       Impact factor: 0.788

3.  Human interphase chromosomes: a review of available molecular cytogenetic technologies.

Authors:  Svetlana G Vorsanova; Yuri B Yurov; Ivan Y Iourov
Journal:  Mol Cytogenet       Date:  2010-01-11       Impact factor: 2.009

4.  Unexplained autism is frequently associated with low-level mosaic aneuploidy.

Authors:  Y B Yurov; S G Vorsanova; I Y Iourov; I A Demidova; A K Beresheva; V S Kravetz; V V Monakhov; A D Kolotii; V Y Voinova-Ulas; N L Gorbachevskaya
Journal:  J Med Genet       Date:  2007-05-04       Impact factor: 6.318

5.  The utility of the DNA microarray scanner to simplify the immunofluorescence evaluation of autoimmune bullous diseases.

Authors:  Satori Iwamoto; Alex T Iwamoto; Jisun Cha; Todd Clark; Ming Lu; Catherine Breen; Jag Bhawan; Vincent Falanga
Journal:  Am J Dermatopathol       Date:  2009-05       Impact factor: 1.533

6.  Variability in the heterochromatin regions of the chromosomes and chromosomal anomalies in children with autism: identification of genetic markers of autistic spectrum disorders.

Authors:  S G Vorsanova; I Yu Yurov; I A Demidova; V Yu Voinova-Ulas; V S Kravets; I V Solov'ev; N L Gorbachevskaya; Yu B Yurov
Journal:  Neurosci Behav Physiol       Date:  2007-07

7.  Molecular karyotyping by array CGH in a Russian cohort of children with intellectual disability, autism, epilepsy and congenital anomalies.

Authors:  Ivan Y Iourov; Svetlana G Vorsanova; Oxana S Kurinnaia; Maria A Zelenova; Alexandra P Silvanovich; Yuri B Yurov
Journal:  Mol Cytogenet       Date:  2012-12-31       Impact factor: 2.009

8.  Molecular cytogenetic diagnosis and somatic genome variations.

Authors:  S G Vorsanova; Y B Yurov; I V Soloviev; I Y Iourov
Journal:  Curr Genomics       Date:  2010-09       Impact factor: 2.236

Review 9.  Fish-on-a-chip: a sensitive detection microfluidic system for Alzheimer's disease.

Authors:  Jasmine P Devadhasan; Sanghyo Kim; Jeongho An
Journal:  J Biomed Sci       Date:  2011-05-28       Impact factor: 8.410

10.  Molecular cytogenetics and cytogenomics of brain diseases.

Authors:  I Y Iourov; S G Vorsanova; Y B Yurov
Journal:  Curr Genomics       Date:  2008-11       Impact factor: 2.236

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