IL94906A

Methods and compositions for chromosome-specific staining

Abstract

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IL94906A, drawing sheet 1
Sheet 1 of 36

Term

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51 claims: 3 independent, 48 dependent

  1. 1
    v CLAIM SET A WflAT WCIA1M IS:1. A method of staining targeted chromosomal material based upon nucleic acid sequence to detect one or more genetic rearrangements identified with chronic myelogenous leukemia (CML) comprising the steps of: (a) hybridizing in situ to a human genome high complexity nucleic acid probes which contain nucleic acid sequences which are substantially complementary to nucleic acid sequences that flank and/or extend partially or fully across breakpoint regions known to be associated with genetic rearrangements identified with CML;and (b) observing the staining pattern produced to determine if it is indicative of one or more genetic rearrangements identified with CML;and wherein said method is performed outside the human body.
  2. 2
    A method according to Claim 1 wherein the genetic rearrangement is selected from the group consisting of translocations, deletions, inversions, amplifications and insertions.
  3. 3
    A method according to Claim 2 wherein said nucleic acid probes are substantially complementary to nucleic acid sequences which flank and/or extend partially or fully across the translocation breakpoint regions of chromosomal regions 9q34 and 22qll associated with CML
  4. 4
    A method according to Claim 3 wherein said nucleic acid probes produce a staining pattern which is distinctively altered when the BCR’ABL fusion characteristic of CML occurs.
  5. 5
    A method according to Claim 3 wherein signals from said nucleic acid probes when hybridized to said nucleic acid sequences produce staining patterns as represented in Figure 11, sections b-e, inclusively. ־423 Claim Set A
  6. 6
    A method according to Claim 4 wherein the proximity of and/or other characteristics such as, color and/or order of the signals of said staining pattern indicate whether said BCR-ABL fusion is present.
  7. 7
    A method according to Claim 6 wherein the portion of the probe to the BCR region is labeled/visualized in one manner and the portion of the probe to the ABL region is labeled/visualized in another manner so that said two labelingMsuaUzation means appear substantially closer together in an interphase nucleus and/or metaphase chromosomal spread when the BCR-ABL fusion is present than in such chromosomal material when the BCR-ABL fusion is not present.
  8. 8
    A method according to Claim 5 wherein said nucleic probes have a complexity of from substantially 50 kilobases (kb) to substantially 1 megabase (Mb).
  9. 9
    A method according to Claim 8 wherein the complexity is from substantially 50 kb to substantially 750 kb.
  10. 10
    A method according to Claim 9 wherein the complexity is from substantially 200 kb to substantially 400 kb.
  11. 11
    A method of staining targeted chromosomal material according to Claim 1 wherein the nucleic acid probe sequences prior to hybridization to the targeted chromosomal material are broken into fragments of from substantially 200 bases to substantially 2000 bases.
  12. 12
    A method according to Claim 11 wherein the size of the fragments is substantially 1 kb. Claim Set A
  13. 13
    A method according to Claim 12 wherein the size of the fragments is from substantially 800 bases to substantially 1000 bases and, wherein the hybridization to performed at a temperature of substantially 30יC to substantially 45’C, and wherein the subsequent washing steps are performed at a temperature of from substantially 40 *C to substantially 50 ״C.
  14. 14
    A method according to Claim 13 wherein the hybridization to performed at a temperature of from substantially 35 *C to substantially 40 , C
  15. 15
    A method according to Claim 14 wherein the hybridization to performed at temperature of substantially 37’C, and the subsequent washing steps are performed at temperature of substantially 45' C.
  16. 16
    A method according to Claim 11 wherein the fragments are labeled/visualized for detection after hybridization by flow cytometry.
  17. 17
    A method according to Claim 11 wherein the fragments are labeled/visualized for detection by microscopy.
  18. 18
    A method according to Claim 17 wherein the microscopy to automated.
  19. 19
    Chromosome-specific staining reagent comprising a high complexity heterogeneous mixture of labeled nucleic acid fragments, wherein the nucleic acid sequences of the labeled nucleic acid fragments are complementary to sites on targeted chromosomal material which flank and/or extend partially or fully across breakpoint regions known to be associated with one or more genetic rearrangements Identified with chronic myelogenous leukemia (CML) and are substantially free of nucleic acid sequences having hybridization capacity to sites on non*targeted chromosomal material. Claim Set A
  20. 20
    A chromosome-specific staining reagent according to Claim 19 wherein the nucleic acid probe sequences are propagated in a cell line and/or in one or more vectors,
  21. 21
    A chromosome specific staining reagent according to Claim 19 wherein said cell line is a hybrid cell line and said one or more vectors is or are selected from the group consisting of yeast artificial chromosomes, plasmids, bacteriophages and cosmids.
  22. 22
    The chromosome-specific staining reagent of Claim 19 wherein said labeled nucleic acid fragments are single-stranded.
  23. 23
    The chromosome-specific staining reagent of Claim 19 wherein said nucleic add fragments are labeled with radioactive, enzymatic, immunoreactive, fluorochromes and/or affinity detectable reagents.
  24. 24
    The chromosome-specific staining reagent of Claim 23 wherein said fragments are biotinylated, modified with N«acetaxy-N’2-acetylaminofluorene, modified with fluorescein Isothiocyanate, modified with mercuiy/ΓΝΡ ligand, sulfonated, digoxigenenated, or contain T-T dimers.
  25. 25
    A chromosome-specific staining reagent that provides staining patterns indicative of one or more genetic rearrangements associated with chronic myelogenous leukemia (CML) produced by the process of:isolating chromosome*specific DNA which flank and/or extend across chromosomal regions wherein the BCR and ABL genes are located;amplifying pieces of the isolated chromosome-specific DNA;disabling the hybridization capacity of and/or removing shared repetitive sequences contained in the amplified pieces of the isolated DNA to form a collection of nucleic acid fragments which hybridize predominantly to φ Claim Set A targeted chromosomal DNA which flank and/or extend partially or fully across breakpoint regions known to be associated with one or more genetic rearrangements identified with CML,;and labeling the nucleic acid fragments of the collection to form a heterogeneous mixture of nucleic add fragments.
  26. 26
    A chromosome-specific staining reagent according to Claim 25 wherein said step of amplifying said pieces of isolated DNA is performed by cloning.
  27. 27
    A chromosome-specific staining reagent according to Claim 25 wherein said step of amplifying said pieces of isolated DNA is performed by using the polymerase chain reaction (PCR).
  28. 28
    The chromosome-specific staining reagent of Claim 25 wherein said step of removing said shared repetitive sequences comprises selecting amplified pieces of said isolated DNA which pieces are substantially free of nucleic add sequences which are complementary to non-targeted chromosomal material.
  29. 29
    The chromosome-specific staining reagent of Claim 28 wherein said selection of said amplified pieces comprises the use of Southern hybridization.
  30. 30
    The chromosome-specific staining reagent of Claim 29 wherein said selection of said amplified pieces comprises screening clones for the presence of repetitive sequences by hybridization with genomic DNA״ φ Claim Set A
  31. 31
    The chromosome-specific staining reagent of Claim 30 wherein said clones are plasmid clones.
  32. 32
    The chromosome-specific staining reagent of Claim 31 wherein said selection of said amplified pieces comprises screening said clones for hybridization to the targeted chromosomal material, and removing the clones which do not so hybridize.
  33. 33
    The chromosome-specific staining reagent of Claim 25 wherein said step of disabling said hybridization capacity comprises hybridizing said labeled pieces of said isolated DNA with unlabeled nucleic acid sequences.
  34. 34
    The chromosome-specific staining reagent of Claim 33 wherein said step of disabling said hybridization capacity comprises the addition of unlabeled blocking nucleic acid to the labeled nucleic acid probe prior to and/or during hybridization to the targeted chromosomal material.
  35. 35
    The chromosome-specific staining reagent of Claim 34 wherein the unlabeled blocking DNA is genomic.
  36. 36
    The chromosome-specific staining reagent of Claim 35 wherein the blocking nucleic add is a high-copy fraction of genomic DNA.
  37. 37
    The chromosome-specific staining reagent of Claim 34 wherein the unlabeled blocking DNA is from a selection of clones containing the highest copy sequences from a genome and/or additional clones as required to produce useful contrast. Λ Claim Set A
  38. 38
    The chromosomal-specific staining reagent of Claim 25 wherein said step of disabling said hybridization capacity of said shared repetitive sequences comprises self* reassociating the high complexity probe.
  39. 39
    The chromosome-specific staining reagent of Claim 25 wherein said step of removing the shared repetitive sequences comprises the use of hydroxyapatite chromatography.
  40. 40
    The chromosome-specific staining reagent of Claim 25 wherein said step of removing the shared repetitive sequences comprises reacting the amplified pieces of the isolated DNA with immobilized, single-stranded nucleic acid sequences which are complementary to said shared repetitive sequences.
  41. 41
    A method of staining targeted chromosomal material according to Claim 1 to produce staining patterns indicative of genetic rearrangements associated with CML wherein unlabeled high copy repetitive nucleic acid sequences or genomic DNA are hybridized to the targeted chromosomal material prior to or during the hybridization with the high complexity nucleic acid probe.
  42. 42
    A method of staining targeted chromosomal material with the chromosome-specific staining reagent of Claim 19 to produce staining patterns indicative of genetic rearrangements associated with CML, wherein the method comprises the steps of:providing a heterogeneous mixture of labeled nucleic acid fragments, wherein substantial portions of the labeled nucleic acid fragments In the heterogeneous mixture have base sequences, substantially complementary to the targeted chromosomal material which flank and/or extend partially or fully across breakpoint regions known to be associated with one or more genetic rearrangements identified with CML;φ Claim Set A reacting the heterogeneous mixture with the targeted chromosomal DNA by in situ hybridization;and observing and/or measuring the proximity of and/or other characteristics such as color or order of the signals of said staining patterns to determine whether a genetic rearrangement has occurred;and wherein said method is performed outside the human body.
  43. 43
    A chromosome-specific staining reagent according to Claim 27 wherein during said PCR process, sequences which are complementary to shared repetitive sequences, and which have extended non-complementary ends or which are terminated in nucleotides which do not permit extension by a polymerase, are hybridized to the shared repetitive sequences to inhibit amplification of such sequences.
  44. 44
    A method of staining targeted chromosomal material according to Claim 1 wherein the probes are not directly labeled and detection of the probes bound to the targeted chromosomal material is by means other than direct labeling.
  45. 45
    A method of staining targeted chromosomal material according to Claim 44 wherein the means of detecting the probes bound to the targeted chromosomal material comprise the use of anti-RNA/DNA duplex antibodies and/or anti-thymidine dimer antibodies.
  46. 46
    Test kits comprising the chromosome*speciflc staining reagent of Claim 19.
  47. 47
    A chromosome-specific staining reagent according to Claim 19 which is specific for the BCR-ABL fusion characteristic of CML. φ Claim Set A
  48. 48
    A method of staining targeted chromosomal material as defined in Claim 1 substantially as herein described with reference to any example thereof and/or the accompanying drawings.
  49. 49
    Chromosome-specific staining reagent as defined in Claim 19 substantially as herein described with reference to any example thereof and/or the accompanying drawings.
  50. 50
    A chromosome-specific staining reagent as defined in Claim 25 substantially as herein described with reference to any example thereof and/or the accompanying drawings.
  51. 51
    Test kits as claimed in Claim 46 substantially as herein described with reference to any example thereof and/or the accompanying drawings.
Independent claims51