IP Library Granted Patent US 40,929
Granted Patent E1
US 40,929 · App. 11/396,221 · Granted Oct 6, 2009

Chromosome-specific staining to detect genetic rearrangements associated with chromosome 3 and/or chromosome 17

Assignee: The Regents of the University of California
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Quick Facts
Patent No.
US 40,929
App. No.
11/396,221
Granted
Oct 6, 2009
Kind
E1
Abstract

Methods and compositions for staining based upon nucleic acid sequence that employ nudeic nucleic acid probes are provided. Said methods produce staining patterns that can be tailored for specific cytogenetic analyses. Said probes are appropriate for in situ hybridization and stain both interphase and metaphase chromosomal material with reliable signals. The nucleic acid probes are typically of a complexity greater than 50 kb, the complexity depending upon the cytogenetic application. Methods and reagents are provided for the detection of genetic rearrangements. Probes and test kits are provided for use in detecting genetic rearrangements, particularly for use in tumor cytogenetics, in the detection of disease related loci, specifically cancer, such as chronic myelogenous leukemia (CML), retinoblastoma, ovarian and uterine cancers, and for biological dosimetry. Methods and reagents are described for cytogenetic research, for the differentiation of cytogenetically similar but genetically different diseases, and for many prognostic and diagnostic applications.

Claims (4)

1. A method of staining targeted chromosomal material based upon nucleic acid segment employing a unique sequence high complexity nucleic acid probe of greater than about 50,000 bases, wherein said targeted chromosomal material is a genetic rearrangement associated with chromosome 3 and/or chromosome 17 in humans, said method comprising contacting said chromosomal material with a high complexity nucleic acid probe wherein at least one component of the high complexity nucleic acid probe is targeted to a paracentromeric-specific nucleic acid segment, allowing said probe to bind to said targeted chromosomal material and detecting said bound probe, wherein bound probe is indicative of the presence of target chromosomal material.

2. A method of staining targeted chromosomal material based upon nucleic acid segment employing a unique sequence high complexity nucleic acid probe of greater than about 40 kb, wherein said targeted chromosomal material is a genetic rearrangement associated with chromosome 3 and/or chromosome 17 in humans, said method comprising contacting said chromosomal material with a high complexity nucleic acid probe wherein at least one component of the high complexity nucleic acid probe is targeted to a paracentromeric-specific nucleic acid segment, allowing said probe to bind to said targeted chromosomal material and detecting said bound probe, wherein bound probe is indicative of the presence of target chromosomal material.

3. The method of claim 2 , wherein the target chromosomal material is interphase chromosomal material.

4. A method of staining targeted interphase chromosomal material based upon nucleic acid segment employing a unique sequence high complexity nucleic acid probe of greater than about 40 kilobases, wherein said targeted chromosomal material is a genetic rearrangement associated with chromosome 3 and/or chromosome 17 in humans, said method comprising contacting said chromosomal material with a high complexity nucleic acid probe wherein at least one component of the high complexity nucleic acid probe is targeted to a paracentromeric-specific nucleic acid segment, allowing said probe to bind to said targeted chromosomal material and detecting said bound probe, wherein bound probe is indicative of the presence of target chromosomal material.

Assignments (1)
CONFIRMATORY LICENSE Recorded Sep 16, 2020
From: UNIVERSITY OF CALIFORNIA SYS OFFICE/PRES
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 053797/0194 →
Continuity (11)
Reissue 0847838700 · Jun 7, 1995
Continuation 0831291400 · Sep 30, 1994
Continuation 0813774500 · Oct 19, 1993
Continuation 0801539000 · Feb 8, 1993
Continuation 0767024200 · Mar 15, 1991
Continuation In Part 0765997400 · Feb 22, 1991
Continuation In Part 0753730500 · Jun 12, 1990
Continuation In Part 0749709800 · Mar 20, 1990
Continuation In Part 0744466900 · Dec 1, 1989
Continuation In Part 0693779300 · Dec 4, 1986
Continuation In Part 0681931400 · Jan 16, 1986