Claims
- 1. A process of producing at least one control for use in a gene expression analysis system comprising:
selecting at least one inter- or intragenic region of genomic DNA from a known sequence; designing primer pairs for said at least one inter- or intragenic region; amplifying said at least one inter- or intragenic region of genomic DNA to generate corresponding double stranded DNA; cloning said double stranded control DNA using a vector to obtain additional double stranded DNA; and formulating at least one control comprising said double stranded DNA.
- 2. The process of claim 1, further comprising:
testing said at least one inter- or intragenic region to ensure lack of hybridization with mRNA from sources other than said at least one inter- or intragenic region of genomic DNA.
- 3. The process of claim 1, further comprising:
generating mRNA complementary to said double stranded control DNA; and formulating at least one control comprising said mRNA.
- 4. The process of claim 3, further comprising:
purifying said DNA a nd mRNA; determining the concentrations thereof; and formulating at least one control comprising said DNA or said mRNA at selected concentrations and ratios.
- 5. A control for use in a gene expression analysis system comprising:
a known amount of at least one DNA generated from at least one non-transcribed region of genomic DNA from a known sequence; or a known amount of at least one mRNA generated from DNA generated from at least one inter- or intragenic region of genomic DNA from a known sequence.
- 6. The control of claim 5 wherein, said DNA and mRNA do not hybridize with any DNA or mRNA from a source other than said at least one inter- or intragenic region of genomic DNA.
- 7. A method of using a control as a negative control in a gene expression analysis system comprising:
adding a known amount of said control DNA of claim 5, to a gene expression analysis system as a control sample; subjecting the sample to hybridization conditions in the absence of complementary labeled mRNA; examining the control sample for the absence or presence of signal.
- 8. A method of using controls in a gene expression analysis system comprising:
adding a known amount of said control DNA of claim 5, to a gene expression analysis system as a control sample; subjecting the sample to hybridization conditions in the presence of a known amount of labeled complementary mRNA of claim 5;measuring the signal values for the labeled mRNA and determining the expression level of the DNA based on the measured signal value.
- 9. A method of using controls as calibrators in a gene expression analysis system comprising:
adding a known amount of a said control containing known amounts of several DNAs of claim 5, to a gene expression analysis system as control samples; subjecting the samples to hybridization conditions in the presence of a said control containing known amounts of corresponding complementary labeled mRNAs of claim 5, each mRNA being at a different concentration; measuring the signal values for the labeled mRNAs and constructing a dose-response or calibration curve based on the relationship between signal value and concentration of each mRNA.
- 10. A method of using controls as calibrators for gene expression ratios in a two-color gene expression analysis system comprising:
adding a known amount of at least one of said controls containing a known amount of DNA of claim 5, to a two-color gene expression analysis system as control samples; subjecting the samples to hybridization conditions in the presence of a said control containing known amounts of two differently labeled corresponding complementary labeled mRNAs of claim 5, for each DNA sample present; measuring the ratio of the signal values for the two differently labeled mRNAs and comparing the signal ratio to the ratio of concentrations of the two or more differently labeled mRNAs.
- 11. The control of claim 5 wherein
(a) said at least one DNA is selected from the group consisting of
(i) SEQ ID Nos: 1-10; (ii) a degenerate variant of the sequence set forth in (i); and (iii) a complement of the sequence set forth in (i) and (ii); or (b) said at least one mRNA is transcribed from the group consisting of
(i) SEQ ID Nos: 11-20; (ii) a degenerate variant of the sequence set forth in (i); and (iii) a complement of the sequence set forth in (i) and (ii); or
- 12. A method of using a control as a negative control in a gene expression analysis system comprising:
adding a known amount of said control DNA of claim 11, to a gene expression analysis system as a control sample; subjecting the sample to hybridization conditions in the absence of complementary labeled mRNA; examining the control sample for the absence or presence of signal.
- 13. A method of using controls in a gene expression analysis system comprising:
adding a known amount of said control DNA of claim 11, to a gene expression analysis system as a control sample; subjecting the sample to hybridization conditions in the presence of a known amount of labeled complementary mRNA of claim 11;measuring the signal values for the labeled mRNA and determining the expression level of the DNA based on the measured signal value.
- 14. A method of using controls as calibrators in a gene expression analysis system comprising:
adding a known amount of a said control containing known amounts of several DNAs of claim 11, to a gene expression analysis system as control samples; subjecting the samples to hybridization conditions in the presence of a said control containing known amounts of corresponding complementary labeled mRNAs of claim 11, each mRNA being at a different concentration; measuring the signal values for the labeled mRNAs and constructing a dose-response or calibration curve based on the relationship between signal value and concentration of each mRNA.
- 15. A method of using controls as calibrators for gene expression ratios in a two-color gene expression analysis system comprising:
adding a known amount of at least one of said controls containing a known amount of DNA of claim 11, to a two-color gene expression analysis system as control samples; subjecting the samples to hybridization conditions in the presence of a said control containing known amounts of two differently labeled corresponding complementary labeled mRNAs of claim 11, for each DNA sample present; measuring the ratio of the signal values for the two differently labeled mRNAs and comparing the signal ratio to the ratio of concentrations of the two or more differently labeled mRNAs.
- 16. A process of producing at least one control for use in a gene expression analysis system comprising:
synthesizing a near-random sequence of DNA; designing primer pairs for said sequence of DNA; amplifying said DNA to generate corresponding double stranded DNA; cloning said double stranded control DNA using a vector to obtain additional double stranded DNA; and formulating at least one control comprising said double stranded DNA.
- 17. The process of claim 16, further comprising:
testing said DNA to ensure lack of hybridization with mRNA from sources other than said DNA.
- 18. The process of claim 16, further comprising:
generating mRNA complementary to said DNA; and formulating at least one control comprising said mRNA.
- 19. The process of claim 18, further comprising:
purifying said DNA and mRNA; determining the concentrations thereof; and formulating at least one control comprising said DNA or said mRNA at selected concentrations and ratios.
- 20. A control for use in a gene expression analysis system comprising:
a known amount of at least one DNA generated from sequence of DNA of claim 16; or a known amount of at least one mRNA generated from said sequence of DNA.
- 21. The control of claim 20 wherein, said DNA and mRNA do not hybridize with any DNA or mRNA from a source other than said sequence of DNA.
- 22. A method of using a control as a negative control in a gene expression analysis system comprising:
adding a known amount of said control containing a known amount of DNA of claim 20, to a gene expression analysis system as a control sample; subjecting the sample to hybridization conditions in the absence of complementary labeled mRNA; examining the control sample for the absence or presence of signal.
- 23. A method of using controls in a gene expression analysis system comprising:
adding a known amount of a said control containing a known amount of DNA of claim 20, to a gene expression analysis system as a control sample; subjecting the sample to hybridization conditions in the presence of a known amount of labeled complementary mRNA of claim 20;measuring the signal values for the labeled mRNA and determining the expression level of the DNA based on the measured signal value.
- 24. A method of using controls as calibrators in a gene expression analysis system comprising:
adding a known amount of a said control containing known amounts of several DNAs of claim 20, to a gene expression analysis system as control samples; subjecting the samples to hybridization conditions in the presence of a said control containing known amounts of corresponding complementary labeled mRNAs of claim 20, each mRNA being at a different concentration; measuring the signal values for said labeled control mRNAs and constructing a dose-response or calibration curve based on the relationship between signal value and concentration of each mRNA
- 25. A method of using controls as calibrators for gene expression ratios in a two-color gene expression analysis system comprising:
adding a known amount of at least one of said controls containing a known amount of DNA of claim 20, to a two-color gene expression analysis system as control samples; subjecting the samples to hybridization conditions in the presence of a said control containing known amounts of two differently labeled corresponding complementary labeled control mRNAs of claim 20, for each DNA sample present; measuring the ratio of the signal values for the two differently labeled mRNAs and comparing the signal ratio to the ratio of concentrations of the two or more differently labeled mRNAs.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. provisional patent application serial No. 60/289,202, filed May 7, 2001; and No. 60/312,420, filed Aug. 15, 2001; the disclosures of which are incorporated herein by reference in their entireties.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60289202 |
May 2001 |
US |
|
60312420 |
Aug 2001 |
US |