IP Library Patent Application 13266434
Patent Application
App. No. 13/266,434

Molecular Diagnosis of Fragile X Syndrome Associated with FMR1 Gene

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Patent No.
US None
App. No.
13/266,434
Abstract

The present invention includes a rapid, selective, and accurate method of diagnosing a human subject with a triplet repeat genetic disorder of the FMR1 gene that leads to fragile X syndrome. The present invention also includes a rapid, selective, and accurate method of diagnosing a human subject at risk for developing a triplet repeat genetic disorder of the FMR1 gene that leads to fragile X syndrome, or at risk of passing such a disorder on to their progeny.

Claims (37)

1 . A method of diagnosing a human subject afflicted with fragile X syndrome, wherein said fragile X syndrome is the result of an expansion of the CGG triplet repeat region of the FMR1 gene, said method comprising:

a) obtaining a sample of genomic DNA from said subject;

b) contacting said sample with about 5-10 pairs of nested primers flanking the CGG triplet repeat region of said FMR1 gene;

c) amplifying said CGG triplet repeat region of said FMR1 gene using Phi29 DNA polymerase for site specific multiple displacement amplification (SSMDA);

d) quantifying the number of said CGG triplet repeats present in said CGG triplet repeat region of said FMR1 gene using either real-time PCR or real-time SSMDA, wherein if the number of CGG triplet repeats in the CGG triplet repeat region is more than about 200 CGG repeats, then said subject has fragile X syndrome.

2 . The method of claim 1 , wherein said sample of genomic DNA is contacted with at least 2 primers selected from the group consisting of SEQ ID NO, 1-19.

3 . A method of diagnosing a human subject with a fragile X syndrome premutation, wherein said fragile X syndrome is the result of an expansion of the CGG triplet repeat region of the FMR1 gene, wherein said subject is not afflicted with fragile X syndrome but is at-risk of having progeny with fragile X syndrome, said method comprising:

a) obtaining a sample of genomic DNA from said subject;

b) contacting said sample with about 5-10 pairs of nested primers flanking the CGG triplet repeat region of said FMR1 gene;

c) amplifying said CGG triplet repeat region of said FMR1 gene using Phi29 DNA polymerase for site specific multiple displacement amplification (SSMDA);

d) quantifying the number of said CGG triplet repeats present in said CGG triplet repeat region of said FMR1 using either real-time PCR or real-time SSMDA, wherein if the number of CGG triplet repeats in the CGG triplet repeat region is from about 60 to about 200 CGG repeats, then said subject has a fragile X premutation and is at-risk of having progeny with fragile X syndrome.

4 . A method of diagnosing a human subject with a fragile X syndrome intermediate premutation, wherein said fragile X syndrome intermediate premutation is the result of an expansion of the CGG triplet repeat region of the FMR1 gene, wherein said subject is not afflicted by fragile X syndrome but is at-risk of having progeny with fragile X syndrome, said method comprising:

a) obtaining a sample of genomic DNA from said subject;

b) contacting said sample with about 5-10 pairs of nested primers flanking the CGG triplet repeat region of said FMR1 gene;

c) amplifying said CGG triplet repeat region of said FMR1 gene using Phi29 DNA polymerase for site specific multiple displacement amplification (SSMDA);

d) quantifying the number of said CGG triplet repeats present in said CGG triplet repeat region of said FMR1 using either real-time PCR or real-time SSMDA, wherein if the number of CGG triplet repeats in the CGG triplet repeat region is from about 45 to about 60 CGG repeats, then said subject has an intermediate fragile X premutation and is at-risk of having progeny with fragile X syndrome.

5 . A method of diagnosing a human subject afflicted with fragile X syndrome, wherein said fragile X syndrome is the result of an expansion of the CGG triplet repeat region of the FMR1 gene, said method comprising:

a) obtaining a sample of genomic DNA from said subject;

b) digesting said genomic DNA with at least one restriction enzyme wherein said restriction enzyme excises a region of genomic DNA comprising said CGG triplet repeat region of the FMR1 gene;

c) ligating said digested DNA to form circularized DNA comprising said CGG triplet repeat region of the FMR1 gene;

d) contacting said circularized DNA with about 5-10 pairs of nested primers flanking the CGG triplet repeat region of said FMR1 gene;

e) amplifying said CGG triplet repeat region of said FMR1 gene using Phi29 DNA polymerase for site specific multiple displacement amplification (SSMDA);

f) quantifying the number of CGG triplet repeats present in said CGG triplet repeat region of said FMR1 gene using either real-time PCR or real-time SSMDA, wherein if the number of CGG triplet repeats in the CGG triplet repeat region is more than about 200 CGG repeats, then said subject has fragile X syndrome.

6 . A method of diagnosing a human subject with a fragile X premutation, wherein said fragile X premutation is the result of an expansion of the CGG triplet repeat region of the FMR1 gene, wherein said subject is not afflicted with fragile X syndrome but is at-risk of having progeny with fragile X syndrome, said method comprising:

a) obtaining a sample of genomic DNA from said subject;

b) digesting said genomic DNA with at least one restriction enzyme wherein said restriction enzyme excises a region of genomic DNA comprising said CGG triplet repeat region of the FMR1 gene;

c) ligating said digested DNA to form circularized DNA comprising said CGG triplet repeat region of the FMR1 gene;

d) contacting said circularized DNA with about 5-10 pairs of nested primers flanking the CGG triplet repeat region of said FMR1 gene;

e) amplifying said CGG triplet repeat region of said FMR1 gene using Phi29 DNA polymerase for site specific multiple displacement amplification (SSMDA);

f) quantifying the number of said CGG triplet repeats present in said CGG triplet repeat region of said FMR1 gene using either real-time PCR or real-time SSMDA, wherein if the number of CGG triplet repeats in the CGG triplet repeat region is from about 60 to about 200 CGG repeats, then said subject has a fragile X premutation and is at-risk of having progeny with fragile X syndrome.

7 . A method of diagnosing a human subject with an intermediate fragile X premutation, wherein said fragile X intermediate premutation is the result of an expansion of the CGG triplet repeat region of the FMR1 gene, wherein said subject is not afflicted with fragile X syndrome but is at-risk of having progeny with fragile X syndrome, said method comprising:

a) obtaining a sample of genomic DNA from said subject;

b) digesting said genomic DNA with at least one restriction enzyme wherein said restriction enzyme excises a region of genomic DNA comprising said CGG triplet repeat region of the FMR1 gene;

c) ligating said digested DNA to form circularized DNA comprising said CGG triplet repeat region of said FMR1 gene;

d) contacting said circularized DNA with about 5-10 pairs of nested primers flanking the CGG triplet repeat region of said FMR1 gene;

e) amplifying said CGG triplet repeat region of said FMR1 gene using Phi29 DNA polymerase for site specific multiple displacement amplification (SSMDA);

f) quantifying the number of said CGG triplet repeats present in said CGG triplet repeat region of said FMR1 gene using either real-time PCR or real-time SSMDA, wherein if the number of CGG triplet repeats in the CGG triplet repeat region is from about 45 to about 60 CGG repeats, then said subject has an fragile X intermediate premutation and is at-risk of having progeny with fragile X syndrome.

Assignments (11)
RELEASE OF SECURITY INTEREST Recorded Jun 16, 2017
From: HUDSON BAY MASTER FUND LTD
To: INTERPACE DIAGNOSTICS CORPORATION
Reel/Frame 042856/0895 →
RELEASE OF SECURITY INTEREST Recorded Jun 16, 2017
From: HUDSON BAY MASTER FUND LTD
To: INTERPACE DIAGNOSTICS CORPORATION
Reel/Frame 042858/0971 →
RELEASE OF SECURITY INTEREST Recorded Jun 16, 2017
From: HUDSON BAY MASTER FUND LTD
To: INTERPACE DIAGNOSTICS GROUP, INC.; INTERPACE BIOPHARMA, LLC; INTERPACE DIAGNOSTICS, LLC; INTERPACE DIAGNOSTICS LAB, INC.; INTERPACE DIAGNOSTICS CORPORATION
Reel/Frame 042840/0860 →
RELEASE OF SECURITY INTEREST Recorded Jun 16, 2017
From: HUDSON BAY MASTER FUND LTD
To: INTERPACE DIAGNOSTICS GROUP, INC.; INTERPACE DIAGNOSTICS, LLC; INTERPACE DIAGNOSTICS CORPORATION
Reel/Frame 042856/0799 →
GUARANTEE AND COLLATERAL AGREEMENT Recorded Sep 23, 2016
From: PDI, INC.; GROUP DCA, LLC; INTERPACE BIOPHARMA, LLC; INTERPACE DIAGNOSTICS, LLC; JS GENETICS, INC.; REDPATH ACQUISITION SUB, INC.
To: REDPATH EQUITYHOLDER REPRESENTATIVE, LLC
Reel/Frame 040125/0251 →
JOINDER TO GUARANTEE AND COLLATERAL ASSIGNMENT Recorded Sep 23, 2016
From: INTERPACE DIAGNOSTICS CORPORATION; PDI, INC.; GROUP DCA, LLC; INTERPACE BIOPHARMA, LLC; INTERPACE DIAGNOSTICS, LLC; JS GENETICS, INC.
To: REDPATH EQUITYHOLDER REPRESENTATIVE, LLC
Reel/Frame 040127/0018 →
SECURITY INTEREST Recorded Nov 10, 2014
From: INTERSPACE DIAGNOSTICS, LLC; JS GENETICS, INC.; GROUP DCA, LLC; PDI, INC.
To: REDPATH EQUITYHOLDER REPRESENTATIVE, LLC
Reel/Frame 034136/0060 →
SECURITY INTEREST Recorded Nov 4, 2014
From: JS GENETICS, INC.
To: SWK FUNDING LLC, AS AGENT
Reel/Frame 034103/0211 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2012
From: RIVKEES, SCOTT A.; GRUEN, JEFFREY R.
To: YALE UNIVERSITY
Reel/Frame 027510/0645 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2012
From: HOSONO, SEIYU; HAGER, KARL
To: JS GENETICS, INC.
Reel/Frame 027510/0718 →
CONFIRMATORY LICENSE Recorded Dec 14, 2011
From: YALE UNIVERSITY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 027380/0103 →