US2012046236A1PendingUtilityA1

Treatment of tristetraproline (ttp) related diseases by inhibition of natural antisense transcript to ttp

Assignee: COLLARD JOSEPHPriority: May 6, 2009Filed: May 6, 2010Published: Feb 23, 2012
Est. expiryMay 6, 2029(~2.8 yrs left)· nominal 20-yr term from priority
A61P 9/10A61P 9/00A61P 9/04A61P 35/00A61P 7/00A61P 37/02A61P 3/00A61P 29/00A61P 3/04A61P 31/18A61P 21/00A61P 1/04A61P 19/02A61P 1/00C12N 2310/315C12N 2310/11C12N 2310/321A61K 31/713Y10T436/143333C12N 2310/314C12Q 1/6876C12N 15/113C12N 2310/3231C12N 2310/313C12N 2310/322
50
PatentIndex Score
0
Cited by
0
References
0
Claims

Abstract

The present invention relates to antisense oligonucleotides that modulate the expression of and/or function of Tristetraproline (TTP), in particular, by targeting natural antisense polynucleotides of Tristetraproline (TTP). The invention also relates to the identification of these antisense oligonucleotides and their use in treating diseases and disorders associated with the expression of TTP.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A method of modulating a function of and/or the expression of a Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro comprising:
 contacting said cells or tissues with at least one antisense oligonucleotide 5 to 30 nucleotides in length wherein said at least one oligonucleotide has at least 50% sequence identity to a reverse complement of a polynucleotide comprising 5 to 30 consecutive nucleotides within nucleotides 1 to 970 of SEQ ID NO: 3, 1 to 1117 of SEQ ID NO: 4 and 1 to 297 of SEQ ID NO: 5 ( FIG. 3 ); thereby modulating a function of and/or the expression of the Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro.   
     
     
         2 . A method of modulating a function of and/or the expression of a Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro comprising:
 contacting said cells or tissues with at least one antisense oligonucleotide 5 to 30 nucleotides in length wherein said at least one oligonucleotide has at least 50% sequence identity to a reverse complement of a natural antisense of a Tristetraproline (TTP) polynucleotide; thereby modulating a function of and/or the expression of the Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro.   
     
     
         3 . A method of modulating a function of and/or the expression of a Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro comprising:
 contacting said cells or tissues with at least one antisense oligonucleotide 5 to 30 nucleotides in length wherein said oligonucleotide has at least 50% sequence identity to an antisense oligonucleotide to the Tristetraproline (TTP) polynucleotide; thereby modulating a function of and/or the expression of the Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro.   
     
     
         4 . A method of modulating a function of and/or the expression of a Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro comprising:
 contacting said cells or tissues with at least one antisense oligonucleotide that targets a region of a natural antisense oligonucleotide of the Tristetraproline (TTP) polynucleotide; thereby modulating a function of and/or the expression of the Tristetraproline (TTP) polynucleotide in patient cells or tissues in vivo or in vitro.   
     
     
         5 . The method of  claim 4 , wherein a function of and/or the expression of the Tristetraproline (TTP) is increased in vivo or in vitro with respect to a control. 
     
     
         6 . The method of  claim 4 , wherein the at least one antisense oligonucleotide targets a natural antisense sequence of a Tristetraproline (TTP) polynucleotide. 
     
     
         7 . The method of  claim 4 , wherein the at least one antisense oligonucleotide targets a nucleic acid sequence comprising coding and/or non-coding nucleic acid sequences of a Tristetraproline (TTP) polynucleotide. 
     
     
         8 . The method of  claim 4 , wherein the at least one antisense oligonucleotide targets overlapping and/or non-overlapping sequences of a Tristetraproline (TTP) polynucleotide. 
     
     
         9 . The method of  claim 4 , wherein the at least one antisense oligonucleotide comprises one or more modifications selected from: at least one modified sugar moiety, at least one modified internucleoside linkage, at least one modified nucleotide, and combinations thereof. 
     
     
         10 . The method of  claim 9 , wherein the one or more modifications comprise at least one modified sugar moiety selected from: a 2′-O-methoxyethyl modified sugar moiety, a 2′-methoxy modified sugar moiety, a 2′-O-alkyl modified sugar moiety, a bicyclic sugar moiety, and combinations thereof. 
     
     
         11 . The method of  claim 9 , wherein the one or more modifications comprise at least one modified internucleoside linkage selected from: a phosphorothioate, 2′-Omethoxyethyl (MOE), 2′-fluoro, alkylphosphonate, phosphorodithioate, alkylphosphonothioate, phosphoramidate, carbamate, carbonate, phosphate triester, acetamidate, carboxymethyl ester, and combinations thereof. 
     
     
         12 . The method of  claim 9 , wherein the one or more modifications comprise at least one modified nucleotide selected from: a peptide nucleic acid (PNA), a locked nucleic acid (LNA), an arabino-nucleic acid (FANA), an analogue, a derivative, and combinations thereof. 
     
     
         13 . The method of  claim 1 , wherein the at least one oligonucleotide comprises at least one oligonucleotide sequences set forth as SEQ ID NOS: 6 to 10. 
     
     
         14 . A method of modulating a function of and/or the expression of a Tristetraproline (TTP) gene in mammalian cells or tissues in vivo or in vitro comprising:
 contacting said cells or tissues with at least one short interfering RNA (siRNA) oligonucleotide 5 to 30 nucleotides in length, said at least one siRNA oligonucleotide being specific for an antisense polynucleotide of a Tristetraproline (TTP) polynucleotide, wherein said at least one siRNA oligonucleotide has at least 50% sequence identity to a complementary sequence of at least about five consecutive nucleic acids of the antisense and/or sense nucleic acid molecule of the Tristetraproline (TTP) polynucleotide; and, modulating a function of and/or the expression of Tristetraproline (TTP) in mammalian cells or tissues in vivo or in vitro.   
     
     
         15 . The method of  claim 14 , wherein said oligonucleotide has at least 80% sequence identity to a sequence of at least about five consecutive nucleic acids that is complementary to the antisense and/or sense nucleic acid molecule of the Tristetraproline (TTP) polynucleotide. 
     
     
         16 . A method of modulating a function of and/or the expression of Tristetraproline (TTP) in mammalian cells or tissues in vivo or in vitro comprising:
 contacting said cells or tissues with at least one antisense oligonucleotide of about 5 to 30 nucleotides in length specific for noncoding and/or coding sequences of a sense and/or natural antisense strand of a Tristetraproline (TTP) polynucleotide wherein said at least one antisense oligonucleotide has at least 50% sequence identity to at least one nucleic acid sequence set forth as SEQ ID NOS: 1, 3, 4 and 5; and, modulating the function and/or expression of the Tristetraproline (TTP) in mammalian cells or tissues in vivo or in vitro.   
     
     
         17 . A synthetic, modified oligonucleotide comprising at least one modification wherein the at least one modification is selected from: at least one modified sugar moiety; at least one modified internucleotide linkage; at least one modified nucleotide, and combinations thereof; wherein said oligonucleotide is an antisense compound which hybridizes to and modulates the function and/or expression of a Tristetraproline (TTP) gene in vivo or in vitro as compared to a normal control. 
     
     
         18 . The oligonucleotide of  claim 17 , wherein the at least one modification comprises an internucleotide linkage selected from the group consisting of: phosphorothioate, alkylphosphonate, phosphorodithioate, alkylphosphonothioate, phosphoramidate, carbamate, carbonate, phosphate triester, acetamidate, carboxymethyl ester, and combinations thereof. 
     
     
         19 . The oligonucleotide of  claim 17 , wherein said oligonucleotide comprises at least one phosphorothioate internucleotide linkage. 
     
     
         20 . The oligonucleotide of  claim 17 , wherein said oligonucleotide comprises a backbone of phosphorothioate internucleotide linkages. 
     
     
         21 . The oligonucleotide of  claim 17 , wherein the oligonucleotide comprises at least one modified nucleotide, said modified nucleotide selected from: a peptide nucleic acid, a locked nucleic acid (LNA), analogue, derivative, and a combination thereof. 
     
     
         22 . The oligonucleotide of  claim 17 , wherein the oligonucleotide comprises a plurality of modifications, wherein said modifications comprise modified nucleotides selected from: phosphorothioate, alkylphosphonate, phosphorodithioate, alkylphosphonothioate, phosphoramidate, carbamate, carbonate, phosphate triester, acetamidate, carboxymethyl ester, and a combination thereof. 
     
     
         23 . The oligonucleotide of  claim 17 , wherein the oligonucleotide comprises a plurality of modifications, wherein said modifications comprise modified nucleotides selected from: peptide nucleic acids, locked nucleic acids (LNA), analogues, derivatives, and a combination thereof. 
     
     
         24 . The oligonucleotide of  claim 17 , wherein the oligonucleotide comprises at least one modified sugar moiety selected from: a 2′-O-methoxyethyl modified sugar moiety, a 2′-methoxy modified sugar moiety, a 2′-O-alkyl modified sugar moiety, a bicyclic sugar moiety, and a combination thereof. 
     
     
         25 . The oligonucleotide of  claim 17 , wherein the oligonucleotide comprises a plurality of modifications, wherein said modifications comprise modified sugar moieties selected from: a 2′-O-methoxyethyl modified sugar moiety, a 2′-methoxy modified sugar moiety, a 2′-O-alkyl modified sugar moiety, a bicyclic sugar moiety, and a combination thereof. 
     
     
         26 . The oligonucleotide of  claim 17 , wherein the oligonucleotide is of at least about 5 to 30 nucleotides in length and hybridizes to an antisense and/or sense strand of a Tristetraproline (TTP) polynucleotide wherein said oligonucleotide has at least about 20% sequence identity to a complementary sequence of at least about five consecutive nucleic acids of the antisense and/or sense coding and/or noncoding nucleic acid sequences of the Tristetraproline (TTP) polynucleotide. 
     
     
         27 . The oligonucleotide of  claim 17 , wherein the oligonucleotide has at least about 80% sequence identity to a complementary sequence of at least about five consecutive nucleic acids of the antisense and/or sense coding and/or noncoding nucleic acid sequence of the Tristetraproline (TTP) polynucleotide. 
     
     
         28 . The oligonucleotide of  claim 17 , wherein said oligonucleotide hybridizes to and modulates expression and/or function of at least one Tristetraproline (TTP) polynucleotide in vivo or in vitro, as compared to a normal control. 
     
     
         29 . The oligonucleotide of  claim 17 , wherein the oligonucleotide comprises the sequences set forth as SEQ ID NOS: 6 to 10. 
     
     
         30 . A composition comprising one or more oligonucleotides specific for one or more Tristetraproline (TTP) polynucleotides, said polynucleotides comprising antisense sequences, complementary sequences, alleles, homologs, isoforms, variants, derivatives, mutants, fragments, or combinations thereof. 
     
     
         31 . The composition of  claim 30 , wherein the oligonucleotides have at least about 40% sequence identity as compared to any one of the nucleotide sequences set forth as SEQ ID NOS: 6 to 10. 
     
     
         32 . The composition of  claim 30 , wherein the oligonucleotides comprise nucleotide sequences set forth as SEQ ID NOS: 6 to 10. 
     
     
         33 . The composition of  claim 32 , wherein the oligonucleotides set forth as SEQ ID NOS: 6 to 10 comprise one or more modifications or substitutions. 
     
     
         34 . The composition of  claim 33 , wherein the one or more modifications are selected from: phosphorothioate, methylphosphonate, peptide nucleic acid, locked nucleic acid (LNA) molecules, and combinations thereof. 
     
     
         35 . A method of preventing or treating a disease associated with at least one Tristetraproline (TTP) polynucleotide and/or at least one encoded product thereof, comprising:
 administering to a patient a therapeutically effective dose of at least one antisense oligonucleotide that binds to a natural antisense sequence of said at least one Tristetraproline (TTP) polynucleotide and modulates expression of said at least one Tristetraproline (TTP) polynucleotide; thereby preventing or treating the disease associated with the at least one Tristetraproline (TTP) polynucleotide and/or at least one encoded product thereof.   
     
     
         36 . The method of  claim 35 , wherein a disease associated with the at least one Tristetraproline (TTP) polynucleotide is selected from: tristetraprolin-deficiency syndrome, a cardiovascular disease or disorder, a cardiac injury (e.g., cardiac injury selected from the group of hemodynamic overloading, myocardial reperfusion injury, hypertrophic cardiomyopathy, end-stage congestive heart failure and an ischemic condition or a consequence thereof like myocardial infarction and unstable angina etc.), arthritis, an inflammation, joint and skin inflammation, AIDS, inflammatory bowel disease, Crohn's disease, ulcerative colitis, cancer, obesity, metabolic syndrome, obesity-associated metabolic complications, an autoimmune disease or disorder, cachexia, myeloid hyperplasia, skeletal muscle injury. 
     
     
         37 . A method of identifying and selecting at least one oligonucleotide for in vivo administration comprising: selecting a target polynucleotide associated with a disease state; identifying at least one oligonucleotide comprising at least five consecutive nucleotides which are complementary to the selected target polynucleotide or to a polynucleotide that is antisense to the selected target polynucleotide; measuring the thermal melting point of a hybrid of an antisense oligonucleotide and the target polynucleotide or the polynucleotide that is antisense to the selected target polynucleotide under stringent hybridization conditions; and selecting at least one oligonucleotide for in vivo administration based on the information obtained.

Join the waitlist — get patent alerts

Track US2012046236A1 — get alerts on status changes and closely related new filings.

We store only your email — no account needed. See our privacy policy.