IP Library › Granted Patent US 9,061,031
Granted Patent B2
US 9,061,031 · App. 14/488,058 · Granted Jun 23, 2015

Gene therapy vectors for adrenoleukodystrophy and adrenomyeloneuropathy

Inventors: Maria Joann Denaro (Marblehead, MA); Mitchell Howard Finer (Stow, MA); Gabor Veres (Medford, MA); Julian Down (Cambridge, MA)
Assignee: BLUEBIRD BIO, INC.
A61K35/51A61K48/005C07K14/705C12N15/86C12N2740/16043C12N2800/24C12N2830/008C12N2830/50C12N2830/60C12N2840/00C12N2830/00A61K38/177A61K48/0058C12N5/0686C12N7/00C12N2740/15043A61K35/28
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Quick Facts
Patent No.
US 9,061,031
App. No.
14/488,058
Granted
Jun 23, 2015
Kind
B2
Abstract

The present invention provides compositions comprising retroviral vectors, transduced cells, and methods of using the same for gene therapy. In particular, the present invention relates to lentiviral vectors and cells transduced with those vectors to provide gene therapy to subjects having an adrenoleukodystrophy and/or adrenomyeloneuropathy.

Claims (164)

1. A composition comprising one or more cells that comprise a vector selected from the group consisting of:

a) a vector comprising from 5′ to 3′:

(i) a left (5′) retroviral LTR;

(ii) a central polypurine tract/DNA flap (cPPT/FLAP);

(iii) a retroviral export element;

(iv) a promoter active in a microglial cell, operably linked to a polynucleotide encoding an ATP-binding cassette, sub-family D, member 1 (ABCD1) polypeptide; and

(v) a right (3′) retroviral LTR;

wherein the vector does not comprise a post-transcriptional regulatory element;

b) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) LTR;

(ii) a cPPT/FLAP;

(iii) an RRE;

(iv) a MND promoter operably linked to a polynucleotide encoding a human ABCD1 poly peptide;

(v) a right (3′) LTR; and

(vi) a polyadenylation sequence;

wherein the sector does not comprise a post-transcriptional regulatory element;

c) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) HIV-1 LTR;

(ii) a Psi (Ψ) packaging signal;

(iii) a cPPT/FLAP;

(iv) an RRE;

(v) a MND promoter, operably linked to a cDNA encoding a human ABCD1 polypeptide;

(vi) a right (3′) self-inactivating (SIN) HIV-1 LTR; and

(vii) a rabbit β-globin polyadenylation sequence;

wherein the vector does not comprise a post-transcriptional regulatory element;

d) a vector comprising from 5′ to 3′:

(i) a left (5′) retroviral LTR;

(ii) a central polypurine tract/DNA flap (cPPT/FLAP);

(iii) a retroviral export element;

(iv) a promoter active in a microglial cell, operably linked to a polynucleotide encoding an ATP-binding cassette, sub-family D, member 1 (ABCD1) polypeptide;

(v) a right (3′) retroviral LTR;

(vi) a polyadenylation (polyA) sequence; and

wherein the vector does not comprise a post-transcriptional regulatory element; and

e) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) HIV-1 LTR;

(ii) a Psi (Ψ) packaging signal;

(iii) a cPPT/FLAP;

(iv) an RRE;

(v) a MND promoter, operably linked to a cDNA encoding a human ABCD1 polypeptide;

(vi) a right (3′) self-inactivating (SIN) HIV-1 LTR; and

(vii) a polyadenylation (polyA) sequence;

wherein the vector does not comprise a post-transcriptional regulatory element.

2. The composition of claim 1 , wherein the composition comprises an aqueous solution.

3. The composition of claim 1 , wherein the composition comprises an isotonic aqueous solution suitable for parental administration to a human.

4. The composition of claim 1 , wherein the composition comprises a cell culture medium.

5. The composition of claim 1 , wherein the one or more cells are embryonic stem cells, somatic stem cells, or progenitor cells.

6. The composition of claim 5 , wherein the somatic stem cells are bone marrow stem cells, umbilical cord stem cells, or mesenchymal stem cells.

7. The composition of claim 5 , wherein the somatic stem cells are hematopoietic stem cells.

8. The composition of claim 1 , wherein, in the vector:

a) the promoter of: the left (5′) LTR, the left (5′) retroviral LTR, or left (5′) HIV-1 LTR, is replaced with a heterologous promoter selected from the group consisting of: a cytomegalovirus (CMV) promoter, a Rous Sarcoma Virus (RSV) promoter, or a Simian Virus 40 (SV40) promoter;

b) the right (3′) LTR or the right (3′) retroviral LTR is a self-inactivating (SIN) LTR;

c) the promoter active in a microglial cell comprises a myeloproliferative sarcoma virus enhancer, negative control region deleted, d1587rev primer-binding site substituted (MND) promoter or transcriptionally active fragment thereof;

d) the polynucleotide encoding the ABCD1 polypeptide is a cDNA;

e) the polynucleotide encoding the ABCD1 polypeptide is a cDNA that comprises an optimized Kozak sequence; or

f) the polyadenylation sequence is a bovine growth hormone polyadenylation signal or a rabbit β-globin polyadenylation sequence.

9. A pharmaceutical composition comprising a pharmaceutically acceptable excipient, carrier, or diluent and one or more cells that comprise a vector selected from the group consisting of:

a) a vector comprising from 5′ to 3′:

(i) a left (5′) retroviral LTR;

(ii) a central polypurine tract/DNA flap (cPPT/FLAP);

(iii) a retroviral export element;

(iv) a promoter active in a microglial cell, operably linked to a polynucleotide encoding an ATP-binding cassette, sub-family D, member 1 (ABCD1) polypeptide; and

(v) a right (3′) retroviral LTR;

wherein the vector does not comprise a post-transcriptional regulatory element;

b) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) LTR;

(ii) a cPPT/FLAP;

(iii) an RRE;

(iv) a MND promoter operably linked to a polynucleotide encoding a human ABCD1 polypeptide;

(v) a right (3′) LTR; and

(vi) a polyadenylation sequence;

wherein the vector does not comprise a post-transcriptional regulatory element;

c) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) HIV-1 LTR;

(ii) a Psi (Ψ) packaging signal;

(iii) a cPPT/FLAP;

(iv) an RRE;

(v) a MND promoter, operably linked to a cDNA encoding a human ABCD1 polypeptide;

(vi) a right (3′) self-inactivating (SIN) HIV-1 LTR; and

(vii) at rabbit β-globin polyadenylation sequence;

wherein the vector does not comprise a post-transcriptional regulatory element;

d) a vector comprising from 5′ to 3′:

(i) a left (5′) retroviral LTR;

(ii) a central polypurine tract/DNA flap (cPPT/FLAP);

(iii) a retroviral export element;

(iv) a promoter active in a microglial cell, operably linked to a polynucleotide encoding an ATP-binding cassette, sub-family D, member 1 (ABCD1) polypeptide;

(v) a right (3′) retroviral LTR;

(vi) a polyadenylation (polyA) sequence; and

wherein the vector does not comprise a post-transcriptional regulatory element, and

e) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) HIV-1 LTR;

(ii) a Psi (•) packaging signal;

(iii) a cPPT/FLAP;

(iv) an RRE;

(v) a MND promoter, operably linked to a cDNA encoding a human ABCD1 polypeptide;

vi) a right (3′) self-inactivating (SIN) HIV-1 LTR; and

(vii) a polyadenylation (polyA) sequence;

wherein the vector does not comprise a post-transcriptional regulatory element.

10. The pharmaceutical composition of claim 9 , wherein the pharmaceutically acceptable excipient, carrier, or diluent comprises a sterile aqueous solution.

11. The pharmaceutical composition of claim 9 , wherein the pharmaceutically acceptable excipient, carrier, or diluent comprises a pharmaceutically acceptable cell culture medium.

12. The pharmaceutical composition of claim 9 , wherein the one or more cells are embryonic stem cells, somatic stem cells, or progenitor cells.

13. The pharmaceutical composition of claim 12 , wherein the somatic stem cells are bone marrow stem cells, umbilical cord stem cells, or mesenchymal stem cells.

14. The pharmaceutical composition of claim 12 , wherein the somatic stem cells are hematopoietic stem cells.

15. The pharmaceutical composition of claim 9 , wherein, in the vector:

a) the promoter of: the left (5′) LTR, the left (5′) retroviral LTR, or left (5′) HIV-1 LTR, is replaced with a heterologous promoter selected from the group consisting of: a cytomegalovirus (CMV) promoter, a Rous Sarcoma Virus (RSV) promoter, or a Simian Virus 40 (SV40) promoter;

b) the right (3′) LTR or the right (3′) retroviral LTR is a self-inactivating (SIN) LTR;

c) the promoter active in i microglial cell comprises a myeloproliferative sarcoma virus enhancer, negative control region deleted, d1587rev primer-binding site substituted (MND) promoter or transcriptionally active fragment thereof;

d) the polynucleotide encoding the ABCD1 polypeptide is a cDNA;

e) the polynucleotide encoding the ABCD1 polypeptide is a cDNA that comprises an optimized Kozak sequence; or

f) the polyadenylation sequence is a bovine growth hormone polyadenylation signal or a rabbit β-globin polyadenylation sequence.

16. A formulation comprising a pharmaceutically-acceptable solution and one or more cells comprising a vector selected from the group consisting of:

a) a vector comprising from 5′ to 3′:

(i) a left (5′) retroviral LTR;

(ii) a Psi (Ψ) packaging signal;

(iii) a central polypurine tract/DNA flap (cPPT/FLAP);

(iv) a retroviral export element;

(v) a promoter active in a microglial cell, operably linked to a polynucleotide encoding an ATP-binding cassette, sub-family D, member 1 (ABCD1) polypeptide; and

(vi) a right (3′) retroviral LTR;

wherein the vector does not comprise a post-transcriptional regulatory element;

b) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) LTR;

(ii) a Psi (Ψ) packaging signal;

(iii) a cPPT/FLAP;

(iv) an RRE;

(v) a MND promoter operably linked to a poly nucleotide encoding a human ABCD1 polypeptide;

(vi) a right (3′) LTR; and

(vii) a polyadenylation sequence;

wherein the vector does not comprise a post-transcriptional regulatory element;

c) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) HIV-1 LTR;

(ii) a Psi (Ψ) packaging signal;

(iii) a cPPT/FLAP;

(iv) an RRE;

(v) a MND promoter, operably linked to a cDNA encoding; a human ABCD1 polypeptide;

(vi) a right (3′) self-inactivating (SIN) HIV-1 LTR; and

(vii) a rabbit β-globin polyadenylation sequence;

wherein the sector does not comprise a post-transcriptional regulatory element;

d) a vector comprising from 5′ to 3′:

(i) a left (5′) retroviral LTR;

(ii) a cPPT/FLAP;

(iii) a retroviral export element;

(iv) a promoter active in a microglial cell, operably linked to a polynucleotide encoding an ATP-binding cassette, sub-family D, member 1 (ABCD1) polypeptide;

(v) a right (3′) retroviral LTR;

(vii) a polyadenylation (polyA) sequence; and

wherein the vector does not comprise a post-transcriptional regulatory element; and

e) a lentiviral vector comprising from 5′ to 3′:

(i) a left (5′) HIV-1 LTR;

(ii) a Psi (Ψ) packaging signal;

(iii) a cPPT/FLAP;

(iv) an RRE;

(v) a MND promoter operably linked to a cDNA encoding a human ABCD1 polypeptide;

(vi) a right (3′) self-inactivating (SIN) HIV-1 LTR; and

(vi) a polyadenylation (polyA) sequence;

wherein the vector does not comprise a post-transcriptional regulatory element.

17. The formulation of claim 16 , wherein the formulation comprises a sterile isotonic aqueous solution.

18. The formulation of claim 16 , wherein the one or more cells are embryonic stem cells, somatic stem cells, or progenitor cells.

19. The formulation of claim 18 , wherein the somatic stem cells are bone marrow stem cells, umbilical cord stem cells, or mesenchymal stem cells.

20. The formulation of claim 18 , wherein the somatic stem cells are hematopoietic stem cells.

21. The formulation of claim 16 , wherein, in the vector:

a) the promoter of the left (5′) LTR, the left (5′) retroviral LTR, or left (5′) HIV-1 LTR, is replaced with a heterologous promoter selected from the group consisting of: a cytomegalovirus (CMV) promoter, a Rous Sarcoma Virus (RSV) promoter, or a Simian Virus 40 (SV40) promoter;

b) the right (3′) LTR or the right (3′) retroviral LTR is a self-inactivating (SIN) LTR;

c) the promoter active in a microglial cell comprises a myeloproliferative sarcoma virus enhancer, negative control region deleted, d1587rev primer-binding site substituted (MND) promoter or transcriptionally active fragment thereof;

d) the polynucleotide encoding the ABCD1 polypeptide is a cDNA;

e) the polynucleotide encoding the ABCD1 polypeptide is a cDNA that comprises an optimized Kozak sequence; or

f) the polyadenylation sequence is a bovine growth hormone polyadenylation signal or a rabbit β-globin polyadenylation sequence.

Assignments (4)
CHANGE OF NAME Recorded Sep 25, 2025
From: BLUEBIRD BIO, INC.
To: GENETIX BIOTHERAPEUTICS INC.
Reel/Frame 072955/0154 →
SECURITY INTEREST Recorded Mar 15, 2024
From: BLUEBIRD BIO, INC.
To: HERCULES CAPITAL, INC., AS AGENT
Reel/Frame 066801/0818 →
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBER PREVIOUSLY RECORDED AT REEL: 033762 FRAME: 0522. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Aug 8, 2016
From: DENARO, MARIA JOANN; FINER, MITCHELL HOWARD; VERES, GABOR; DOWN, JULIAN
To: BLUEBIRD BIO, INC.
Reel/Frame 039626/0659 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2014
From: DENARO, MARIA JOANN; FINER, MITCHELL HOWARD; VERES, GABOR; DOWN, JULIAN
To: BLUEBIRD BIO, INC.
Reel/Frame 033762/0522 →
Continuity (3)
Continuation 13492553 · Jun 8, 2012
Provisional Application 61495857 · Jun 10, 2011
Related Publication 20150064150A1 · Mar 5, 2015