IP Library › Granted Patent US 10,294,492
Granted Patent B2
US 10,294,492 · App. 15/100,110 · Granted May 21, 2019

Stable episomes based on non-integrative lentiviral vectors

Inventors: Juan Carlos Ramírez Martínez (Madrid, ES); Raúl Torres Ruiz (Madrid, ES); Aida García Torralba (Madrid, ES)
Assignee: FUNDACIÓN CENTRO NACIONAL DE INVESTIGACIONES CARIOVASCULARES CARLOS III (CNIC)
C12N15/86C12N7/00C12N2740/10043C12N2740/15043C12N2820/80C12N2820/85C12N2830/46
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Quick Facts
Patent No.
US 10,294,492
App. No.
15/100,110
Granted
May 21, 2019
Kind
B2
Abstract

The invention relates to non-integrative lentiviral vectors and their use for the stable transgenesis of both dividing and no-dividing eukaryotic cells. The invention also provides methods for obtaining these vectors, the use of these vectors for the production of recombinant lentiviruses, and the use of these recombinant lentiviruses for obtaining a cell able to stably produce a product of interest.

Claims (39)

1. A polynucleotide comprising

(i) a first long terminal repeat derived from a lentivirus,

(ii) an eukaryotic origin of replication selected from the group consisting of the origins of replication having the sequence of SEQ ID NO: 1, SEQ ID NO: 2, SEQ ID NO: 3 and a functionally equivalent variant thereof, wherein the functionally equivalent variant has at least 70% of sequence identity across the whole length of the sequence with the sequences SEQ ID NO; 1, SEQ ID NO: 2 or SEQ ID NO: 3,

(iii) a scaffold/matrix attachment region selected from the group consisting of the scaffold/matrix attachment regions having the sequence of SEQ ID NO: 4, SEQ ID NO: 5, SEQ ID NO: 6 and a functionally equivalent variant thereof, wherein the functionally equivalent variant has at least 70% of sequence identity across the whole length of the sequence with the sequences SEQ ID NO; 4, SEQ ID NO: 5 or SEQ ID NO: 6, and

(iv) a second long terminal repeat derived from said lentivirus, wherein said eukaryotic origin of replication and said scaffold/matrix attachment region are located between said first and second long terminal repeats.

2. The polynucleotide according to claim 1 , wherein the scaffold/matrix attachment region is located at a 5′ position with respect to the eukaryotic origin of replication.

3. The polynucleotide according to claim 1 , wherein the first long terminal repeat comprises SEQ ID NO: 7 and the second long terminal repeat comprises SEQ ID NO: 8.

4. The polynucleotide according to claim 1 , wherein the second long terminal repeat comprises a self-inactivating mutation.

5. The polynucleotide according to claim 1 , further comprising a polynucleotide sequence selected from the group consisting of:

a multiple cloning site;

at least a first polynucleotide of interest operatively linked to a promoter, wherein the promoter is located at a 5′ position with respect to the scaffold/matrix attachment region and with respect to the eukaryotic origin of replication, and at a 3′ position with respect to the first long terminal repeat; and the polynucleotide of interest is located at a 5′ position or at a 3′ position with respect to the scaffold/matrix attachment region and at a 5′ position or at a 3′ position with respect to the eukaryotic origin of replication; and

combinations thereof.

6. The polynucleotide according to claim 5 , further comprising an enhancer region operatively linked to the promoter.

7. The polynucleotide according to claim 6 , wherein the promoter comprises SEQ ID NO: 9, the enhancer region comprises SEQ ID NO: 10, and the polynucleotide of interest encodes neomycin, green fluorescent protein, or a combination thereof.

8. The polynucleotide according to claim 5 , further comprising a second polynucleotide of interest operatively linked to the first polynucleotide of interest by a sequence encoding a cotranslational self-processing sequence.

9. The polynucleotide according to claim 8 , wherein the sequence encoding the cotranslational self-processing sequence comprises SEQ ID NO: 11.

10. The polynucleotide according to claim 1 , further comprising a primer binding site sequence derived from a lentivirus, wherein said primer binding site sequence is located at a 3′ position with respect to the first long terminal repeat and at a 5′ position with respect to both the origin of replication and the scaffold/matrix attachment region, and further wherein if the polynucleotide further comprises a polynucleotide sequence selected from the group consisting of:

a multiple cloning site,

a polynucleotide of interest operatively linked to a promoter, wherein the promoter is located at a 5′ position with respect to the scaffold/matrix attachment region and with respect to the origin of replication, and at a 3′ position with respect to the first long terminal repeat, and the polynucleotide of interest is located at a 5′ position or at a 3′ position with respect to the scaffold/matrix attachment region and at a 5′ position or at a 3′ position with respect to the origin of replication; and

combinations thereof,

then the primer binding site is located at a 5′ position with respect to said polynucleotide sequence.

11. The polynucleotide according to claim 1 , further comprising a packaging signal sequence derived from a lentivirus located between the first long terminal repeat and the second long terminal repeat.

12. The polynucleotide according to claim 10 , further comprising a packaging signal sequence derived from a lentivirus located between the first terminal repeat and the second terminal repeat, wherein the packaging signal sequence comprises SEQ ID NO: 13, and further wherein the primer binding site sequence comprises SEQ ID NO: 12.

13. The polynucleotide according to claim 1 , further comprising a Rev response element derived from a lentivirus located between the first long terminal repeat and the second long terminal repeat.

14. The polynucleotide according to any claim 1 , further comprising a central polypurine tract derived from a lentivirus, wherein said central polypurine tract is located at a 3′ position with respect to the first long terminal repeat and at a 5′ position with respect to both the origin of replication and the scaffold/matrix attachment region, and further wherein if the polynucleotide further comprises a polynucleotide sequence selected from:

a multiple cloning site,

a polynucleotide of interest operatively linked to a promoter, wherein the promoter is located at a 5′ position with respect to the scaffold/matrix attachment region and with respect to the origin of replication and at a 3′ position with respect to the first long terminal repeat, and the polynucleotide of interest is located at a 5′ position or at a 3′ position with respect to the scaffold/matrix attachment region and at a 5′ position or at a 3′ position with respect to the origin of replication, and

combinations thereof,

then the central polypurine tract is located at a 5′ position with respect to said polynucleotide sequence.

15. The polynucleotide according to claim 1 , further comprising a prokaryotic origin of replication and a selection marker.

16. The polynucleotide according to claim 15 , wherein the central polypurine tract comprises SEQ ID NO: 15, the prokaryotic origin of replication comprises SEQ ID NO: 16, and the selection marker is ampicillin.

17. The polynucleotide according to claim 1 , wherein said polynucleotide is within a vector and/or within a cell.

18. The polynucleotide according to claim 1 , wherein said polynucleotide is present in a recombinant lentivirus, and further wherein said recombinant lentivirus comprises a lentiviral integrase comprising a mutation that causes said integrase to be unable to catalyze the integration of the viral genome into a cell genome.

19. A stable cell population which can express a polynucleotide of interest comprising the polynucleotide of claim 1 , wherein said polynucleotide comprises a polynucleotide of interest operatively linked to a promoter, wherein:

the promoter is located at a 5′ position with respect to both the scaffold/matrix attachment region and the origin of replication and at a 3′ position with respect to the first long terminal repeat; and

the polynucleotide of interest is located at a 5′ position or at a 3′ position with respect to the scaffold/matrix attachment region and at a 5′ position or at a 3′ position with respect to the origin of replication.

20. An in vitro method for generating a recombinant lentivirus according to claim 1 , the method comprising:

(i) contacting a eukaryotic cell with a polynucleotide according to claim 1 or with a vector comprising a polynucleotide according to claim 1 , wherein the eukaryotic cell expresses a lentiviral gag protein, a lentiviral poi protein, a lentiviral rev protein, and a viral envelope protein under conditions adequate for entry of the polynucleotide or the vector into said cell; and

(ii) maintaining the eukaryotic cell under conditions adequate for assembly of the recombinant lentivirus.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY'S NAME PREVIOUSLY RECORDED ON REEL 039001 FRAME 0726. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 28, 2023
From: RAMÍREZ MARTÍNEZ, JUAN CARLOS; TORRES RUIZ, RAÚL; GARCÍA TORRALBA, AIDA
To: FUNDACIÓN CENTRO NACIONAL DE INVESTIGACIONES CARDIOVASCULARES CARLOS III (CNIC)
Reel/Frame 063170/0580 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2016
From: RAMÍREZ MARTÍNEZ, JUAN CARLOS; TORRES RUIZ, RAÚL; GARCÍA TORRALBA, AIDA
To: FUNDACIÓN CENTRO NACIONAL DE INVESTIGACIONES CARIOVASCULARES CARLOS III (CNIC)
Reel/Frame 039001/0726 →
Priority Claims (1)
EP 13382481 · Nov 28, 2013 · regional
Continuity (1)
Related Publication 20170022519A1 · Jan 26, 2017
Cited By (4)
US 12,586,226 US 12,602,808 US 12,610,116 US 12,675,869