ON DEMAND EXPRESSION OF EXOGENOUS FACTORS IN LYMPHOCYTES TO TREAT HIV
The present disclosure relates generally to immunization and immunotherapy for the treatment or inhibition of HIV. In embodiments, a viral vectors are disclosed that comprise therapeutic cargo portions comprising a nucleotide sequence that encodes at least one soluble exogenous factor capable of inhibiting HIV infection, and a T cell-responsive promoter that regulates expression of the nucleotide sequence.
1 . A viral vector comprising a therapeutic cargo portion, wherein the therapeutic cargo portion comprises a nucleotide sequence that encodes at least one soluble exogenous factor capable of inhibiting HIV infection, and a T cell-responsive promoter that regulates expression of the nucleotide sequence.
2 . The viral vector of claim 1 , wherein the at least one soluble exogenous factor comprises an anti-HIV antibody.
3 . The viral vector of claim 2 , wherein the anti-HIV antibody is a VRC01 antibody or a 3BNC117 antibody.
4 . The viral vector of claim 1 , wherein the at least one soluble exogenous factor comprises a soluble CD4 protein or a fragment thereof.
5 . The viral vector of claim 4 , wherein the soluble CD4 or a fragment thereof comprises a dimeric soluble CD4.
6 . The viral vector of claim 5 , wherein the dimeric soluble CD4 comprises a sequence having at least 80%, at least 85%, at least 90%, at least 95%, or at least 98% sequence identity to SEQ ID NO: 9, SEQ ID NO: 76, or SEQ ID NO: 77.
7 . The viral vector of claim 6 , wherein the dimeric soluble CD4 comprises SEQ ID NO: 9, SEQ ID NO: 76, or SEQ ID NO: 77.
8 . The viral vector of claim 1 , wherein the T cell-responsive promoter comprises a CMV promoter, an IFN-α promoter, an IFN-β promoter, an IFN-γ promoter, an EF-1α promoter, an IL-2 promoter, a CD69 promoter, or a fragment thereof.
9 . The viral vector of claim 8 , wherein the T cell-responsive promoter comprises an IL-2 promoter.
10 . The viral vector of claim 1 , wherein the therapeutic cargo portion further comprises a secretory signal that is operably linked to the nucleotide sequence that encodes the at least one soluble exogenous factor.
11 . The viral vector of claim 10 , wherein the secretory signal comprises an antibody secretory signal or an IL-2 secretory signal.
12 . The viral vector of claim 1 , wherein the nucleotide sequence comprises a sequence having at least 80%, at least 85%, at least 90%, at least 95%, or at least 98% sequence identity to SEQ ID NO: 1, SEQ ID NO: 2, SEQ ID NO: 3, SEQ ID NO: 4, SEQ ID NO: 5, SEQ ID NO: 6, SEQ ID NO: 7, SEQ ID NO: 8, SEQ ID NO: 9, SEQ ID NO: 10, SEQ ID NO: 78, SEQ ID NO: 80, SEQ ID NO: 81, SEQ ID NO: 82, SEQ ID NO: 83, SEQ ID NO: 84, SEQ ID NO: 85, or SEQ ID NO: 87.
13 . The viral vector of claim 1 , wherein the nucleotide sequence comprises SEQ ID NO: 1, SEQ ID NO: 2, SEQ ID NO: 3, SEQ ID NO: 4, SEQ ID NO: 5, SEQ ID NO: 6, SEQ ID NO: 7, SEQ ID NO: 8, SEQ ID NO: 9, SEQ ID NO: 10, SEQ ID NO: 78, SEQ ID NO: 80, SEQ ID NO: 81, SEQ ID NO: 82, SEQ ID NO: 83, SEQ ID NO: 84, SEQ ID NO: 85, or SEQ ID NO: 87.
14 . The viral vector of claim 1 , wherein the therapeutic cargo portion further comprises at least one small RNA that targets any one or more of Vif, Tat, and CCR5.
15 . The viral vector of claim 14 , wherein the at least one small RNA comprises a sequence having at least 80%, at least 85%, at least 90%, at least 95%, or at least 98% sequence identity to SEQ ID NO: 62, SEQ ID NO: 63, or SEQ ID NO: 64.
16 . The viral vector of claim 15 , wherein the at least one small RNA comprises SEQ ID NO: 62, SEQ ID NO: 63, or SEQ ID NO: 64.
17 . The viral vector of claim 14 , wherein the at least one soluble exogenous factor comprises soluble CD4 or a fragment thereof.
18 . The viral vector of claim 17 , wherein the soluble CD4 or a fragment thereof comprises a dimeric soluble CD4.
19 . The viral vector of claim 14 , wherein the T cell-responsive promoter comprises a CMV promoter, an IFN-α promoter, an IFN-β promoter, an IFN-γ promoter, an EF-1α promoter, an IL-2 promoter, a CD69 promoter, or a fragment thereof.
20 . The viral vector of claim 14 , wherein the therapeutic cargo portion further comprises a secretory signal that is operably linked to the nucleotide sequence that encodes the at least one soluble exogenous factor.
21 . The viral vector of claim 14 , wherein the at least one small RNA comprises a sequence having at least 80%, at least 85%, at least 90%, at least 95%, or at least 98% sequence identity to SEQ ID NO: 65.
22 . The viral vector of claim 21 , wherein the at least one small RNA comprises SEQ ID NO: 65.
23 . A lentiviral particle produced by a packaging cell and capable of infecting a target cell, the lentiviral particle comprising:
an envelope protein capable of infecting the target cell; and
the viral vector of claim 1 .
24 . A modified cell comprising a lymphocyte infected with a lentiviral particle, wherein the lentiviral particle comprises:
an envelope protein capable of infecting the lymphocyte; and
the viral vector of claim 1 .
25 . The modified cell of claim 24 , wherein the lymphocyte comprises a T cell, a B cell, an NKT cell, or an NK cell.
26 . The modified cell of claim 25 , wherein the lymphocyte is a T cell, and wherein the T cell comprises a CD4 T cell, a CD8 T cell, or a γδ T cell.
27 . The modified cell of claim 26 , wherein the T cell is a CD4 T cell.
28 . A viral delivery system comprising:
at least one helper plasmid comprising nucleotide sequences for expressing a functional protein derived from each of a Gag, Pol, and Rev gene;
an envelope plasmid comprising a DNA sequence for expressing an envelope protein capable of infecting a target cell; and
the viral vector of claim 1 .
29 . The viral delivery system of claim 28 , wherein the at least one helper plasmid comprises first and second helper plasmids, wherein the first helper plasmid encodes nucleotide sequences for expressing functional proteins derived from the Gag and the Pol genes, and the second helper plasmid encodes a nucleotide sequence for expressing a protein derived from the rev gene
30 . A method of treating HIV, the method comprising:
contacting peripheral blood mononuclear cells (PBMC) isolated from a subject with a therapeutically effective amount of a stimulatory agent, wherein the contacting is carried out ex vivo;
transducing the PBMC ex vivo with a lentiviral particle, wherein the lentiviral particle comprises:
an envelope protein capable of infecting the PBMC; and
the viral vector of claim 1 ; and
culturing the transduced PBMC for at least 1 day.
31 . The method of claim 30 , further comprising infusing the transduced PBMC into the subject.
32 . The method of claim 30 , wherein the stimulatory agent comprises a Gag peptide or an HIV vaccine.