NUCLEIC ACID VACCINES FOR VARICELLA ZOSTER VIRUS (VZV)
Aspects of the disclosure relate to nucleic acid vaccines. The vaccines include at least one RNA polynucleotides having an open reading frame encoding at least one varicella zoster virus (VZV) antigen. Methods for preparing and using such vaccines are also described.
1 - 12 . (canceled)
13 . A messenger ribonucleic acid (mRNA) vaccine comprising;
(a) an mRNA polynucleotide comprising from 5′ to 3′ a 5′UTR, an open reading frame (ORF) encoding a varicella zoster virus (VZV) gE protein, and a 3′ UTR, wherein 100% of uracil nucleosides in the ORF of the mRNA polynucleotide are N1-methylpseudouridine; and
(b) a lipid nanoparticle comprising an ionizable cationic lipid, a neutral lipid, a sterol, and a polyethylene glycol (PEG)-modified lipid.
14 . The mRNA vaccine of claim 13 , wherein the VZV gE protein comprises the amino acid sequence of SEQ ID NO: 38.
15 . The mRNA vaccine of claim 13 , wherein the ORF comprises a nucleotide sequence comprising at least 90% sequence identity to a mRNA sequence corresponding to SEQ ID NO: 62.
16 . The mRNA vaccine of claim 13 , wherein the ORF comprises a nucleotide sequence of SEQ ID NO: 62.
17 . The mRNA vaccine of claim 14 , wherein the ORF comprises a nucleotide sequence comprising at least 90% sequence identity to a mRNA sequence corresponding to SEQ ID NO: 62.
18 . The mRNA vaccine of claim 13 , wherein the VZV gE protein comprises a Y569A mutation, relative to an amino acid sequence of SEQ ID NO: 10.
19 . The mRNA vaccine of claim 13 , wherein the VZV gE protein comprises a Y582G mutation, relative to an amino acid sequence of SEQ ID NO: 10.
20 . The mRNA vaccine of claim 13 , wherein the VZV gE polypeptide is a truncated polypeptide lacking a carboxy terminal tail domain.
21 . The mRNA vaccine of claim 13 , wherein the VZV gE polypeptide is a truncated polypeptide lacking an anchor domain.
22 . The mRNA vaccine of claim 13 , wherein the VZV gE polypeptide has at least one mutation in at least one phosphorylated acidic motif(s).
23 . The mRNA vaccine of claim 13 , wherein the lipid nanoparticle comprises 1,2-distearoyl-sn-glycero-3-phosphocholine (DSPC).
24 . The mRNA vaccine of claim 13 , wherein the lipid nanoparticle comprises PEG-distearoyl glycerol (PEG DMG).
25 . The mRNA vaccine of claim 13 , wherein the lipid nanoparticle comprises a cholesterol.
26 . The mRNA vaccine of claim 13 , wherein the lipid nanoparticle comprises 1,2-distearoyl-sn-glycero-3-phosphocholine (DSPC), cholesterol, and PEG-distearoyl glycerol (PEG DMG).
27 . The mRNA vaccine of claim 13 , wherein the mRNA vaccine comprises a second mRNA polynucleotide comprising a second ORF encoding a VZV antigen.
28 . The mRNA vaccine of claim 27 , wherein the second ORF encodes a VZV gI antigen.
29 . The mRNA vaccine of claim 13 , wherein the mRNA vaccine comprises a total dose of 25 μg-50 μg mRNA polynucleotide.
30 . A method of inducing an antigen specific immune response in a subject, comprising:
administering to the subject to produce an antigen-specific immune response in the subject an mRNA vaccine comprising:
(a) an mRNA polynucleotide comprising from 5′ to 3′ a 5′UTR, an open reading frame (ORF) encoding a varicella zoster virus (VZV) gE protein, and a 3′ UTR, wherein 100% of uracil nucleosides in the ORF of the mRNA polynucleotide are N1-methylpseudouridine; and
(b) a lipid nanoparticle comprising an ionizable cationic lipid, a neutral lipid, a sterol, and a polyethylene glycol (PEG)-modified lipid.
31 . The method of claim 30 , wherein the mRNA vaccine is administered in a total dose of 25 μg-100 μg mRNA polynucleotide.