US2017000858A1PendingUtilityA1

Complexes of rna and cationic peptides for transfection and for immunostimulation

Assignee: CUREVAC AGPriority: Sep 4, 2007Filed: Sep 22, 2016Published: Jan 5, 2017
Est. expirySep 4, 2027(~1.1 yrs left)· nominal 20-yr term from priority
A61P 37/02A61P 9/00A61P 31/12A61P 35/00A61P 37/08A61P 31/00A61K 2039/53C12Y 304/21022C07K 19/00C12N 15/87A61K 48/0066A61K 38/4846A61K 47/6455A61K 48/005C12N 9/0069A61K 38/45A61K 48/0041C12Y 204/01007A61K 48/0075C12Y 113/12007A61K 9/0019A61K 47/61A61K 48/0033A61K 39/00A61K 48/00C12N 15/11A61K 31/7088
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Claims

Abstract

The present invention relates to a complexed RNA, comprising at least one RNA complexed with one or more oligopeptides, wherein the oligopeptide, which has the function of cell-penetrating peptide (CPP), has a length of 8 to 15 amino acids and has the empirical formula (Arg) l ;(Lys) m ;(His) n ;(Orn) o ;(Xaa) x with the majority of residues being selected from Arg, Lys, His, Orn. The invention further relates to a method for transfecting a cell or an organism, thereby applying the inventive complexed RNA. Additionally, pharmaceutical compositions and kits comprising the inventive complexed RNA, as well as the use of the inventive complexed RNA for transfecting a cell, tissue or an organism and/or for modulating, preferably inducing or enhancing, an immune response are disclosed herein.

Claims

exact text as granted — not AI-modified
1 . An isolated mRNA comprising a polypeptide coding sequence at least 80% identical to the sequence of SEQ ID NO: 45, wherein the sequence encodes the human UGT1A1 polypeptide. 
     
     
         2 . The isolated mRNA of  claim 1 , wherein the polypeptide coding sequence is at least 85% identical to the sequence of SEQ ID NO: 45. 
     
     
         3 . The isolated mRNA of  claim 2 , wherein the polypeptide coding sequence is at least 90% identical to the sequence of SEQ ID NO: 45. 
     
     
         4 . The isolated mRNA of  claim 3 , wherein the polypeptide coding sequence is at least 95% identical to the sequence of SEQ ID NO: 45. 
     
     
         5 . The isolated mRNA of  claim 4 , wherein the polypeptide coding sequence comprises the sequence of SEQ ID NO: 45. 
     
     
         6 . The isolated mRNA of  claim 1 , wherein the mRNA is complexed with lipid. 
     
     
         7 . The isolated mRNA of  claim 1 , wherein the mRNA is complexed with at least one polycationic agent. 
     
     
         8 . The isolated mRNA of  claim 7 , wherein the polycationic agent is chosen from the group consisting of a polycationic lipid, protamine, poly-L-lysine, poly-L-arginine and histones. 
     
     
         9 . The isolated mRNA of  claim 8 , wherein the mRNA is complexed with protamine. 
     
     
         10 . The isolated mRNA of  claim 1 , wherein the mRNA comprises a 5′ cap structure. 
     
     
         11 . The isolated mRNA of  claim 1 , wherein the mRNA additionally comprises a poly-A tail of 10 to 200 adenosine nucleotides. 
     
     
         12 . The isolated mRNA of  claim 1 , wherein the mRNA additionally comprises a poly-C tail of 10 to 200 cytosine nucleotides. 
     
     
         13 . The isolated mRNA of  claim 1 , wherein the mRNA further comprises a 5′ and/or a 3′ untranslated region (UTR). 
     
     
         14 . The isolated mRNA of  claim 1 , wherein the mRNA is modified by introduction of a non-native nucleotide compared with a native mRNA sequence and/or by covalent coupling of the mRNA with a further chemical moiety. 
     
     
         15 . The isolated mRNA of  claim 1 , wherein the mRNA comprises a chemical modification relative to a naturally occurring mRNA. 
     
     
         16 . The isolated mRNA of  claim 15 , wherein the mRNA comprises at least one nucleotide that is substituted with a nucleotide analog selected from the group consisting of: 2′-deoxy-2′-fluoro-oligoribonucleotide (2′-fluoro-2′-deoxycytidine-5′-triphosphate, 2′-fluoro-2′-deoxyuridine-5′-triphosphate), 2′-deoxy-2′-deamine oligoribonucleotide (2′-amino-2′-deoxycytidine-5′-triphosphate, 2′-amino-2′-deoxyuridine-5′-triphosphate), 2′-O-alkyl oligoribonucleotide, 2′-deoxy-2′-C-alkyl oligoribonucleotide (2′-O-methylcytidine-5′-triphosphate, 2′-methyluridine-5′-triphosphate), 2′-C-alkyl oligoribonucleotide, and isomers thereof (2′-aracytidine-5′-triphosphate, 2′-arauridine-5′-triphosphate), or azidotriphosphate (2′-azido-2′-deoxycytidine-5′-triphosphate, 2′-azido-2′-deoxyuridine-5′-triphosphate)4-thio-uridine-5′-(mono)phosphate, 2-Aminopurine-riboside-5′-(mono)phosphate, 5-Aminoallylcytidine-5′-(mono)phosphate, 5-Aminoallyluridine-5′-(mono)phosphate, 5-Bromocytidine-5′-(mono)phosphate, 5-Bromo-2′-deoxycytidine-5′-(mono)phosphate, 5-Bromouridine-5′-(mono)phosphate, 5-Bromo-2′-deoxyuridine-5′-(mono)phosphate, 5-Iodocytidine-5′-(mono)phosphate, 5-Iodo-2′-deoxycytidine-5′-(mono)phosphate, 5-Iodouridine-5′-(mono)phosphate, 5-Iodo-2′-deoxyuridine-5′-(mono)phosphate, 5-Propynyl-2′-deoxycytidine-5′-(mono)phosphate, 5-Propynyl-2′-deoxyuridine-5′-(mono)phosphate, 5-formylcytidine-5′-(mono)phosphate, 5,2′-O-dimethylcytidine-5′-(mono)phosphate, 5-hydroxymethylcytidine-5′-(mono)phosphate, 5-formyl-2′-O-methylcytidine-5′-(mono)phosphate, 5,2′-O-dimethyluridine-5′-(mono)phosphate, 5-methyl-2-thiouridine-5′-(mono)phosphate, 5-hydroxyuridine-5′-(mono)phosphate, 5-methoxyuridine-5′-(mono)phosphate, uridine 5-oxyacetic acid-5′-(mono)phosphate, uridine 5-oxyacetic acid methyl ester-5′-(mono)phosphate, 5-(carboxyhydroxymethyl)uridine-5′-(mono)phosphate, 5-(carboxyhydroxymethyl)uridine methyl ester-5′-(mono)phosphate, 5-methoxycarbonylmethyluridine-5′-(mono)phosphate, 5-methoxycarbonylmethyl-2′-O-methyluridine-5′-(mono)phosphate, 5-methoxycarbonylmethyl-2-thiouridine-5′-(mono)phosphate, 5-aminomethyl-2-thiouridine-5′-(mono)phosphate, 5-methylaminomethyluridine-5′-(mono)phosphate, 5-methylaminomethyl-2-thiouridine-5′-(mono)phosphate, 5-methylaminomethyl-2-selenouridine-5′-(mono)phosphate, 5-carbamoylmethyluridine-5′-(mono)phosphate, 5-carbamoylmethyl-2′-O-methyluridine-5′-(mono)phosphate, 5-carboxymethylaminomethyluridine-5′-(mono)phosphate, 5-carboxymethylaminomethyl-2′-O-methyluridine-5′-(mono)phosphate, 5-carboxymethylaminomethyl-2-thiouridine-5′-(mono)phosphate, 5-carboxymethyluridine-5′-(mono)phosphate, 5-methyldihydrouridine-5′-(mono)phosphate, 5-taurinomethyluridine-5′-(mono)phosphate, 5-taurinomethyl-2-thiouridine-5′-(mono)phosphate, 5-(isopentenylaminomethyl)uridine-5′-(mono)phosphate, 5-(isopentenylaminomethyl)-2-thiouridine-5′-(mono)phosphate, 5-(isopentenylaminomethyl)-2′-O-methyluridine-5′-(mono)phosphate, 6-Azacytidine-5′-(mono)phosphate, 7-Deazaadenosine-5′-(mono)phosphate, 7-Deazaguanosine-5′-(mono)phosphate, 8-Azaadenosine-5′-(mono)phosphate, 8-Azidoadenosine-5′-(mono)phosphate, Pseudouridine-5′-(mono)phosphate, 2′-Amino-2′-deoxycytidine-(mono)phosphate, 2′-Fluorothymidine-5′-(mono)phosphate, inosine-5′-(mono)phosphate, and 2′-O-Methyl-inosine-5′-(mono)phosphate. 
     
     
         17 . The isolated mRNA of  claim 16 , wherein the mRNA comprises at least one nucleotide that is substituted with a nucleotide analog selected from the group consisting of: 2-amino-6-chloropurineriboside-5′-triphosphate, 2-aminoadenosine-5′-triphosphate, 2-thiocytidine-5′-triphosphate, 2-thiouridine-5′-triphosphate, 4-thiouridine-5′-triphosphate, 5-aminoallylcytidine-5′-triphosphate, 5-aminoallyluridine-5′-triphosphate, 5-bromocytidine-5′-triphosphate, 5-bromouridine-5′-triphosphate, 5-iodocytidine-5′-triphosphate, 5-iodouridine-5′-triphosphate, 5-methylcytidine-5′-triphosphate, 5-methyluridine-5′-triphosphate, 6-azacytidine-5′-triphosphate, 6-azauridine-5′-triphosphate, 6-chloropurineriboside-5′-triphosphate, 7-deazaadenosine-5′-triphosphate, 7-deazaguanosine-5′-triphosphate, 8-azaadenosine-5′-triphosphate, 8-azidoadenosine-5′-triphosphate, benzimidazole-riboside-5′-triphosphate, N1-methyladenosine-5′-triphosphate, N1-methylguanosine-5′-triphosphate, N6-methyladenosine-5′-triphosphate, O6-methylguanosine-5′-triphosphate, pseudouridine-5′-triphosphate, or puromycin-5′-triphosphate, xanthosine-5′-triphosphate. 
     
     
         18 . The isolated mRNA of  claim 17 , wherein the nucleotide analog is chosen from the group consisting of: 5-methylcytidine 5′-triphosphate and pseudouridine 5′-triphosphate. 
     
     
         19 . A method of treating a subject having Crigler-Najjar syndrome comprising administering an effective amount an mRNA according to  claim 1  to the subject.

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