IP Library › Granted Patent US 8,865,179
Granted Patent B2
US 8,865,179 · App. 12/011,303 · Granted Oct 21, 2014

Aptameric IgE peptides in a protein scaffold as an allergy vaccine

Inventor: Swey-Shen Alex Chen (San Diego, CA)
Assignee: Swey-Shen Alexchen
G01N33/6845C07K16/4291C07K2318/00C07K2317/50C07K2316/52C07K14/70503C07K2319/00G01N33/6878Y10S424/805Y10S424/81
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Quick Facts
Patent No.
US 8,865,179
App. No.
12/011,303
Granted
Oct 21, 2014
Kind
B2
Abstract

A method is disclosed wherein an antigenic B-cell epitope is discovered by in vitro transcription and translation of pre-determined sequence on thermostable protein scaffolds detected by antibodies to a native protein. Immune reactivities of IgE B-cell epitopes from pre-determined IgE sequences from the constant region, engaged in binding to high affinity IgE Fc receptors, placed in a loop of green fluorescent protein (GFP) were shown immuno-reactive with anti-IgE. Moreover, the antigenic B-cell epitope can be further optimized by molecular evolution, selected by conformer antibody and receptor on solid phase via ribosome display. Alternatively, a random aptameric antigenic sequence inserted into a loop of the protein scaffold, mimicking a pre-determined sequence of a native protein, can be selected by solid phase conformer antibody and receptor via ribosome display. High affinity binding of B-cell epitopes selected from the random aptameric library with antibodies to native pre-determined B-cell epitope of a native protein can be optimized by molecular evolution with error-prone RT-PCR by ribosome display.

Claims (14)

1. An aptameric IgE peptide fused in a protein scaffold wherein the IgE peptide is chosen from the group consisting of SEQ ID NO: 6, SEQ ID NO: 8, SEQ ID NO: 10, SEQ ID NO: 14, SEQ ID NO: 16, and SEQ ID NO: 18, and wherein the aptameric IgE peptidic protein scaffold is a fusion protein.

2. A pharmaceutical composition comprising one or more aptameric IgE peptides of claim 1 fused to a protein scaffold as fusion proteins.

3. A synthetic oligonucleotide encoding an aptameric IgE peptide of claim 1 wherein the oligonucleotide encoding the aptameric IgE peptide is recombinantly fused to a polynucleotide encoding a protein scaffold as a fusion polynucleotide.

4. A synthetic oligonucleotide encoding an aptameric IgE peptide of claim 1 wherein the oligonucleotide is chosen from the group consisting of SEQ ID NO: 5, SEQ ID NO: 7, SEQ ID NO: 9, SEQ ID NO: 13, SEQ ID NO: 15, and SEQ ID NO: 17, and wherein said synthetic oligonucleotide encoding the aptameric IgE peptide is fused to a polynucleotide encoding a protein scaffold as a fusion polynucleotide.

5. A pharmaceutical composition comprising one or more fusion polynucleotides of claim 3 or 4 .

6. A pharmaceutical composition comprising one or more fusion proteins encoded by one or more fusion polynucleotides of claim 5 .

7. A method of administering one or more aptameric IgE peptides fused to a protein scaffold of claim 2 as fusion proteins to patients to ameliorate IgE-mediated allergic diseases consisting of allergic asthma, allergic rhinitis, atopic dermatitis, allergic conjunctivitis, allergic urticaria, allergic angiodema, and IgE-mediated anaphylactic shock.

8. A method of administering one or more aptameric IgE peptides fused to a protein scaffold of claim 6 as fusion proteins to allergic patients for ameliorating IgE-mediated allergic diseases.

9. A method of administering one or more fusion polynucleotides of claim 5 to allergic patients for ameliorating IgE-mediated allergic diseases.

10. A method of generating aptameric IgE oligonucleotides fused to a polynucleotide encoding a protein scaffold as fusion polynucleotides, which are transcribed as mRNA, translated and selected by binding to high affinity IgE Fc receptors or neutralizing anti-IgE antibodies on the solid phase via protein display, wherein the selected mRNA is reverse transcribed by error-prone RT-PCR, and wherein the aptameric IgE oligonucleotide to initiate selection via protein display is chosen from the group consisting of SEQ ID NO: 5, SEQ ID NO: 7, SEQ ID NO: 9, SEQ ID NO: 13, SEQ ID NO: 15, and SEQ ID NO: 17, and wherein the selected binder aptameric IgE oligonucleotides fused to the polynucleotide selected by protein display are re-iteratively selected, and selected aptameric IgE oligonucleotides are sequenced, whereby the selected binder aptameric IgE fusion polynucleotide, and its recombinantly produced fusion protein are employed as vaccine for ameliorating IgE-mediated allergic diseases.

11. A method of administering one or more fusion proteins of claim 10 to allergic patients for ameliorating IgE-mediated allergic diseases.

12. A method of administering one or more fusion polynucleotides of claim 10 to allergic patients for ameliorating IgE-mediated allergic diseases.

13. The fusion protein of claim 1 , wherein the protein scaffold is green fluorescent protein or a single chain Fν antibody.

14. The method of claim 10 , wherein aptameric IgE oligonucleotides fused to a polynucleotide encoding a protein scaffold as fusion polynucleotides is selected by binding to high affinity IgE Fc receptors or neutralizing anti-IgE antibodies on the solid phase by protein display consisting of phages and yeasts.

Continuity (1)
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