IP Library Granted Patent US 11,718,856
Granted Patent B2
US 11,718,856 · App. 17/717,000 · Granted Aug 8, 2023

Recombinant micelle and method of in vivo assembly

Inventor: Cory J. Tobin (Pasadena, CA)
Assignee: MOZZA FOODS, INC.
C12N15/8202B01D61/145B01D61/146B01D61/147C12N15/8218B01D2315/16
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Quick Facts
Patent No.
US 11,718,856
App. No.
17/717,000
Granted
Aug 8, 2023
Kind
B2
Abstract

A method of in vivo assembly of a recombinant micelle including: introducing a plasmid into a plant cell, wherein: the plasmid includes a segment of deoxyribonucleic acid (DNA) for encoding a ribonucleic acid (RNA) for a protein in a casein micelle, the segment of DNA is transcribed and translated; forming recombinant casein proteins in the plant cell, wherein: the recombinant casein proteins include a κ-casein and at least one of an αS 1 -casein, an αS 2 -casein, a β-casein; and assembling in vivo a recombinant micelle within the plant cell, wherein: an outer layer of the recombinant micelle is enriched with the κ-casein, an inner matrix of the recombinant micelle include at least one of the αS 1 -casein, the αS 2 -casein, the β-casein.

Claims (21)

1. A method of in vivo assembly of a recombinant micelle, comprising:

co-expressing at least two ruminant casein proteins in a plant cell;

wherein the at least two ruminant casein proteins comprise a κ-casein and at least one of an αS1-casein, an αS2-casein, or a β-casein; and

wherein the κ-casein and at least one of the αS1-casein, the αS2-casein, or the β-casein form the recombinant micelle in the plant cell.

2. The method in claim 1 , wherein the at least two ruminant casein proteins are bovine casein proteins.

3. The method in claim 1 , wherein co-expressing the at least two ruminant casein proteins in the plant cell comprises introducing a plasmid into the plant cell, wherein the plasmid comprises deoxyribonucleic acid (DNA) encoding ribonucleic acid (RNA) for the at least two ruminant casein proteins.

4. The method of in vivo assembly of a recombinant micelle in claim 1 , wherein the recombinant micelle comprises:

1) an outer layer comprising the κ-casein, and

2) an inner matrix comprising at least one of the αS1-casein, the αS2-casein, or the β-casein.

5. The method of in vivo assembly of a recombinant micelle of claim 1 , further comprising:

introducing at least one plasmid into the plant cell, wherein the at least one plasmid comprises

at least one deoxyribonucleic acid (DNA) sequence encoding ribonucleic acid (RNA) for the at least two ruminant casein proteins comprising the κ-casein, the αS1-casein, the αS2-casein, or the β-casein.

6. A plant cell co-expressing at least two ruminant casein proteins, wherein the at least two ruminant casein proteins comprise a κ-casein and at least one of an αS1-casein, an αS2-casein, or a β-casein, and wherein the κ-casein and at least one of the αS1-casein, the αS2-casein, or the β-casein, form a recombinant micelle in the plant cell.

7. The plant cell in claim 6 , wherein co-expressing the at least two ruminant casein proteins in the plant cell comprises introducing a plasmid into the plant cell, wherein the plasmid comprises deoxyribonucleic acid (DNA) encoding ribonucleic acid (RNA) for the at least two ruminant casein proteins.

8. A plant comprising the plant cell in claim 6 .

9. The plant in claim 8 , wherein the plant is at least one of maize, rice, sorghum, cowpea, soybean, cassava, coyam, sesame, peanut, peas, cotton, or yam.

10. The method in claim 1 , wherein the recombinant micelle is assembled in an organelle of the plant cell.

11. The method in claim 10 , wherein the organelle comprises a vacuole.

12. The method in claim 1 , wherein the plant is soybean.

13. The plant cell in claim 6 , wherein the plant is soybean.

14. The plant in claim 8 , wherein the plant is soybean.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2022
From: TOBIN, CORY J.
To: MOZZA FOODS, INC.
Reel/Frame 061991/0069 →
Continuity (3)
Continuation 16741680 · Jan 13, 2020
Provisional Application 62939247 · Nov 22, 2019
Related Publication 20220325292A1 · Oct 13, 2022
Cited By (1)
US 12,241,109