Claims
- 1. A nutritionally enhanced food comprising
one or more plant-derived food ingredients, and as an additive, a seed composition containing a flour, extract, or malt obtained from mature monocot seeds and one or more seed-produced human milk proteins in substantially unpurified form.
- 2. The food of claim 1, wherein the seed-produced protein(s) present in the food are selected from the group consisting of lactoferrin, lysozyme, lactoferricin, epidermal growth factor, insulin-like growth factor-1, lactohedrin, kappa-casein, haptocorrin, lactoperoxidase, and alpha-1-antitrypsin.
- 3. The food of claim 2, wherein said the seed-produced proteins are lysozyme and lactoferrin.
- 4. The food of claim 3, which is an infant formula, wherein said the seed-produced proteins are lysozyme, in an amount between 0.03 to 0.3 g protein/liter formula, and lactoferrin, in an amount between 0.3 to 3 g/liter formula.
- 5. The food of claim 1, wherein the seed composition comprises between 0.1 to 20% of the total solid weight of the food.
- 6. The food of claim 5, which is an infant milk formula, and the seed composition contains a seed extract or malt obtained from mature seeds of rice or barley.
- 7. An ingestible monocot-seed composition containing a flour, extract, or malt obtained from mature monocot seeds and one or more seed-produced human milk proteins in substantially unpurified form.
- 8. The composition of claim 7, wherein the seed-produced protein(s) present in the extract are selected from the group consisting of lactoferrin, lysozyme, lactoferricin, epidermal growth factor, insulin-like growth factor-1, lactohedrin, kappa-casein, haptocorrin, lactoperoxidase, and alpha-1-antitrypsin.
- 9. The composition of claim 8, said the seed-produced proteins are lysozyme and lactoferrin.
- 10. The composition of claim 7, wherein at least one of human proteins is present in the added extract in an amount greater than 1 mg/gram dry weight of extract.
- 11. The composition of claim 1, wherein
(a) the flour is prepared by milling mature monocot seeds; (b) the extract is prepared by suspending milled flour in a buffered aqueous medium; and (c) the malt is prepared by (i) steeping barley seeds to a desired water content, (ii) germinating the stepped barley, (iii) drying the germinated seeds, under conditions effective to stop germination, (iv) crushing the dried seeds, (v) optionally, adding crushed seeds from a non-barley monocot plant, (vi) forming a mixture of crushed seeds in water, and (vii) malting the crushed seed mixture until a desired malt is achieved, where at least one of the barley or non-barley monocot seeds contain such milk protein(s).
- 12. The composition of claim 11, wherein step (v) includes adding to the crushed dried barley seeds, mature rice transgenic seeds that produce a milk protein.
- 13. A monocot seed containing, in extractable form, one or more proteins normally present in human milk.
- 14. The seed of claim 13, wherein the human-milk protein(s) are selected from the group consisting of lactoferrin, lysozyme, lactoferricin, EGF, KGF, IGF-I, lactohedrin, kappa-casein, haptocorrin, lactoperoxidase, alpha-1-antitrypsin, and immunoglobulins.
- 15. The seed of claim 14, wherein the human milk proteins are lysozyme and/or lactoferrin.
- 16. The seed of claim 13, which contains two or more proteins normally found in human milk.
- 17. The seeds of claim 13, wherein the milk proteins constitute at least 0.25 weight percent of the total protein in the harvested mature seeds.
- 18. A method of producing an ingestible seed composition, comprising
(a) obtaining a monocot plant that has been stably transformed with a first chimeric gene having (i) a transcriptional regulatory region from a monocot gene having a seed maturation-specific promoter, (ii) operably linked to said transcriptional regulatory region, a leader DNA sequence encoding a monocot seed-specific transit sequence capable of targeting a linked polypeptide to an endosperm-cell organelle, and (iii) a protein-coding sequence encoding a protein normally present in human milk; (b) cultivating the transformed plant under seed-maturation conditions; (c) harvesting mature seeds from the cultivated plant; and (d) extracting from the harvested seeds, a flour, extract, or malt composition containing the human milk protein in substantially unpurified form.
- 19. The method of claim 18, wherein the human milk protein(s) constitute at least 0.25 weight percent of the total protein in the harvested mature seeds.
- 20. The method of claim 18, wherein
(a) the flour is prepared by milling mature monocot seeds; (b) the extract is prepared by suspending milled flour in a buffered aqueous medium; and (c) the malt is prepared by (i) steeping barley seeds to a desired water content, (ii) germinating the stepped barley, (iii) drying the germinated seeds, under conditions effective to stop germination, (iv) crushing the dried seeds, and (v) after mixing the crushed seeds with water, malting the crushed seed mixture until a desired malt is achieved.
- 21. The method of claim 20, wherein the malt is further prepared by adding to the crushed dried seeds, mature non-barley transgenic monocot seeds that produce a milk protein.
- 22. The method of claim 18, wherein the monocot plant obtained is further transformed with a second chimeric gene having (i) a transcriptional regulatory region from a monocot gene having a seed maturation-specific promoter, (ii) operably linked to said transcriptional regulatory region, a transit DNA sequence encoding a monocot seed-specific transit sequence capable of targeting a linked polypeptide to an endosperm-cell organelle, and (iii) a protein-coding sequence encoding a protein normally present in human breast milk other than that encoded by the first chimeric gene.
- 23. A transgenic monocot plant which is stably transformed with a first chimeric gene having
(i) a transcriptional regulatory region from a monocot gene having a seed maturation-specific promoter, (ii) operably linked to said transcriptional regulatory region, a transit DNA sequence encoding a monocot seed-specific transit sequence capable of targeting a linked polypeptide to an endosperm-cell organelle, and (iii) a protein-coding sequence encoding a protein normally present in human milk.
- 24. The plant of claim 23, wherein the transcriptional regulatory region in the chimeric gene is from the promoter of a gene selected from the group of rice glutelins, rice globulins, oryzins, and prolamines, barley hordeins, wheat gliadins and glutenins, maize zeins and glutelins, oat glutelins, and sorghum kafirins, millet pennisetins, and rye secalins genes.
- 25. The plant of claim 24, wherein the leader sequence in the chimeric gene is from the gene selected from the group of rice glutelins, rice globulins oryzins, and prolamines, barley hordeins, wheat gliadins and glutenins, maize zeins and glutelins, oat glutelins, and sorghum kafirins, millet pennisetins, and rye secalins genes.
- 26. The plant of claim 25, wherein the transcriptional regulatory region in the chimeric gene is a rice glutelin Gt1 promoter, and the leader DNA sequence is a rice glutelin Gt1 signal sequence capable of targeting a linked polypeptide to a protein storage body.
- 27. The plant of claim 26, wherein glutelin Gt1 promoter and glutelin Gt1 signal sequence are included within the sequence identified by SEQ ID NO: 15.
- 28. The plant of claim 25, wherein the transcriptional regulatory region in the chimeric gene is a rice globulin Glb promoter, and the leader DNA sequence is a rice glutelin Gt1 signal sequence capable of targeting a linked polypeptide to a protein storage body.
- 29. The plant of claim 28, wherein the globulin Glb promoter and glutelin Gt1 signal sequence are included within the sequence identified by SEQ ID NO: 16.
- 30. The plant of claim 23, wherein the transformed monocot plant further comprises a nucleic acid that encodes at least one transcription factor selected from the group consisting of Reb, O2 and PBF, and an active fragment thereof.
- 31. The plant of claim 30, wherein the transcription factor is O2 and/or PBF.
- 32. The plant of claim 18, wherein the protein-coding sequence is the a coding sequence for a human milk protein selected from the group consisting of lactoferrin, lysozyme, lactoferricin, EGF, IGF-I, lactohedrin, kappa-casein, haptocorrin, lactoperoxidase, alpha-1-antitrypsin, and immunoglobulins.
- 33. The plant of claim 32, wherein the protein coding sequence is selected from the group of codon-optimized sequences identified by SEQ ID NOS: 1, 3, and 7-14.
- 34. The plant of claim 18, which is further stably transformed with a second chimeric gene having
(i) a transcriptional regulatory region from a monocot gene having a seed maturation-specific promoter, (ii) operably linked to said transcriptional regulatory region, a transit DNA sequence encoding a monocot seed-specific transit sequence capable of targeting a linked polypeptide to an endosperm-cell organelle, and (iii) a protein-coding sequence encoding a protein normally present in human breast milk other than that encoded by the first chimeric gene.
- 35. A method of forming a malt syrup containing one or more human milk proteins, comprising
(i) steeping barley seeds to a desired water content, (ii) germinating the steeped barley, (iii) drying the germinated seeds, under conditions effective to stop germination, (iv) crushing the dried seeds, (v) optionally, adding crushed seeds from a non-barley monocot plant, and (vi) forming a mixture of crushed seeds in water, and (vii) malting the crushed seed mixture until a desired malt is achieved. where at least one of the barley or non-barley monocot seeds are obtained from plants that have been stably transformed with a first chimeric gene having (i) a transcriptional regulatory region from a monocot gene having a seed maturation-specific promoter, (ii) operably linked to said transcriptional regulatory region, a transit DNA sequence encoding a monocot seed-specific transit sequence capable of targeting a linked polypeptide to an endosperm-cell organelle, and (iii) a protein-coding sequence encoding a protein normally present in human breast milk.
- 36. The method of claim 35, wherein step (v) includes adding to the crushed dried barley seeds, mature rice transgenic seeds that produce a milk protein.
- 37. The method of claim 18, wherein said extracting includes crushing the seeds and suspending the crushed seeds in an aqueous medium buffered to physiological pH.
Parent Case Info
[0001] This application claims priority benefit to U.S. provisional application Ser. No. 60/269,199, filed Feb. 14, 2001, for “Expression of Human Milk Proteins in Transgenic Plants”, which is incorporated herein in its entirety. The present application is also a continuation-in-part of U.S. patent application Ser. No. 09/847,232, filed May 2, 2001, for “Plant Transcription Factors and Enhanced Gene Expression”, which claims the benefit of U.S. provisional application Ser. No. 60/266,929, filed Feb. 6, 2001, and U.S. provisional application Ser. No. 60/201,182, filed May 2, 2000, all of which are incorporated herein by reference. The corresponding PCT application No. PCT/US01/14234, International Publication No. WO 01/83792 A1, published Nov. 8, 2001, is also incorporated herein by reference.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60269199 |
Feb 2001 |
US |
|
60266929 |
Feb 2001 |
US |
|
60201182 |
May 2000 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09847232 |
May 2001 |
US |
Child |
10077381 |
Feb 2002 |
US |