IP Library › Granted Patent US 12,365,890
Granted Patent B2
US 12,365,890 · App. 18/545,514 · Granted Jul 22, 2025

Optimization of yeast host cells for the production of heterologous proteins

Inventors: Michelle Oeser (Croydon, NH); Janet Fisher (Ossipee, NH); Aaron Argyros (Lebanon, NH)
Assignee: DANSTAR FERMENT AG
C12N9/88C12N9/00C12N15/81
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,365,890
App. No.
18/545,514
Granted
Jul 22, 2025
Kind
B2
Abstract

The present disclosure concerns yeast host cell especially suited for the expression of heterologous proteins, such as heterologous enzymes. The yeast host cell of the present disclosure exhibits an alteration in the cAMP signaling pathway which allows achieving increased heterologous protein yield and associated biological activity. The yeast host cell can also exhibit polyploidy.

Claims (35)

1. A recombinant yeast host cell for making an increased amount of a heterologous protein, wherein the recombinant yeast host cell:

(i) (a) has a first heterologous nucleic acid encoding the heterologous protein; and

(b) expresses a variant CYR1 protein; and/or

(ii) is obtained by introducing the first heterologous nucleic acid encoding the heterologous protein in an ancestral yeast host cell that expresses a variant CYR1 protein;

wherein the variant CYR1 protein:

provides to the recombinant yeast host cell or the ancestral yeast host cell a similar intracellular cAMP production in the presence and in the absence of a cAMP stimulus known to stimulate intracellular cAMP production in a control yeast cell, and

comprises the amino acid sequence of SEQ ID NO: 8 with a substitution at position 258, 835, and/or 1435 or a variant thereof having 90% identity with the amino acid sequence of SEQ ID NO: 8 with a substitution at position 258, 835, and/or 1435.

2. The recombinant yeast host cell of claim 1 , wherein the amount of heterologous protein per cell of the recombinant yeast host cell is increased with respect to a corresponding amount in a control yeast cell.

3. The recombinant yeast host cell of claim 1 , wherein the control yeast cell corresponds to biological deposit PTA-125176 or a yeast cell having the characteristics of the biological deposit PTA-125176; the ancestral yeast host cell is biological deposit PTA-125175 or a yeast cell having the characteristics of the biological deposit PTA-125175; and/or the ancestral yeast host cell is biological deposit PTA-125177 or a yeast cell having the characteristics of the biological deposit PTA-125177.

4. The recombinant yeast host cell of claim 1 , wherein

the variant CYR1 protein is encoded by a variant CYR1 gene,

the variant CYR1 gene is a native CYR1 gene in the yeast ancestral host cell, or the recombinant yeast host cell comprises a second heterologous nucleic acid molecule comprising the variant CYR1 gene.

5. The recombinant yeast host cell of claim 4 , wherein the variant CYR1 gene has at least one single nucleotide polymorphism (SNP).

6. The recombinant yeast host cell of claim 5 , wherein the at least one SNP comprises G772A, C2480T and/or C4305A when using the numbering of the nucleic acid sequence of SEQ ID NO: 7.

7. The recombinant yeast host cell of claim 1 , wherein the variant CYR1 protein has an A258T, A835V and/or D1435E substitution when using the numbering of the amino acid sequence of SEQ ID NO: 8 or a variant thereof having 90% identity with the amino acid sequence of SEQ ID NO: 8 with a substitution at position A258T, A835V, and/or D1435E.

8. The recombinant yeast host cell of claim 1 exhibiting polyploidy in at least one chromosome.

9. The recombinant yeast host cell of claim 8 , wherein polyploidy comprises triploidy in at least one first chromosome and tetraploidy in at least one second chromosome.

10. The recombinant yeast host cell of claim 1 , wherein the heterologous protein is a heterologous enzyme.

11. The recombinant yeast host cell of claim 10 , wherein the heterologous enzyme is at least one of a maltogenic alpha-amylase, an alpha-amylase, an oxidoreductase, a transferase, an hydrolase, a lyase, an isomerase, a phosphatase, a ligase, a glucoamylase, a fungal amylase, a phytase or a glucose oxidase.

12. The recombinant yeast host cell of claim 1 being a cell of genus Saccharomyces or a cell of species Saccharomyces cerevisiae.

13. A method of making the recombinant yeast host cell of claim 1 , the method comprising:

a) selecting an ancestral yeast host cell as defined in claim 1 ; and

b) introducing a first heterologous nucleic acid molecule encoding the heterologous protein in the selected ancestral host cell to obtain the recombinant yeast host cell.

14. A process for making a yeast product, the process comprising:

i) culturing the recombinant yeast host cell of claim 1 to obtain a cultured recombinant yeast host cell; and

ii) formulating the cultured yeast host cell into the yeast product.

15. The process of claim 14 comprising, at step ii):

a) lysing the cultured yeast host cell to obtain a lysed yeast product.

16. The process of claim 14 , wherein the yeast product is an autolysate, a yeast cell wall, a yeast extract, or a purified heterologous protein.

17. The process of claim 16 , wherein the purified heterologous protein is a heterologous enzyme.

18. The recombinant yeast host cell of claim 1 , wherein the variant CYR1 protein comprises a further substitution at position 869 when using the numbering of the amino acid sequence of SEQ ID NO: 8.

19. The recombinant yeast host cell of claim 18 , wherein the further substitution at position 869 is E869K.

20. The recombinant yeast host cell of claim 19 , wherein the variant CYR1 protein is encoded by a variant CYR1 gene having a further single nucleotide polymorphism (SNP), wherein the further SNP is G2605A.

21. The process of claim 15 comprising, at step ii):

b) drying the lysed yeast product to obtain a lysed and dried yeast product.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2024
From: OESER, MICHELLE; FISHER, JANET; ARGYROS, AARON
To: LALLEMAND USA, INC.
Reel/Frame 069567/0268 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2024
From: LALLEMAND USA INC.
To: DANSTAR FERMENT AG
Reel/Frame 066558/0726 →
Continuity (3)
Continuation 17277220
Provisional Application 62733471 · Sep 19, 2018
Related Publication 20240182882A1 · Jun 6, 2024
References Cited (9)
US 11891641B2 · Oeser · 2024 [cited by examiner]
US 20050239164A1 · Perrone et al. · 2005 [cited by applicant]
US 20100167363A1 · Bramucci et al. · 2010 [cited by applicant]
US 20140096439A1 · Bramucci et al. · 2014 [cited by applicant]
WO WO2017158189A1 · 2017 [cited by applicant]
GenBank, “ [cited by applicant]
Shanmugavel et al., “Probing functional roles of Wilson disease protein (ATP7B) copper-binding domains in yeast,” [cited by applicant]
Ulaganathan et al., “Genome Sequence of [cited by applicant]
Nevoight, “Progress in Metabolic Engineering of [cited by applicant]