IP Library Granted Patent US 11,572,576
Granted Patent B2
US 11,572,576 · App. 17/170,523 · Granted Feb 7, 2023

Limiting yeast-produced trehalose in fermentation

Inventors: Charles F. Rice (Plainfield, NH); Ryan Skinner (Bethel, VT); Trisha Barrett (Bradford, VT); Aaron Argyros (Lebanon, NH)
Assignee: Lallemand Hungary Liquidity Management LLC
C12P7/10C12N1/18C12N9/2402C12N15/81C12P7/20C12Y302/01028C12P19/12Y02E50/10
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Quick Facts
Patent No.
US 11,572,576
App. No.
17/170,523
Granted
Feb 7, 2023
Kind
B2
Abstract

The present disclosure relates to recombinant yeast host cells having (i) a first genetic modification for reducing the production of one or more native enzymes that function to produce glycerol or regulating glycerol synthesis and/or allowing the production of an heterologous glucoamylase and (ii) a second genetic modification for reducing the production of one or more native enzymes that function to produce trehalose or regulating trehalose synthesis and/or allowing the expression of an heterologous trehalase. The recombinant yeast host cells can be used to limit the production of (yeast-produced) trehalose (particularly extracellular trehalose) during fermentation and, in some embodiments, can increase the production of a fermentation product (such as, for example, ethanol).

Claims (23)

1. A recombinant yeast host cell comprising:

(i) a first genetic modification for reducing the production of glycerol; and

(ii) a second genetic modification for allowing the expression of a heterologous trehalase;

wherein the first genetic modification for reducing the production of glycerol is:

(a) for reducing the production of a FDP1 suppressor (FPS1) polypeptide or a polypeptide encoded by a fps1 gene ortholog, or a combination thereof; and/or

(b) for increasing the production of sugar transporter-like (STL1) polypeptide or a polypeptide encoded by a stl1 gene ortholog, or a combination thereof.

2. The recombinant yeast host cell of claim 1 , wherein the first genetic modification is for reducing the production of one or more native enzymes that function to produce glycerol, wherein the one or more native enzymes that function to produce glycerol is a glycerol-3-phosphate dehydrogenase 1 (GPD1) polypeptide, a polypeptide encoded by a gpd1 gene ortholog, a glycerol-3-phosphate dehydrogenase 2 (GPD2) polypeptide, a polypeptide encoded by a gpd2 gene ortholog, or a combination thereof.

3. The recombinant yeast host cell of claim 1 , wherein the first genetic modification is for reducing the production of a FDP1 suppressor (FPS1) polypeptide or a polypeptide encoded by a fps1 gene ortholog, or a combination thereof.

4. The recombinant yeast host cell of claim 1 , wherein the first genetic modification is for increasing the production of sugar transporter-like (STL1) polypeptide or a polypeptide encoded by a stl1 gene ortholog, or a combination thereof.

5. The recombinant yeast host cell of claim 1 , wherein the first genetic modification is for expressing a STL1 polypeptide, a polypeptide encoded by a stl1 gene ortholog, or a combination thereof from one or more heterologous nucleic acid molecule.

6. The recombinant yeast host cell of claim 2 , wherein the first genetic modification is for increasing the production of sugar transporter-like (STL1) polypeptide or a polypeptide encoded by a stl1 gene ortholog, or a combination thereof to reduce the production of one or more native enzymes that function to produce glycerol.

7. The recombinant yeast host cell of claim 6 , wherein the first genetic modification comprises expressing the STL1 polypeptide, the polypeptide encoded by the stl1 gene ortholog, or a combination thereof from one or more heterologous nucleic acid molecule.

8. The recombinant yeast host cell of claim 1 , wherein the heterologous trehalase is an acid trehalase.

9. The recombinant yeast host cell of claim 1 , wherein the heterologous trehalase is from Neurospora sp.

10. The recombinant yeast host cell of claim 1 , wherein the heterologous trehalase has the amino acid sequence of SEQ ID NO: 10, is a variant of the amino acid sequence of SEQ ID NO: 10 having trehalase activity or is a fragment of the amino acid sequence of SEQ ID NO: 10 having trehalase activity.

11. The recombinant yeast host cell of claim 5 , wherein the heterologous trehalase is an acid trehalase.

12. The recombinant yeast host cell of claim 5 , wherein the heterologous trehalase is from Neurospora sp.

13. The recombinant yeast host cell of claim 5 , wherein the heterologous trehalase has the amino acid sequence of SEQ ID NO: 10, is a variant of the amino acid sequence of SEQ ID NO: 10 having trehalase activity or is a fragment of the amino acid sequence of SEQ ID NO: 10 having trehalase activity.

14. The recombinant yeast host cell of claim 1 being from the genus Saccharomyces sp.

15. The recombinant yeast host cell of claim 14 being from the species Saccharomyces cerevisiae.

16. A process for converting a substrate into a fermentation product, the process comprising contacting biomass comprising the substrate with the recombinant yeast host cell of claim 1 under conditions to allow conversion of at least a part of the substrate into the fermentation product.

17. The process of claim 16 , wherein the substrate comprises corn, starch, maltodextrin or a combination thereof.

18. The process of claim 16 , wherein the fermentation product is ethanol.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2024
From: LALLEMAND HUNGARY LIQUIDITY MANAGEMENT LLC
To: DANSTAR FERMENT AG
Reel/Frame 068174/0430 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2021
From: RICE, CHARLES F.; SKINNER, RYAN; BARRETT, TRISHA; ARGYROS, AARON
To: LALLEMAND HUNGARY LIQUIDITY MANAGEMENT LLC
Reel/Frame 055198/0282 →
Continuity (4)
Continuation 16776389 · Jan 29, 2020
Continuation 15773139
Provisional Application 62251885 · Nov 6, 2015
Related Publication 20210163998A1 · Jun 3, 2021