IP Library Granted Patent US 12,116,580
Granted Patent B2
US 12,116,580 · App. 17/180,741 · Granted Oct 15, 2024

Genetic toolbox for metabolic engineering of non-conventional yeast

Inventors: Huimin Zhao (Champaign, IL); Mingfeng Cao (Urbana, IL); Vinh Tran (Urbana, IL); Zia Fatma (Urbana, IL)
Assignee: The Board of Trustees of the University of Illinois
C12N15/815C12N9/22C12N15/11C12N2320/50
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Quick Facts
Patent No.
US 12,116,580
App. No.
17/180,741
Granted
Oct 15, 2024
Kind
B2
Abstract

The present disclosure provides polynucleotides and vectors for the genomic engineering and editing of non-conventional yeasts such as Issatchenkia orientalis . The polynucleotides and vectors can be used as tools that are efficient to alter the expression of one or more gene products in the yeast, and specifically to induce the production of organic acids or other bioproducts of interest in the yeast.

Claims (42)

1. A vector comprising a polynucleotide comprising a centromere-like sequence (CEN-L) having 90% or more sequence identity to the sequence set forth in SEQ ID NO:74 or SEQ ID NO:163, wherein the polynucleotide is 50% or less the size of a naturally-occurring CEN polynucleotide, and wherein the vector is a plasmid, a phage, a cosmid, yeast artificial chromosome, yeast integrative plasmid, yeast replicative plasmid, shuttle vector, or a viral vector.

2. The vector of claim 1 , further comprising a Saccharomyces cerevisiae autonomously replicating sequence (ScARS).

3. The vector of claim 2 , wherein the ScARS is set forth in SEQ ID NO:73.

4. An expression cassette comprising:

(i) a guide RNA (gRNA) targeting a polynucleotide and binding a catalytically-active RNA-guided DNA endonuclease protein, wherein the gRNA is operably linked to an RNA polymerase (RNAP) III promoter;

(ii) a polynucleotide encoding a catalytically active RNA-guided DNA endonuclease protein, wherein the polynucleotide is operably linked to a promoter sequence and to a terminator sequence;

(iii) a Saccharomyces cerevisiae autonomously replicating sequence (ScARS); and (iv) a centromere-like sequence (CEN-L) having 90% or more sequence identity to the sequence as set forth in SEQ ID NO:74 or SEQ ID NO: 163, wherein the CEN-L sequence is 50% or less the size of a naturally-occurring CEN sequence.

5. A vector comprising the expression cassette of claim 4 .

6. The vector of claim 5 , wherein the vector is a plasmid or a viral vector.

7. A recombinant yeast comprising the vector of claim 5 .

8. A method of altering the expression of one or more gene products in a yeast comprising transforming a yeast with the vector of claim 5 , wherein expression of at least one gene product is increased, expression of at least one gene product is decreased, at least one polynucleotide or fragment thereof is deleted, or combinations thereof as compared to a yeast that has not been transformed with the vector.

9. The expression cassette of claim 4 , wherein the promoter is g247, g5025, g853, g917, g3376, 92204, g3504, g3824, g43, g3767, g172, g973, or g4288.

10. The expression cassette of claim 4 , wherein the terminator is g4288t, g697t, g1414t, g4282t, g2204t, g3767t, g5025t, g3824t, g527t, g4194t, g853t, g5125t, g3376t, or g3540t.

11. An expression cassette comprising:

(i) one or more polynucleotides encoding one or more proteins of interest, wherein the one or more polynucleotides are each operably linked to a promoter sequence and to a terminator sequence;

(ii) a Saccharomyces cerevisiae autonomously replicating sequence (ScARS); and

(iii) a centromere-like sequence (CEN-L) having 90% or more sequence identity to the sequence as set forth in SEQ ID NO:74 or SEQ ID NO: 163, wherein the CEN-L sequence is 50% or less the size of a naturally-occurring CEN polynucleotide.

12. A vector comprising the expression cassette of claim 11 .

13. A system for targeted genome engineering comprising one or more vectors, each vector comprising:

(i) a guide RNA (gRNA) that binds a target polynucleotide and a catalytically-active RNA-guided DNA endonuclease protein;

(ii) a polynucleotide encoding a catalytically active RNA-guided DNA endonuclease protein that binds to a gRNA, generates a double-stranded nucleic acid break, and induces deletion of a target polynucleotide;

(iii) an RNA polymerase III promoter that induces capping a 5′ end of a polynucleotide, and polyadenylation of a 3′ end of the polynucleotide;

(iv) a Saccharomyces cerevisiae autonomously replicating sequence (ScARS);

(v) a centromere-like sequence (CEN-L) having 90% or more sequence identity to the sequence as set forth in SEQ ID NO:74 or SEQ ID NO: 163, wherein the CEN-L sequence is 50% or less the size of a naturally-occurring CEN sequence; or

(vi) a polynucleotide encoding a protein of interest, operably linked to a promoter sequence and to a terminator sequence.

14. A system for targeted genome engineering of a yeast, the system comprising one or more vectors comprising:

(i) a first single guide RNA (sgRNA) that is capable of binding a target nucleic acid and binding a first nuclease-deficient RNA-guided DNA endonuclease protein;

(ii) a second sgRNA that is capable of binding a target nucleic acid and binding a second nuclease-deficient RNA-guided DNA endonuclease protein;

(iii) a third sgRNA that is capable of binding a target nucleic acid and binding a catalytically-active RNA-guided DNA endonuclease protein;

(iv) a polynucleotide encoding the first nuclease-deficient RNA-guided DNA endonuclease protein that binds to the first sgRNA and causes transcriptional activation;

(v) a polynucleotide encoding the second nuclease-deficient RNA-guided DNA endonuclease protein that binds to the second sgRNA and causes transcriptional interference;

(vi) a polynucleotide encoding the catalytically active RNA-guided DNA endonuclease protein that binds to the third sgRNA and causes a double-stranded nucleic acid break and causes gene deletion;

(vii) a Saccharomyces cerevisiae autonomously replicating sequence (ScARS); and

(viii) a centromere-like sequence (CEN-L) having 90% or more sequence identity to the sequence as set forth in SEQ ID NO:74 or SEQ ID NO: 163, wherein the CEN-L sequence is 50% or less the size of a naturally-occurring CEN sequence.

15. The system of claim 14 , wherein components (i), (ii), (iii), (iv), (v), (vi), (vii), and (viii) are located on same or different vectors of the system.

16. The system of claim 14 , wherein the first single guide RNA (sgRNA) is operably linked to an RNA polymerase (RNAP) III promoter.

17. The system of claim 14 , wherein the first nuclease-deficient RNA-guided DNA endonuclease protein is functional only when bound to the first sgRNA.

18. The system of claim 14 , wherein the second nuclease-deficient RNA-guided DNA endonuclease protein is functional only when bound to the second sgRNA.

19. The system of claim 14 , wherein the catalytically active RNA-guided DNA endonuclease protein is functional only when bound to the third sgRNA.

20. A method of altering expression of gene products, the method comprising:

introducing into a yeast cell the system of claim 14 ,

wherein the expression of at least one gene product is increased, the expression of at least one gene product is decreased, and the expression of at least one gene product is deleted relative to a yeast cell that has not been transformed with the system of claim 14 .

Assignments (2)
CONFIRMATORY LICENSE Recorded Apr 26, 2021
From: UNIVERSITY OF ILLINOIS
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 056046/0293 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2021
From: ZHAO, HUIMIN; CAO, MINGFENG; TRAN, VINH; FATMA, ZIA
To: THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS
Reel/Frame 056003/0883 →
Continuity (2)
Provisional Application 62979798 · Feb 21, 2020
Related Publication 20210348175A1 · Nov 11, 2021