IP Library Granted Patent US 9,688,967
Granted Patent B2
US 9,688,967 · App. 15/164,828 · Granted Jun 27, 2017

Bacteria engineered to treat diseases associated with hyperammonemia

Inventors: Dean Falb (Sherborn, MA); Vincent M. Isabella (Cambridge, MA); Jonathan W. Kotula (Somerville, MA); Paul F. Miller (Salem, CT); Suman Machinani (Cambridge, MA)
Assignee: Synlogic, Inc.
C12N9/1029A61K35/74A61K35/741C07K14/245C12N15/52C12N15/70C12R1/19C12Y203/01001C12P7/52
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Quick Facts
Patent No.
US 9,688,967
App. No.
15/164,828
Granted
Jun 27, 2017
Kind
B2
Abstract

Genetically engineered bacteria, pharmaceutical compositions thereof, and methods of modulating and treating disorders associated with hyperammonemia are disclosed.

Claims (30)

1. A bacterium comprising a gene sequence encoding an arginine feedback resistant N-acetylglutamate synthetase (ArgA fbr ), wherein the ArgA fbr has reduced arginine feedback inhibition as compared to a wild-type N-acetylglutamate synthetase from the same bacterial subtype under the same conditions,

wherein the gene sequence encoding the ArgA fbr is present in the bacterial chromosome and is operably linked in the chromosome to a promoter that is induced by low-oxygen or anaerobic conditions;

wherein the bacterium has been modified to lack a functional ArgR; and

wherein the bacterium is an auxotroph in a gene that is complemented when the bacterium is present in a mammalian gut.

2. The bacterium of claim 1 , wherein the bacterium is a thyA or dapB auxotroph.

3. The bacterium of claim 1 , wherein the bacterium comprises an antibiotic resistance gene.

4. The bacterium of claim 3 , wherein the antibiotic resistance gene is selected from a kanamycin resistance gene, a chloramphenicol resistance gene, and a rifaximin resistance gene.

5. The bacterium of claim 1 , wherein the bacterium contains a DNA sequence having at least 90% homology to SEQ ID NO: 38.

6. The bacterium of claim 5 , wherein the bacterium contains a DNA sequence comprising SEQ ID NO: 38.

7. The bacterium of claim 1 , wherein the promoter that is induced by low-oxygen or anaerobic conditions is an FNR promoter selected from nirB1, nirB2, nirB3, ydfZ, fnrS1, and fnrS2.

8. The bacterium of claim 7 , wherein the FNR promoter is fnrS1.

9. The bacterium of claim 8 , wherein the fnrS1 promoter comprises SEQ ID NO: 113.

10. The bacterium of claim 1 , wherein the arginine feedback resistant N-acetylglutamate synthetase gene has a DNA sequence selected from:

a) SEQ ID NO: 30,

b) a DNA sequence that, but for the redundancy of the genetic code, encodes the same polypeptide as encoded by SEQ ID NO: 30,

c) a DNA sequence that encodes the polypeptide of SEQ ID NO: 31, and

d) a DNA sequence that encodes a polypeptide having 95% homology with the polypeptide of SEQ ID NO: 31.

11. The bacterium of claim 1 , wherein the bacterium is Escherichia coil strain Nissle.

12. A pharmaceutical composition comprising the bacterium of claim 1 and a pharmaceutically acceptable carrier.

13. The pharmaceutical composition of claim 12 , wherein the pharmaceutical composition is formulated for oral administration.

14. The bacterium of claim 1 , wherein the bacterium comprises a gene sequence encoding a biosynthetic pathway for producing butyrate.

15. The bacterium of claim 14 , wherein the gene sequence encoding the biosynthetic pathway for producing butyrate is operably linked to a promoter that is induced by low-oxygen or anaerobic conditions.

16. The bacterium of claim 15 , wherein the promoter that is operably linked to the gene sequence encoding ArgA fbr and the promoter that is operably linked to the gene sequence encoding the biosynthetic pathway for producing butyrate is an FNR promoter.

17. A bacterium comprising a gene sequence encoding an arginine feedback resistant N-acetylglutamate synthetase (ArgA fbr ), wherein the ArgA fbr has reduced arginine feedback inhibition as compared to a wild-type N-acetylglutamate synthetase from the same bacterial subtype under the same conditions,

wherein the gene sequence encoding the ArgA fbr is operably linked to a promoter that is induced by low-oxygen or anaerobic conditions;

wherein the bacterium has been modified to lack a functional ArgR; and

wherein the bacterium comprises a gene sequence encoding a biosynthetic pathway for producing butyrate.

18. The bacterium of claim 17 , wherein the bacterium is an auxotroph in a gene that is complemented when the bacterium is present in a mammalian gut.

19. The bacterium of claim 18 , wherein the gene sequence encoding the biosynthetic pathway for producing butyrate is operably linked to a promoter that is induced by low-oxygen or anaerobic conditions.

20. The bacterium of claim 17 , wherein the bacterium is selected from the group consisting of Bacteroides, Bifidobacterium, Clostridium, Escherichia, Lactobacillus , and Lactococcus .

Assignments (2)
MERGER Recorded Nov 28, 2018
From: SYNLOGIC, INC.
To: SYNLOGIC OPERATING COMPANY, INC.
Reel/Frame 047604/0094 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2016
From: FALB, DEAN; ISABELLA, VINCENT M; KOTULA, JONATHAN W; MILLER, PAUL F; MACHINANI, SUMAN
To: SYNLOGIC, INC.
Reel/Frame 039282/0938 →
Continuity (20)
Continuation In Part PCTUS2016020530 · Mar 2, 2016
Continuation In Part 14960333 · Dec 4, 2015
Provisional Application 62291468 · Feb 4, 2016
Provisional Application 62256048 · Nov 16, 2015
Provisional Application 62248805 · Oct 30, 2015
Provisional Application 62184770 · Jun 25, 2015
Provisional Application 62263329 · Dec 4, 2015
Provisional Application 62256039 · Nov 16, 2015
Provisional Application 62256041 · Nov 16, 2015
Provisional Application 62184811 · Jun 25, 2015
Provisional Application 62183935 · Jun 24, 2015
Provisional Application 62173706 · Jun 10, 2015
Provisional Application 62173710 · Jun 10, 2015
Provisional Application 62150508 · Apr 21, 2015
Provisional Application 62103513 · Jan 14, 2015
Provisional Application 62087854 · Dec 5, 2014
Provisional Application 62293749 · Feb 10, 2016
Provisional Application 62277654 · Jan 12, 2016
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