IP Library Granted Patent US 9,220,764
Granted Patent B2
US 9,220,764 · App. 13/733,777 · Granted Dec 29, 2015

Immunogenic compositions against tuberculosis

Inventors: Adel M. Talaat (Madison, WI); Sarah K. Ward (Madison, WI); Bassam Abomoelak (Louisville, KY)
Assignee: WISCONSIN ALUMNI RESEARCH FOUNDATION
A61K39/04C12N1/36A61K35/74A61K2039/522C07K14/35C12N15/86
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Quick Facts
Patent No.
US 9,220,764
App. No.
13/733,777
Granted
Dec 29, 2015
Kind
B2
Abstract

Methods of preparing mutants of Mycobacterium tuberculosis with one or more disrupted genes are presented, where the disrupted genes include ctpV, rv0990c, rv0971c, and/or rv0348. Compositions containing mutants with attenuated virulence and pathogenesis, which are capable of stimulation of an immune response against tuberculosis, are described. Compositions and methods relating to immunogenic compositions, which include an attenuated M. tb strain in which the M. tb genome includes a disruption of at least one of the ctpV gene, the rv0990c gene, the rv0971c gene, and the rv0348 gene, are also provided.

Claims (18)

1. An engineered Mycobacterium tuberculosis strain whose genome comprises a disruption of an rv0348 gene, wherein the disrupted rv0348 gene comprises an insertion of a heterologous sequence into a coding sequence of the rv0348 gene.

2. The engineered Mycobacterium tuberculosis strain of claim 1 , wherein the disrupted rv0348 gene comprises an insertion of a gene cassette into the rv0348 gene at least 269 bp after a translation start position and mice infected with the engineered M. tuberculosis strain have an increased average post-infection lifespan of at least 125% compared to mice infected with a corresponding wild-type strain.

3. The engineered Mycobacterium tuberculosis strain of claim 1 , wherein the disrupted rv0348 gene comprises an insertion of a gene cassette into the rv0348 gene at least 269 bp after a translation start position and mice infected with the engineered M. tuberculosis strain have a decreased level of inflammatory lung lesions compared to mice infected with a corresponding wild-type strain.

4. The engineered Mycobacterium tuberculosis strain of claim 1 , wherein the disrupted rv0348 gene comprises an insertion of a gene cassette into the rv0348 gene at least 269 bp after a translation start position and the engineered M. tuberculosis strain exhibits enhanced expression of one or more of the following genes: Rv0823c-Rv0824c; Rv1622c; Rv1623c; Rv2031c; Rv2629-Rv2630; Rv3048c; Rv0353c; and Rv3139-Rv3140.

5. The engineered Mycobacterium tuberculosis strain of claim 1 , wherein the disrupted rv0348 gene comprises an insertion of a gene cassette into the rv0348 gene at least 269 bp after a translation start position and the engineered M. tuberculosis strain exhibits decreased expression of one or more of the following genes: Rv0167-0177; Rv0684-0685; Rv0700-0710; Rv0718-0723; Rc1184c-1185c; Rv1613-1614; Rv2391, 2392; Rv2948c-Rv2950c; Rv3148-3154; Rv3460c; Rv3824c-Rv3825c; and Rv3921c-Rv3924c.

6. An engineered attenuated Mycobacterium tuberculosis strain whose genome comprises a disruption of an rv0348 gene, wherein the disrupted rv0348 gene comprises an insertion of a heterologous sequence into a coding sequence of the rv0348 gene.

7. An immunogenic composition comprising a pharmaceutically acceptable carrier and the engineered attenuated Mycobacterium tuberculosis strain of claim 6 .

8. The immunogenic composition of claim 7 , further comprising a pharmaceutically acceptable adjuvant.

9. A method of stimulating an immune response comprising:

administering to a mammal/subject the immunogenic composition according to claim 7 .

10. The engineered attenuated Mycobacterium tuberculosis strain of claim 6 , wherein the insertion of the heterologous sequence comprises an insertion of a gene cassette into the rv0348 gene at 269 bp after a translation start position.

11. The engineered attenuated Mycobacterium tuberculosis strain of claim 6 , wherein the disrupted rv0348 gene comprises an insertion of the heterologous sequence into the rv0348 gene at least 269 bp after a translation start position and the disrupted gene exhibits decreased expression of a rv0348 gene product.

12. The engineered attenuated Mycobacterium tuberculosis strain of claim 6 , wherein the disrupted rv0348 gene comprises an insertion of the heterologous sequence into the rv0348 gene at least 269 bp after a translation start position and the disruption prohibits transcription of a full-length wild-type mRNA from the disrupted rv0348 gene.

13. The engineered attenuated Mycobacterium tuberculosis strain of claim 6 , wherein the disrupted rv0348 gene comprises an insertion of the heterologous sequence into the rv0348 gene at least 269 bp after a translation start position and the disruption prohibits production of a functional wild-type rv0348 protein.

14. An immunogenic composition comprising the engineered attenuated Mycobacterium tuberculosis strain of claim 6 , wherein the disrupted rv0348 gene comprises an insertion of the heterologous sequence into the rv0348 gene at least 269 bp after a translation start position.

15. The immunogenic composition of claim 14 ;

wherein the disrupted rv0348 gene exhibits decreased expression of a full-length wild-type rv0348 gene product.

16. The immunogenic composition of claim 14 , wherein the disrupted rv0348 gene comprises an insertion of a gene cassette into the rv0348 gene at least 269 bp after a translation start position and mice infected with the composition have a decreased level of inflammatory lung lesions compared to mice infected with the corresponding wild-type strain.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2013
From: TALAAT, ADEL; WARD, SARAH; ABOMOELAK, BASSAM
To: WISCONSIN ALUMNI RESEARCH FOUNDATION
Reel/Frame 030471/0834 →
CONFIRMATORY LICENSE Recorded Jan 30, 2013
From: WISCONSIN ALUMNI RESEARCH FOUNDATION
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 029721/0899 →
Continuity (3)
Continuation 12800374 · May 13, 2010
Provisional Application 61216167 · May 14, 2009
Related Publication 20130202642A1 · Aug 8, 2013