IP Library Granted Patent US 7,645,577
Granted Patent B2
US 7,645,577 · App. 11/493,705 · Granted Jan 12, 2010

Group B streptococcus polypeptides nucleic acids and therapeutic compositions and vaccines thereof

Assignees: St. Jude Children's Research Hospital; University of Utah Research Foundation
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Quick Facts
Patent No.
US 7,645,577
App. No.
11/493,705
Granted
Jan 12, 2010
Kind
B2
Abstract

This invention provides isolated nucleic acids encoding polypeptides comprising amino acid sequences of streptococcal matrix adhesion (Ema) polypeptides. The invention provides nucleic acids encoding Group B streptococcal Ema polypeptides EmaA, EmaB, EmaC, EmaD and EmaE. The present invention provides isolated polypeptides comprising amino acid sequences of Group B streptococcal polypeptides EmaA, EmaB, EmaC, EmaD and EmaE, including analogs, variants, mutants, derivatives and fragments thereof. Ema homologous polypeptides from additional bacterial species, including S. pneumoniae, S. pyogenes, E. faecalis and C. diptheriae are also provided. Antibodies to the Ema polypeptides and immunogenic fragments thereof are also provided. The present invention relates to the identification and prevention of infections by virulent forms of streptococci. This invention provides pharmaceutical compositions, immunogenic compositions, vaccines, and diagnostic and therapeutic methods of use of the isolated polypeptides, antibodies thereto, and nucleic acids. Assays for compounds which modulate the polypeptides of the present invention for use in therapy are also provided.

Claims (17)

1. An isolated nucleic acid which encodes Extracellular Matrix Adhesion Protein A (EmaA) which comprises the amino acid sequence set forth in SEQ ID NO: 2 or a polypeptide comprising amino acids 28-245 of SEQ ID NO:2.

2. The isolated nucleic acid of claim 1 , wherein the nucleic acid is selected from the group consisting of:

a. the DNA sequence of SEQ ID NO: 1;

b. DNA sequences that hybridize to the sequence of subpart (a) under hybridization conditions of 5×SSC and 65° C. for both hybridization and wash

c. the nucleic acid that is complementary to SEQ ID NO: 1;

d. nucleic acids that hybridize to the nucleic acid of subpart (c) under hybridization conditions of 5×SSC and 65° C. for both hybridization and wash.

3. A vector which comprises the nucleic acid of claim 1 and a promoter.

4. The vector of claim 3 , wherein the promoter comprises a bacterial, yeast, insect or mammalian promoter.

5. The vector of claim 3 , wherein the vector is a plasmid, cosmid, yeast artificial chromosome (YAC), bacteriophage or eukaryotic viral DNA.

6. A host vector system for the production of a polypeptide which comprises the vector of claim 3 in a suitable host cell.

7. The host vector system of claim 6 , wherein the suitable host cell comprises a prokaryotic or eukaryotic cell.

8. The nucleic acid of claim 1 which is a recombinant DNA molecule.

9. The recombinant DNA molecule of claim 8 , wherein the DNA molecule is operatively linked to an expression control sequence.

10. A unicellular host transformed with a recombinant DNA molecule of claim 8 .

11. A method for detecting the presence of a bacterium having a gene encoding a streptococcal Extracellular Matrix Adhesion Protein A (EmaA) polypeptide comprising:

a. contacting a sample in which the presence or activity of the bacterium is suspected with an oligonucleotide which hybridizes to a streptococcal emaA nucleic acid of claim 1 under conditions that allow specific hybridization of the oligonucleotide to the gene to occur; and

b. detecting whether hybridization has occurred between the oligonucleotide and the gene; wherein the detection of hybridization indicates that presence or activity of the bacterium in the sample.

Assignments (1)
CONFIRMATORY LICENSE Recorded Jun 30, 2020
From: ST. JUDE CHILDREN'S RESEARCH HOSPITAL, INC
To: NIH-DEITR
Reel/Frame 053094/0558 →
Continuity (2)
Continuation 1033300200
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