IP Library Granted Patent US 9,719,992
Granted Patent B2
US 9,719,992 · App. 14/350,199 · Granted Aug 1, 2017

Genetically encoded biosensors

Inventors: Jonathan Marvin (Ashburn, VA); Loren Looger (Ashburn, VA); Richard T. Lee (Cambridge, MA); Eric Schreiter (Ashburn, VA)
Assignees: Howard Hughes Medical Institute; Brigham & Woman's Hospital, Inc.
G01N33/557C07K14/195C07K14/245C07K14/43595G01N33/582G01N33/68G01N33/6812C07K2319/20C07K2319/24C07K2319/60G01N2400/00G01N2458/00
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Quick Facts
Patent No.
US 9,719,992
App. No.
14/350,199
Granted
Aug 1, 2017
Kind
B2
Abstract

The present disclosure provides, inter alia, genetically encoded recombinant peptide biosensors comprising analyte-binding framework portions and signaling portions, wherein the signaling portions are present within the framework portions at sites or amino acid positions that undergo a conformational change upon interaction of the framework portion with an analyte.

Claims (25)

1. A recombinant peptide biosensor comprising an analyte-binding framework portion and a signaling portion, wherein the signaling portion is present within the framework portion at a site or amino acid position that undergoes a conformational change upon interaction of the framework portion with a defined, specific, or selected analyte, wherein the recombinant peptide biosensor comprises an amino acid sequence having at least 85% identity to a sequence selected from the group consisting of SEQ ID NO: 1, 2, 3, 4, 5, 6, 7, and 8.

2. The recombinant peptide biosensor of claim 1 , wherein the signaling portion is allosterically regulated by the framework portion such that signaling from the signaling portion is altered upon interaction of the framework portion with the analyte.

3. The recombinant peptide biosensor of claim 1 , wherein signaling by the signaling portion detectably increases upon interaction of the framework portion with the analyte.

4. The recombinant peptide biosensor of claim 1 , wherein signaling by the signaling portion detectably decreases upon interaction of the framework portion with the analyte.

5. The recombinant peptide biosensor of claim 1 , wherein signaling by the signaling portion is proportional to the level of interaction between the framework portion and the analyte.

6. The recombinant peptide biosensor of claim 1 , wherein the framework portion has a first structure in the absence of an analyte and a second structure, that is detectably distinct from the first structure, in the presence of the analyte.

7. The recombinant peptide biosensor of claim 6 , wherein the conformational change between the first structure and the second structure allosterically regulates the signaling portion.

8. The recombinant peptide biosensor of claim 1 , wherein the framework portion is a periplasmic binding protein (PBP) or a variant of a PBP.

9. The recombinant peptide biosensor of claim 1 , wherein the signaling portion is a circularly permuted fluorescent protein (cpFP).

10. The recombinant peptide biosensor of claim 1 , wherein the analyte-binding framework portion binds specifically to maltose.

11. A recombinant peptide biosensor comprising an amino acid sequence with at least 95% identity to a recombinant peptide biosensor selected from the group consisting of SEQ ID NO: 1, 2, 3, 4, 5, 6, 7, and 8, wherein the recombinant peptide biosensor binds specifically to maltose.

12. The recombinant peptide biosensor of claim 11 , comprising a recombinant peptide biosensor selected from the group consisting of SEQ ID NO: 1, 2, 3, 4, 5, 6, 7, and 8.

13. A nucleic acid encoding the recombinant peptide biosensor of claim 1 or claim 11 .

14. A vector comprising the nucleic acid of claim 13 .

15. A cell comprising the nucleic acid of claim 13 .

16. A cell comprising the vector of claim 14 .

17. A method for detecting maltose, the method comprising detecting a level of fluorescence emitted by the recombinant peptide biosensor of claim 1 or claim 11 , and correlating the level of fluorescence with the presence of maltose.

18. The method of claim 17 , wherein the recombinant peptide biosensor is expressed from a nucleic acid.

19. The method of claim 17 , comprising contacting the recombinant peptide biosensor with a sample comprising maltose.

20. The method of claim 17 , comprising correlating the level of fluorescence with a concentration of maltose.

21. The method of claim 20 , comprising comparing the level of fluorescence with a level of fluorescence emitted by the recombinant peptide biosensor in the presence of a sample comprising a known concentration or range of concentrations of maltose.

22. A method for detecting maltose, the method comprising detecting a level of fluorescence emitted by a recombinant peptide biosensor expressed from the nucleic acid of claim 13 and correlating the level of fluorescence with the presence of maltose.

23. The method of claim 22 , comprising contacting the recombinant peptide biosensor with a sample comprising the maltose.

24. The method of claim 23 , comprising correlating the level of fluorescence with a concentration of the maltose analyte.

25. The method of claim 24 , comprising comparing the level of fluorescence with a level of fluorescence emitted by the recombinant peptide biosensor in the presence of a sample comprising a known concentration or range of concentrations of the maltose.

Assignments (3)
CONFIRMATORY LICENSE Recorded Apr 6, 2015
From: BRIGHAM AND WOMEN'S HOSPITAL
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 035366/0691 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2015
From: LEE, RICHARD T.; SCHREITER, ERIC
To: BRIGHAM & WOMEN'S HOSPITAL, INC.
Reel/Frame 034737/0656 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2015
From: MARVIN, JONATHAN; LOOGER, LOREN
To: HOWARD HUGHES MEDICAL INSTITUTE
Reel/Frame 034737/0888 →
Continuity (2)
Provisional Application 61544867 · Oct 7, 2011
Related Publication 20150111222A1 · Apr 23, 2015