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US20030170767A1 - Fluorescent protein sensors of post-translational modifications - Google Patents

Fluorescent protein sensors of post-translational modifications
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Publication number
US20030170767A1
US20030170767A1US10/293,580US29358002AUS2003170767A1US 20030170767 A1US20030170767 A1US 20030170767A1US 29358002 AUS29358002 AUS 29358002AUS 2003170767 A1US2003170767 A1US 2003170767A1
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Prior art keywords
fluorescent
activity
fluorescent compound
protein
phosphorylation
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Abandoned
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US10/293,580
Inventor
Andrew Cubitt
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Life Technologies Corp
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Aurora Biosciences Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Priority to US10/293,580priorityCriticalpatent/US20030170767A1/en
Assigned to INVITROGEN CORPORATIONreassignmentINVITROGEN CORPORATIONASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: PANVERA LLC, VERTEX PHARMACEUTICALS INCORPORATED, VERTEX PHARMACEUTICALS LLC
Assigned to VERTEX PHARMACEUTICALS (SAN DIEGO) LLCreassignmentVERTEX PHARMACEUTICALS (SAN DIEGO) LLCMERGER (SEE DOCUMENT FOR DETAILS).Assignors: AURORA BIOSCIENCES CORPORATION
Publication of US20030170767A1publicationCriticalpatent/US20030170767A1/en
Priority to US11/775,067prioritypatent/US20080166749A1/en
Assigned to Life Technologies CorporationreassignmentLife Technologies CorporationMERGER (SEE DOCUMENT FOR DETAILS).Assignors: INVITROGEN CORPORATION
Assigned to Life Technologies CorporationreassignmentLife Technologies CorporationCORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NO 09452626 PREVIOUSLY RECORDED ON REEL 023882 FRAME 0551. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER SHOULD NOT HAVE BEEN RECORDED AGAINST THIS PATENT APPLICATION NUMBER.Assignors: INVITROGEN CORPORATION
Abandonedlegal-statusCriticalCurrent

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Abstract

The present invention includes a fluorescent compound that can detect an activity. such as an enzymatic activity, and exhibits quenching. The fluorescent compound can include a fluorescent protein, such as an Aequorea-related green fluorescent protein. The fluorescent compound can include a substrate site for an enzymatic activity such as a kinase activity, a phosphatase activity, a protease activity, and a glycosylase activity The fluorescent compound of the present invention can be used to detect such enzymatic activities in samples, such as biological samples, including cells. The present invention also includes nucleic acids that encode the fluorescent compounds of the present inventions, and cells that include such nucleic acids or fluorescent compounds.

Description

Claims (24)

I claim:
1. A fluorescent compound for detecting an activity, comprising:
a fluorescent protein moiety, and
at least one exogenous substrate recognition motif for an activity,
wherein said fluorescent protein moiety can be converted from a first state to a second state in response to said activity,
further wherein said fluorescent compound exhibits at least one different fluorescent property in said first state and said second state under quenching conditions.
2. The fluorescent compound ofclaim 1,
wherein said activity is an enzymatic activity.
3. The fluorescent compound ofclaim 2,
wherein said enzymatic activity is selected from the group consisting of a kinase activity, a phosphatase activity, a protease activity, a glycosylation activity, and a farnesyl transferase activity.
4. The fluorescent compound ofclaim 1,
wherein said fluorescent protein moiety comprises an Aequorea-related fluorescent protein.
5. The fluorescent compound ofclaim 1,
wherein said fluorescent protein moiety comprises a phosphorylation recognition motif for a protein kinase is a serine/threonine specific protein kinase.
6. The fluorescent compound ofclaim 1,
wherein said fluorescent protein moiety comprises a phosphorylation recognition motif for a protein kinase selected from the group consisting of protein kinase A, a cGMP-dependent protein kinase, protein kinase C,
Ca2+/calmodulin-dependent protein kinase I, Ca2+/calmodulin-dependent protein kinase II, and MAP kinase activated protein kinase.
7. The fluorescent compound ofclaim 4,
wherein said Aequorea-related fluorescent protein moiety comprises the mutations in GFP mutant K8.
8. The fluorescent compound ofclaim 4,
wherein said at least one exogenous substrate recognition motif for an activity is within the first 20 amino acids of the amino terminus of said Aequorea-related fluorescent protein moiety.
9. The fluorescent compound ofclaim 4,
wherein said at least one exogenous substrate recognition motif for an enzymatic activity is within the first 10 amino acids of the amino terminus of said Aequorea-related fluorescent protein moiety.
10. The fluorescent compound ofclaim 1,
wherein said quenching conditions is acid quenching.
11. The fluorescent compound ofclaim 4,
wherein said Aequorea-related fluorescent protein moiety is membrane associated.
12. The fluorescent compound ofclaim 11,
wherein said Aequorea-related fluorescent moiety comprises a poly-Lys region.
13. The fluorescent compound ofclaim 4,
wherein said Aequorea-related fluorescent protein moiety comprises a protein-protein interaction domain.
14. The fluorescent compound ofclaim 4,
wherein said Aequorea-related fluorescent moiety is membrane bound.
15. A nucleic acid molecule coding for the expression of a fluorescent compound,
wherein said fluorescent compound comprises
a fluorescent protein moiety, and
at least one exogenous substrate motif for an activity,
further wherein said fluorescent protein moiety can be converted from a first state to a second state by an activity,
further wherein said first state and said second state can be differentiated under quenching conditions.
16. A cell, comprising:
a nucleic acid molecule coding for the expression of a fluorescent compound, wherein said fluorescent compound comprises
a fluorescent protein moiety, and
at least one exogenous substrate motif for an activity,
wherein said fluorescent protein moiety can be converted from a first state to a second state by an activity,
further wherein said first state and said second state can be differentiated under quenching conditions.
17. A method for determining whether a sample contains an activity, comprising:
contacting a sample with a fluorescent compound,
wherein said fluorescent compound comprises
a fluorescent protein moiety, and
at least one exogenous substrate motif for an activity,
further wherein said fluorescent protein moiety can be converted
from a first state to a second state by an activity,
exciting said fluorescent compound, and
measuring the amount of emission from said fluorescent compound.
18. The method ofclaim 17,
further comprising the step of comparing the amount of emission measured from said fluorescent compound with the emission from a control sample.
19. The method ofclaim 18,
wherein said enzymatic activity is selected from the group consisting of a kinase activity, a phosphatase activity, a protease activity, a glycosylase activity, and a farnsyl transferase activity.
20. The method ofclaim 19,
wherein said quenching is acid quenching.
21. A method for determining whether a cell exhibits an activity comprising the steps of:
exciting a transfected host cell comprising a recombinant nucleic acid molecule,
wherein said recombinant nucleic acid molecule comprises at least one expression control sequence operatively linked to a nucleic acid sequence coding for the expression of a fluorescent compound,
wherein said fluorescent compound comprises
a fluorescent protein moiety, and
a substrate motif for an activity,
further wherein said fluorescent compound can be converted from a first state to a second state in the presence of said activity,
further wherein said first state and said second state and be differentiated under quenching conditions, and
measuring the emission from said fluorescent compound.
22. The method ofclaim 21,
wherein said enzymatic activity is selected from the group consisting of a kinase activity, a phosphatase activity, a protease activity, a glycosylase activity, and a farnsyl transferase activity.
23. A method for determining whether a sample contains an enzymatic activity, comprising:
a) contacting a sample with a fluorescent compound,
wherein said fluorescent compound comprises
an Aequorea-related fluorescent protein moiety and
an exogenous substrate motif for an enzymatic activity,
further wherein said fluorescent compound can be converted from a first state to a second state by said enzymatic activity,
further wherein said first state and said second state can be differentiated under quenching conditions,
b) exciting said fluorescent compound, and
c) measuring the amount of fluorescence emitted from said sample, whereby the amount of quenching that is consistent with the presence of said enzyme activity indicates the presence of said enzyme activity in said sample.
24. A compound identified by the method comprising the steps of:
a) contacting a sample with a fluorescent compound,
wherein said fluorescent compound comprises
a fluorescent protein moiety and
an exogenous substrate motif for an activity,
further wherein said fluorescent compound can be converted from a first state to a second state by said activity,
further wherein said first state and said second state can be differentiated under quenching conditions,
b) exciting said fluorescent compound, and
c) measuring the amount of fluorescence emitted from said sample.
US10/293,5801998-07-242002-11-12Fluorescent protein sensors of post-translational modificationsAbandonedUS20030170767A1 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US10/293,580US20030170767A1 (en)1998-07-242002-11-12Fluorescent protein sensors of post-translational modifications
US11/775,067US20080166749A1 (en)1998-07-242007-07-09Fluorescent Protein Sensors of Post-Translational Modifications

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US09/129,192US6495664B1 (en)1998-07-241998-07-24Fluorescent protein sensors of post-translational modifications
US10/293,580US20030170767A1 (en)1998-07-242002-11-12Fluorescent protein sensors of post-translational modifications

Related Parent Applications (1)

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US09/129,192ContinuationUS6495664B1 (en)1998-07-241998-07-24Fluorescent protein sensors of post-translational modifications

Related Child Applications (1)

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US11/775,067ContinuationUS20080166749A1 (en)1998-07-242007-07-09Fluorescent Protein Sensors of Post-Translational Modifications

Publications (1)

Publication NumberPublication Date
US20030170767A1true US20030170767A1 (en)2003-09-11

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US09/129,192Expired - LifetimeUS6495664B1 (en)1998-07-241998-07-24Fluorescent protein sensors of post-translational modifications
US10/293,580AbandonedUS20030170767A1 (en)1998-07-242002-11-12Fluorescent protein sensors of post-translational modifications
US11/775,067AbandonedUS20080166749A1 (en)1998-07-242007-07-09Fluorescent Protein Sensors of Post-Translational Modifications

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US09/129,192Expired - LifetimeUS6495664B1 (en)1998-07-241998-07-24Fluorescent protein sensors of post-translational modifications

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US11/775,067AbandonedUS20080166749A1 (en)1998-07-242007-07-09Fluorescent Protein Sensors of Post-Translational Modifications

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US8703734B2 (en)2005-12-122014-04-22The United States Of America, As Represented By The Secretary, Department Of Health And Human ServicesNanoprobes for detection or modification of molecules
US9829491B2 (en)2009-10-092017-11-28The Research Foundation For The State University Of New YorkpH-insensitive glucose indicator protein

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US8703734B2 (en)2005-12-122014-04-22The United States Of America, As Represented By The Secretary, Department Of Health And Human ServicesNanoprobes for detection or modification of molecules
US9829491B2 (en)2009-10-092017-11-28The Research Foundation For The State University Of New YorkpH-insensitive glucose indicator protein

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ASAssignment

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