IP Library Granted Patent US 6,933,284
Granted Patent B2
US 6,933,284 · App. 09/823,418 · Granted Aug 23, 2005

Methods and tools for identifying compounds which modulate atherosclerosis by impacting LDL-proteoglycan binding

Assignee: The Regents of the University of California
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Quick Facts
Patent No.
US 6,933,284
App. No.
09/823,418
Granted
Aug 23, 2005
Kind
B2
Abstract

The present invention relates to the study and control of atherosclerosis through the modulation of LDL-proteoglycan binding at Site B (amino acids 3359-3369) of the apo-B100 protein in LDL. The invention encompasses methods of identifying compounds which modulate LDL-proteoglycan binding, methods of identifying compounds which modulate atherosclerotic lesion formation, and methods of modulating the formation of atherosclerotic lesions. The invention also encompasses mutant apo-B100 proteins and LDL which exhibit reduced proteoglycan binding while maintaining LDL-receptor binding, polynucleotides which encode these apo-B100 proteins, as well as cells and animals which express the mutant apo-B100 proteins.

Claims (15)

1. An isolated and purified polynucleotide encoding an apo-B100 protein comprising a proteoglycan − receptor + mutation in Site B, wherein Site B is equivalent to amino acids from about 3358 to about 3369 of the human apo-B100 protein and wherein the mutation comprises at least one amino acid substitution or deletion of at least one of Lys 3363 or Arg 3362 .

2. The polynucleotide encoding an apo-B100 protein according to claim 1 , wherein said at least one amino acid substitution in site B is an amino acid a residue selected from the group consisting of Gly, Ala, Val, Leu, Ile, Phe, Tyr Trp, Cys, Met, Asn, Gln, Asp, and Glu.

3. The polynucleotide encoding an apo-B100 protein according to claim 1 , wherein said mutation in Site B comprises replacement of all of the arginine residues and lysine residues with neutral amino acid residues.

4. The polynucleotide encoding an apo-B100 protein according to claim 3 , wherein said arginine residues are replaced with serine residues and said lysine residues are replaced with alanine residues.

5. The polynucleotide encoding an apo-B100 protein according to claim 1 , wherein said amino acid sequence from position 3358 to 3367 is SEQ ID NO:2, SEQ ID NO:3, SEQ ID NO:4, SEQ ID NO:5, SEQ ID NO:6, SEQ ID NO:7, SEQ ID NO:8, SEQ ID NO:13, or SEQ ID NO:14.

6. The polynucleotide encoding an apo-B100 protein according to claim 1 , wherein said mutation in Site B is at position 3363 and the lysine residue is replaced with a glutamic acid residue, and the amino acid sequence from position 3358 to 3367 is:

Thr 3358 -Arg 3359 -Leu 3360 -Thr 3361 -Arg 3362 -Glu 3363 -Arg 3364 -Gly 3365 -Leu 3366 -Lys 3367 (SEQ ID NO:1).

7. An isolated and purified polynucleotide encoding an apo-B100 protein comprising a proteoglycan − receptor + mutation in Site B, wherein Site B is equivalent to amino acids from about 3358 to about 3369 of the human apo-B100 protein and wherein the mutation comprises at least one amino acid addition to site B.

8. The polynucleotide encoding an apo-B100 protein according to claim 7 , wherein said mutation in Site B is an addition of a single amino acid between positions 3362 and 3364.

9. The polynucleotide encoding an apo-B100 protein according to claim 7 , wherein said at least one amino acid addition to site B is selected from the group consisting of Gly, Ala, Val, Leu, Ile, Phe, Tyr, Trp, Cys, Met, Asn, Gln, Asp, and Glu.

10. The polynucleotide encoding an apo-B100 protein according to claim 7 , wherein said amino acid sequence from position 3358 to 3367 is SEQ ID NO:16, SEQ ID NO:17, SEQ ID NO:18 or SEQ ID NO:19.

11. An isolated and purified polynucleotide encoding an apo-B100 protein comprising a proteoglycan − receptor + mutation in Site B, wherein Site B is equivalent to amino acids from about 3358 to about 3369 of the human apo-B100 protein and wherein the mutation comprises a deletion of amino acid Arg 3359 or a substitution of amino acid Arg 3359 by an amino acid selected from the group consisting of Gly, Ala, Val, Leu, Ile, Phe, Tyr, Trp, Cys, Met, Asn, Gln, Asp, and Glu.

12. The polynucleotide encoding an apo-B100 protein according to claim 11 , wherein said amino acid sequence from position 3358 to 3367 is SEQ ID NO:11 or SEQ ID NO:12.

13. An isolated and purified polynucleotide encoding an apo-B100 protein comprising a proteoglycan − receptor + mutation in Site B, wherein Site B is equivalent to amino acids from about 3358 to about 3369 of the human apo-B100 protein and wherein the mutation comprises at least one amino acid substitution or deletion of Arg 3364 , wherein said at least one amino acid substitution in site B is an amino acid a residue selected from the group consisting of Gly, Ala Val, Leu, Ile, Phe, Tyr, Trp, Cys, Met, Ans, Gln, Asp, and Glu.

14. The polynucleotide encoding an apo-B100 protein according to claim 13 , wherein said amino acid sequence from position 3358 to 3367 is SEQ ID NO:9, SEQ ID NO:10, or SEQ ID NO:15.

Assignments (5)
CONFIRMATORY LICENSE Recorded Nov 17, 2017
From: J. DAVID GLADSTONE INSTITUTES
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 044482/0487 →
CONFIRMATORY LICENSE Recorded Nov 8, 2017
From: J. DAVID GLADSTONE INSTITUTES
To: NATIONAL INSTITUTES OF HEALTH - DIRECTOR DEITR
Reel/Frame 044076/0729 →
CONFIRMATORY LICENSE Recorded May 4, 2010
From: J. DAVID GLADSTONE INSTITUTES
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 024329/0019 →
CONFIRMATORY LICENSE Recorded Oct 15, 2009
From: J. DAVID GLADSTONE INSTITUTES
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 023373/0536 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 8, 2006
From: REGENTS OF TH EUNIVERSITY OF CALIFORNIA, THE
To: J. DAVID GLADSTONE INSTITUTES, THE
Reel/Frame 017586/0946 →
Continuity (3)
Division 0926522200 · Mar 5, 1999
Provisional Application 6007761800 · Mar 10, 1998
Related Publication 20010024797A1 · Sep 27, 2001