IP Library Granted Patent US 10,240,137
Granted Patent B2
US 10,240,137 · App. 14/774,954 · Granted Mar 26, 2019

Use of dimerization domains for temperature regulation of enzyme activity

Inventors: Gabor Lazar (Belmont, MA); Jason Donald (Lexington, MA); R. Michael Raab (Arlington, MA)
Assignee: AGRIVIDA, INC.
C12N9/2437C12N9/2434C12N9/2482C07K2319/73C07K2319/92C12Y302/01004C12Y302/01008
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Quick Facts
Patent No.
US 10,240,137
App. No.
14/774,954
Granted
Mar 26, 2019
Kind
B2
Abstract

Methods for regulating protein activity by fusing dimerization domains to target protein are provided. Chimeric proteins that include dimerization domains fused to target proteins for altering the activity of the target proteins are described. Engineered nucleic acids encoding chimeric proteins and hosts engineered to express engineered nucleic acids are also provided.

Claims (16)

1. A chimeric protein comprising a target protein fused to a first dimerization domain and a second dimerization domain,

wherein the C-terminus of the first dimerization domain is linked to the N-terminus of the target protein, and the N-terminus of the second dimerization domain is linked to the C-terminus of the target protein, the first dimerization domain interacts with the second dimerization domain and represses the activity of the target protein, the interaction between the first dimerization domain and the second dimerization domain is capable of being disrupted upon exposure of the chimeric protein to a triggering condition, and disruption of the interaction reactivates the activity of the target protein; and

wherein the target protein comprises a GH11 xylanase, each of the first dimerization domain and the second dimerization domain comprises a coiled-coil dimerization domain GCN4, and the triggering condition is an increased temperature.

2. The chimeric protein of claim 1 further comprising a first linker contiguous with and between the first dimerization domain and the target protein, and a second linker contiguous with and between the second dimerization domain and the target protein.

3. The chimeric protein of claim 1 , wherein the target protein includes an amino acid sequence having at least 90% identity to the sequence of SEQ ID NO: 1 [O43 T].

4. The chimeric protein of claim 1 , wherein a sequence of at least one of the first dimerization domain, or the second dimerization domain is included in an amino acid sequence having at least 90% identity to SEQ ID NO: 2[GCN4].

5. The chimeric protein of claim 1 included in a host, wherein the host is selected form the group consisting of a microorganism, a plant cell, a phage, a virus, a mammalian cell, and an insect cell.

6. An engineered nucleic acid encoding a chimeric protein comprising a target protein fused to a first dimerization domain and a second dimerization domain,

wherein the C-terminus of the first dimerization is linked to the N-terminus of the target protein, and the N-terminus of the second dimerization domain is linked to the C-terminus of the target protein, the first dimerization domain interacts with the second dimerization domain and represses the activity of the target protein, the interaction between the first dimerization domain and the second dimerization domain is capable of being disrupted upon exposure of the chimeric protein to a triggering condition, and disruption of the interaction reactivates the activity of the target protein; and

wherein the target protein comprises a GH11 xylanase, and each of the first dimerization domain and the second dimerization domain comprises coiled-coil dimerization domain GCN4, and the triggering condition is an increased temperature.

7. The engineered nucleic acid of claim 6 , wherein the sequence encoding the target protein has at least 90% identity to SEQ ID NO: 16 [O43 T].

8. The engineered nucleic acid of claim 6 , wherein the sequence encoding at least one of the first dimerization domain, or the second dimerization domain, is included in a sequence with at least 90% identity to SEQ ID NO: 17[GCN4].

9. A vector comprising the engineered nucleic acid of claim 6 .

10. A host comprising the engineered nucleic acid of claim 6 , wherein the host is selected from the group consisting of: a microorganism, a plant cell, a phage, a virus, a mammalian cell, and an insect cell.

11. A chimeric protein comprising a sequence having at least 90% identity to a reference sequence selected from the group consisting of: SEQ ID NO: 3 [CC1], SEQ ID NO: 4 [CC2], SEQ ID NO: 5 [CC17], SEQ ID NO: 6[CC13], SEQ ID NO: 7[CC14-1], SEQ ID NO: 8[CC14-2], SEQ ID NO: 9 [CC15], SEQ ID NO: 10 [CC22]., SEQ ID NO: 11[CC23], SEQ ID NO: 12 [CC24], and SEQ ID NO: 13 [CC30], wherein the chimeric protein has a glucohydrolase activity.

12. An engineered nucleic acid encoding a chimeric protein and comprising a sequence having at least 90% identity to a reference sequence selected from the group consisting of: SEQ ID NO: 18[CC1], SEQ ID NO: 19 [CC2], SEQ ID NO: 20 [CC17], SEQ ID NO: 21 [CC13], SEQ ID NO: 22[CC14-1], SEQ ID NO: 23[CC14-2], SEQ ID NO: 24 [CC15], SEQ ID NO: 25 [CC22], SEQ ID NO: 26 [CC23], SEQ ID NO: 27 [CC24], and SEQ ID NO: 28 [CC30], wherein the chimeric protein has a glucohydrolase activity.

Assignments (2)
MERGER Recorded Nov 9, 2023
From: AGRIVIDA MERGER SUB, INC.; AGRIVIDA, INC.
To: AGRIVIDA INC.
Reel/Frame 065513/0941 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2015
From: LAZAR, GABOR; DONALD, JASON; RAAB, R. MICHAEL
To: AGRIVIDA, INC.
Reel/Frame 036629/0511 →
Continuity (2)
Provisional Application 61784256 · Mar 14, 2013
Related Publication 20160024485A1 · Jan 28, 2016