IP Library Granted Patent US 12,037,367
Granted Patent B2
US 12,037,367 · App. 17/705,619 · Granted Jul 16, 2024

MHC class I epitope delivering polypeptides

Inventors: Eric Poma (New York, NY); Erin Willert (Round Rock, TX)
Assignee: Molecular Templates, Inc.
C07K14/25C07K14/245C07K16/00C07K16/085C07K16/088C07K16/1063C07K16/286C07K16/2863C07K16/2866C07K16/2887C07K16/32C12N9/1077C12N9/2497C12N15/62C12Y204/02036C12Y302/02022A61K2039/6037C07K2319/04C07K2319/33C07K2319/40C07K2319/55Y02A50/30
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,037,367
App. No.
17/705,619
Granted
Jul 16, 2024
Kind
B2
Abstract

The present invention is directed to T-cell epitope delivering polypeptides which deliver one or more CD8+ T-cell epitopes to the MHC class I presentation pathway of a cell, including toxin-derived polypeptides which comprise embedded T-cell epitopes and are de-immunized. The present invention provides cell-targeted, CD8+ T-cell epitope delivering molecules for the targeted delivery of cytotoxicity to certain cells, e.g., infected or malignant cells, for the targeted killing of specific cell types, and the treatment of a variety of diseases, disorders, and conditions, including cancers, immune disorders, and microbial infections. The present invention also provides methods of generating polypeptides capable of delivering one or more heterologous T-cell epitopes to the MHC class I presentation pathway, including polypeptides which are 1) B-cell and/or CD4+ T-cell de-immunized, 2) comprise embedded T-cell epitopes, and/or 3) comprises toxin effectors which retain toxin functions.

Claims (17)

1. A cell-targeting molecule comprising

(i). a binding region capable of specifically binding an extracellular target biomolecule physically coupled to the surface of a cell, and

(ii) a Shiga toxin effector polypeptide comprising an amino acid sequence having at least 90% identity to amino acids 1 to 251 of SEQ ID NO: 1;

wherein the amino acid sequence comprises at least four endogenous B-cell epitope regions, and comprises: amino acid substitutions V541, R55L, I57F, P59F, E60T, and E61L in SEQ ID NO: 1,

wherein the endogenous B-cell epitope regions are natively positioned in a wild-type Shiga toxin A Subunit within amino acid residues: 39-48 of SEQ ID NO:1; 94-115 of SEQ ID NO:1; 179-190 of SEQ ID NO:1; and 243-251 of SEQ ID NO:1;

wherein the amino acid sequence comprises an asparagine at the amino acid residue corresponding to position 75 of SEQ ID NO: 1, a tyrosine at the amino acid residue corresponding to position 77 of SEQ ID NO: 1, a tyrosine at the amino acid residue corresponding to position 114 of SEQ ID NO: 1, a glutamate at the amino acid residue corresponding to position 167 of SEQ ID NO: 1, an arginine at the amino acid residue corresponding to position 170 of SEQ ID NO: 1, an arginine at the amino acid residue corresponding to position 176 of SEQ ID NO: 1, and a tryptophan at the amino acid residue corresponding to position 203 of SEQ ID NO: 1; and

wherein the amino acid sequence has at least 95% sequence identity to SEQ ID NO: 16.

2. The cell-targeting molecule of claim 1 , wherein the amino acid sequence has at least 95% sequence identity to amino acids 1 to 251 of SEQ ID NO: 1.

3. The cell-targeting molecule of claim 1 , wherein the binding region is fused to the carboxy terminus of the Shiga toxin effector polypeptide to form a single, continuous polypeptide.

4. The cell-targeting molecule of claim 1 , wherein the binding region comprises an immunoglobulin-type binding region.

5. The cell-targeting molecule of claim 4 , wherein the immunoglobulin-type binding region comprises a polypeptide selected from: single-domain antibody fragment, single-chain variable fragment, antibody variable fragment, complementary determining region 3 fragment, constrained FR3-CDR3-FR4 polypeptide, Fd fragment, antigen-binding fragment, fibronectin-derived 10th fibronectin type III domain, tenascin type III domain, ankyrin repeat motif domain, low-density-lipoprotein-receptor-derived A-domain, lipocalin, Kunitz domain, Protein-A-derived Z domain, gamma-B crystallin-derived domain, ubiquitin-derived domain, Sac7d-derived polypeptide, Fyn-derived SH2 domain, miniprotein, C-type lectin-like domain scaffold, a heavy-chain antibody domain derived from a camelid V H H fragment, heavy-chain antibody domain derived from cartilaginous fish, immunoglobulin new antigen receptor (IgNAR), V NAR fragment, multimerizing scFv fragment, bivalent minibody, bispecific tandem scFv, bispecific tandem V H H, and bispecific minibody.

6. The cell-targeting molecule of claim 5 , wherein the multimerizing scFv fragment is a diabody, triabody, or tetrabody.

7. The cell-targeting molecule of claim 1 , wherein the binding region comprises one or more polypeptides capable of specifically binding the extracellular target biomolecule.

8. The cell-targeting molecule of claim 1 , which comprises the linker peptide (G x S) n wherein x is 1 to 6 and n is 1 to 30.

9. The cell-targeting molecule of claim 8 , wherein x is 4 and n is 1.

10. The cell-targeting molecule of claim 1 , wherein the extracellular target biomolecule is CD20, CD38, CTLA-4, HER2/neu/ErbB2, or CS1/SLAMF7.

11. A pharmaceutical composition comprising the cell-targeting molecule of claim 1 and a pharmaceutically acceptable excipient or carrier.

Assignments (2)
SECURITY INTEREST Recorded Jun 16, 2023
From: MOLECULAR TEMPLATES, INC.
To: ANKURA TRUST COMPANY, LLC, AS COLLATERAL TRUSTEE
Reel/Frame 063979/0709 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2022
From: POMA, ERIC; WILLERT, ERIN
To: MOLECULAR TEMPLATES, INC.
Reel/Frame 060041/0179 →
Continuity (6)
Division 17231526 · Apr 15, 2021
Continuation 16220468 · Dec 14, 2018
Continuation 15114474
Provisional Application 62049325 · Sep 11, 2014
Provisional Application 61932000 · Jan 27, 2014
Related Publication 20220306701A1 · Sep 29, 2022
Cited By (1)
US 12,637,495