Compositions and methods for TCR reprogramming using fusion proteins
Provided herein are T-cell receptor (TCR) fusion proteins (TFPs) having specificity for one or more tumor cell associated antigens, T cells engineered to express one or more TFP, and methods of use thereof for the treatment of diseases, including cancer.
1. A recombinant nucleic acid comprising a sequence encoding:
a T-cell receptor (TCR) fusion protein (TFP) comprising:
(i) a TCR subunit comprising:
(A) a TCR extracellular domain,
(B) a TCR transmembrane domain, and
(C) a TCR intracellular domain comprising a stimulatory domain, wherein the TCR extracellular domain, the TCR transmembrane domain and the TCR intracellular domain of the TCR subunit are from a single TCR chain, wherein the single TCR chain is a CD3 epsilon chain or a CD3 gamma chain; and
(ii) a first antigen binding domain that binds to a first antigen, and a second antigen binding domain that binds to a second antigen that is different from the first antigen, and wherein each of the first antigen binding domain and the second antigen binding domain is a single-chain fragment variable (scFv) or a single domain antibody (sdAb) domain; and
wherein the TFP comprises, from N-terminus to C-terminus, the second antigen binding domain, a (G4S) n linker, wherein n=1 to 4, the first antigen binding domain and the TCR subunit, and
wherein the TFP forms a multimeric TCR complex comprising: the TFP, an endogenous TCR alpha chain, an endogenous TCR beta chain, an endogenous CD3 delta chain and an endogenous CD3 zeta chain when expressed on a surface of a T cell.
2. The recombinant nucleic acid of claim 1 , wherein the first antigen binding domain is an anti-CD19 binding domain and the second antigen binding domain is an anti-CD22 or an anti-CD20 binding domain.
3. The recombinant nucleic acid of claim 1 , wherein the first antigen binding domain is an anti-CD19 binding domain and the second antigen binding domain is an anti-BCMA binding domain.
4. The recombinant nucleic acid of claim 1 , wherein the single TCR chain of the TCR subunit is a CD3 epsilon chain.
5. The recombinant nucleic acid of claim 1 , wherein the sdAb domain is a V H domain.
6. The recombinant nucleic acid of claim 1 , wherein the single TCR chain of the TCR subunit is a CD3 gamma chain.
7. A pharmaceutical composition comprising
a human T cell comprising the recombinant nucleic acid of claim 1 , and
a pharmaceutically acceptable excipient.
8. A recombinant nucleic acid comprising a first sequence encoding a first TFP and a second sequence encoding a second TFP, wherein each of the first TFP and the second TFP comprises:
a TCR subunit comprising:
(A) at least a portion of a TCR extracellular domain,
(B) a TCR transmembrane domain, and
(C) a TCR intracellular domain comprising a stimulatory domain, wherein the TCR extracellular domain, the TCR transmembrane domain and the TCR intracellular domain are from a single TCR chain, wherein the single TCR chain is a CD3 epsilon chain or a CD3 gamma chain;
wherein
(i) the first TFP comprises, from N-terminus to C-terminus, a first antigen binding domain, a (G4S) n linker, wherein n=1 to 4 and the TCR subunit of the first TFP, wherein the first antigen binding domain binds to a first antigen, and
(ii) the second TFP comprises, from N-terminus to C-terminus, a second antigen binding domain, a (G4S) n linker, wherein n=1 to 4 and the TCR subunit of the second TFP, wherein the second antigen binding domain binds to a second antigen that is different from the first antigen,
wherein each of the first antigen binding domain and the second antigen binding domain is a single-chain fragment variable (scFv) or a single domain antibody (sdAb) domain;
wherein the first sequence and the second sequence are linked by a sequence encoding a cleavage site, and
wherein the first TFP forms a multimeric TCR complex comprising the first TFP, an endogenous TCR alpha chain, an endogenous TCR beta chain, an endogenous CD3 delta chain and an endogenous CD3 zeta chain when expressed on a surface of a T cell, and the second TFP forms a multimeric TCR complex comprising the second TFP, an endogenous TCR alpha chain, an endogenous TCR beta chain, an endogenous CD3 delta chain and an endogenous CD3 zeta chain when expressed on a surface of a T cell.
9. The recombinant nucleic acid of claim 8 , wherein the second TFP forms a different multimeric TCR complex comprising the second TFP, an endogenous TCR alpha chain, an endogenous TCR beta chain, an endogenous CD3 delta chain and an endogenous CD3 zeta chain when expressed on a surface of a T cell.
10. The recombinant nucleic acid of claim 8 , wherein the single TCR chain of the first TFP and the single TCR chain of the second TFP are the same.
11. The recombinant nucleic acid of claim 8 , wherein (i) the first antigen binding domain is an anti-CD19 binding domain and the second antigen binding domain is an anti-BCMA binding domain, or (ii) the first antigen binding domain is an anti-CD19 binding domain and the second antigen binding domain is an anti-CD22 or an anti-CD20 binding domain.
12. The recombinant nucleic acid of claim 10 , wherein the single TCR chain of the first TCR subunit is a CD3 epsilon chain; and wherein the single TCR chain of the second TCR subunit is a CD3 epsilon chain.
13. The recombinant nucleic acid of claim 10 , wherein the single TCR chain of the first TCR subunit is a CD3 gamma chain; and wherein the single TCR chain of the second TCR subunit is a CD3 gamma chain.
14. The recombinant nucleic acid of claim 8 , wherein the sdAb domain is a V H domain.
15. A pharmaceutical composition comprising a human T cell comprising the recombinant nucleic acid of claim 8 , and a pharmaceutically acceptable excipient.