Immunoglobulins binding human Vγ9Vδ2 T cell receptors
The invention is in the field of medicine and relates to immunology, and relates in particular to human Vγ9Vδ2 T cell receptor binding immunoglobulin molecules. Human Vγ9Vδ2 T cell receptor binding immunoglobulin molecules are in particular for use in medical treatment and/or useful in assays with human Vγ9Vδ2 T cells, wherein human Vγ9Vδ2 T cells may be modulated.
1. A human Vγ9Vδ2 T cell receptor binding immunoglobulin molecule comprising a CDR1 region, a CDR2 region, and a CDR 3 region, wherein the CDR1 region comprises a 10-amino acid sequence with at least 80% sequence identity with the 10-amino acid sequence of SEQ ID NO. 31, the CDR2 region comprises a 17-amino acid sequence with at least 94% sequence identity with the 17-amino acid sequence of SEQ ID NO. 32 and the CDR3 region comprises the amino acid sequence set forth in SEQ ID NO. 29.
2. The immunoglobulin molecule according to claim 1 , wherein the immunoglobulin molecule is a single chain antibody.
3. The immunoglobulin molecule according to claim 1 , wherein the immunoglobulin molecule is a single domain antibody.
4. The immunoglobulin molecule according to claim 1 , comprising one or more of the framework regions selected from the group of amino acid sequences of SEQ ID NOS. 67-70.
5. An immunoglobulin molecule according to claim 1 , wherein the immunoglobulin molecule is an immunoglobulin molecule that activates human Vγ9Vδ2 T cells.
6. The immunoglobulin molecule according to claim 5 , wherein the immunoglobulin molecule is linked to an agent.
7. The immunoglobulin molecule according to claim 1 , which is a bispecific antibody comprising two single domain antibodies, the first single domain antibody comprising the CDR1, CDR2 and CDR3 regions as defined in claim 1 , wherein the first single domain antibody is linked to a second single domain antibody, wherein the second single domain antibody binds to a target.
8. The immunoglobulin molecule according to claim 1 , which is a bispecific antibody comprising two single domain antibodies, the first single domain antibody comprising the CDR1, CDR2 and CDR3 regions as defined in claim 1 , wherein the first single domain antibody is linked to a second single domain antibody, wherein the second single domain antibody binds to a cancer cell.
9. The immunoglobulin molecule of claim 2 , wherein the single chain antibody is a llama single chain antibody.
10. The immunoglobulin molecule of claim 2 , wherein the single chain antibody is a human single chain antibody.
11. The immunoglobulin molecule of claim 3 , wherein the single domain antibody is a llama single domain antibody.
12. The immunoglobulin molecule of claim 3 , wherein the single domain antibody is a humanized single domain antibody.
13. A bispecific immunoglobulin molecule comprising a single domain antibody that activates human Vγ9Vδ2 T cells, where said single domain antibody comprising a CDR1 region, a CDR2 region, and a CDR 3 region, wherein the CDR1 region comprises a 10-amino acid sequence with at least 80% sequence identity with the 10-amino acid sequence of SEQ ID NO. 31, the CDR2 region comprises a 17-amino acid sequence with at least 94% sequence identity with the 17-amino acid sequence of SEQ ID NO. 32 and the CDR3 region comprises the amino acid sequence set forth in SEQ ID NO. 29, where said single domain antibody is linked to a target-specific antibody.
14. The bispecific immunoglobulin molecule according to claim 13 , wherein the single domain antibody comprising one or more framework regions selected from the group of amino acid sequences of SEQ ID NO. 67-70.
15. The bispecific immunoglobulin molecule according to claim 13 , wherein said target-specific antibody is a tumor-antigen-specific antibody.
16. The bispecific immunoglobulin molecule according to claim 13 , wherein the single domain antibody is a llama single domain antibody.
17. A bispecific immunoglobulin molecule comprising a VHH that activates human Vγ9Vδ2 T cells, where said VHH comprises a CDR1 region, a CDR2 region, and a CDR 3 region, wherein the CDR1 region comprises a 10-amino acid sequence with at least 80% sequence identity with the 10-amino acid sequence of SEQ ID NO. 31, the CDR2 region comprises a 17-amino acid sequence with at least 94% sequence identity with the 17-amino acid sequence of SEQ ID NO. 32 and the CDR3 region comprises the amino acid sequence set forth in SEQ ID NO. 29, where said VHH is linked to a target-specific antibody and binds the Vδ2 chain of a Vγ9Vδ2 T cell receptor.
18. The bispecific immunoglobulin molecule according to claim 17 , wherein the VHH comprising one or more framework regions selected from the group of amino acid sequences of SEQ ID NO. 67-70.
19. The bispecific immunoglobulin molecule according to claim 17 , wherein said target-specific antibody is a tumor-antigen-specific antibody.
20. The bispecific immunoglobulin molecule according to claim 17 , wherein the single domain antibody is a llama single domain antibody.
21. A method for the treatment of cancer comprising administering to a subject in need thereof a bispecific immunoglobulin molecule comprising a single domain antibody that activates human Vγ9Vδ2 T cells, where said antibody comprises a CDR1 region, a CDR2 region, and a CDR 3 region, wherein the CDR1 region comprises a 10-amino acid sequence with at least 80% sequence identity with the 10-amino acid sequence of SEQ ID NO. 31, the CDR2 region comprises a 17-amino acid sequence with at least 94% sequence identity with the 17-amino acid sequence of SEQ ID NO. 32 and the CDR3 region comprises the amino acid sequence set forth in SEQ ID NO. 29, linked to a tumor-antigen specific antibody, wherein said antibody that activates human Vγ9Vδ2 T cells binds the Vδ2 chain of a Vγ9Vδ2 T cell receptor.