Methods and compositions for reducing the immunogenicity of chimeric notch receptors
The present invention relates to methods and compositions for reducing the immunogenicity of chimeric Notch receptors, and specifically to transcription factors useful for controlling gene expression delivered to tissues by such chimeric Notch receptors.
1. A nucleic acid comprising a nucleotide sequence encoding a chimeric Notch polypeptide comprising, from N-terminal to C-terminal and in covalent linkage: a) an extracellular domain comprising a binding agent that specifically binds to an antigen; b) a Notch 2 or Notch 3 core region; c) one or more proteolytic cleavage sites; and d) an intracellular domain comprising a transcriptional regulator, wherein binding of the binding agent to the antigen induces cleavage of the Notch polypeptide at the one or more proteolytic cleavage sites, thereby releasing the intracellular domain and the transcriptional regulator;
wherein the transcriptional regulator comprises a DNA binding domain of human origin and a transactivation domain of human origin;
wherein the transactivation domain is selected from the group consisting of RelA (p65), YAP, WWTR1 (TAZ), and CREB3 (LZIP); and
wherein the Notch 2 or Notch 3 core region comprises a human Lin12 LNR.
2. A nucleic acid as described in claim 1 , wherein said binding agent comprises an antibody.
3. A nucleic acid as described in claim 2 , wherein said antibody is selected from the group consisting of scFv, bispecific antibody, nanobody, or bite.
4. A nucleic acid as described in claim 3 , wherein said transcriptional regulator is a transcriptional activator.
5. A recombinant vector comprising the nucleic acid of claim 4 .
6. A nucleic acid as described in claim 1 , wherein said transcriptional regulator is from the Hepatocyte Nuclear Factor (HNF) transcriptional regulator family.
7. A nucleic acid as described in claim 6 , wherein said transcriptional regulator is HNF1 alpha or HNF1 beta.
8. A recombinant vector comprising the nucleic acid of claim 6 .
9. A recombinant vector comprising the nucleic acid of claim 1 .
10. A host cell transformed with the nucleic acid of claim 1 .
11. The host cell of claim 10 , wherein the cell is a macrophage.
12. The host cell of claim 11 , wherein the macrophage is derived from monocytes.
13. A method of making a chimeric Notch polypeptide comprising a transcriptional regulator wherein said transcriptional regulator comprises a DNA binding domain of human origin, and wherein said method comprises culturing a host cell of claim 10 .
14. A nucleic acid as described in claim 1 , wherein the Notch 2 or Notch 3 core region further comprises a Nuclear Localization Signal (NLS).
15. A recombinant vector comprising the nucleic acid of claim 14 .