Bi-specific fusion proteins
Bi-specific fusion proteins with therapeutic uses are provided, as well as pharmaceutical compositions comprising such fusion proteins, and methods for using such fusion proteins to repair or regenerate damaged or diseased tissue. The bi-specific fusion proteins generally comprise: (a) a targeting polypeptide domain that binds to a target molecule; and (b) an activator domain that detectably modulates tissue regeneration.
1. A bi-specific protein comprising annexin V and IGF-1, wherein annexin V comprises an amino acid sequence recited in SEQ ID NO: 31 and wherein IGF-1 comprises an amino acid sequence having at least 98.5% identity with SEQ ID NO: 3.
2. The protein of claim 1 , wherein the fusion protein further comprises a peptide.
3. The protein of claim 2 , wherein the peptide extends the half-life of the fusion protein.
4. The protein of claim 3 , wherein the peptide comprises a sequence from one of human serum albumin, alpha-fetoprotein, vitamin D- binding protein, transthyretin, single-chain of antibody Fc domain, proline-, alanine-, and/or serine-rich sequences, albumin-binding domain antibody, fragments thereof and combinations thereof.
5. The protein of claim 2 , wherein the peptide comprises at least 100 consecutive amino acids that are at least 80% identical to the amino acid sequence of serum albumin, alpha-fetoprotein, vitamin D- binding protein, transthyretin amino acid sequence, single-chain of antibody Fc domain, proline-, alanine-, and/or serine-rich sequences, or albumin-binding domain antibody.
6. The protein of claim 2 , wherein the peptide is a non-immunogenic peptide.
7. The protein of claim 2 , wherein the annexin V is joined via a peptide bond to the amino terminus of the peptide and the IGF-1 is joined via a peptide bond to the carboxy terminus of the peptide.
8. The protein of claim 2 , wherein the annexin V is joined via a peptide bond to the carboxy terminus of the peptide and the IGF-1 is joined via a peptide bond to the amino terminus of the peptide.