Polypeptides comprising growth hormone receptor extracellular domain and glycosylphosphatidylinositol
The present invention relates to polypeptides which comprise a receptor binding domain of a cytokine and a domain which includes a signal sequence for the attachment of glycosylphosphatidylinositol (GPI) anchors. The invention also relates to methods to manufacture the polypeptides, nucleic acids molecules encoding the polypeptides and therapeutic compositions comprising the polypeptides.
1. An isolated nucleic acid molecule which encodes a chimeric polypeptide comprising:
(i) an extracellular cytokine binding domain of human growth hormone receptor; and
(ii) a domain which includes a signal sequence for attachment of glycosylphosphatidylinositol,
wherein said nucleic acid molecule comprises the nucleic acid sequence set forth in SEQ ID NO: 7.
2. A vector comprising the nucleic acid molecule according to claim 1 .
3. A vector according to claim 2 , wherein said vector is an expression vector adapted for eukaryotic gene expression.
4. A vector according to claim 3 , wherein said vector encodes a recombinant polypeptide comprising a secretion signal for facilitating purification of said polypeptide.
5. A method of preparing a polypeptide, said method comprising:
(i) growing a cell transfected with a nucleic acid according to claim 1 , or a vector comprising a nucleic acid according to claim 1 in an in vitro growth environment under conditions conducive to the manufacture of said polypeptide; and
(ii) purifying said polypeptide from said cell or said growth environment.
6. An isolated eukaryotic cell transfected with a nucleic acid according to claim 1 or a vector comprising a nucleic acid according to claim 1 .
7. A eukaryotic cell according to claim 6 , wherein said cell is selected from the group consisting of a fungal cell, a slime mold cell, an insect cell, a plant cell and a mammalian cell.
8. A cell according to claim 7 , wherein said cell is a slime mold cell and is Dictyostelium spp.
9. A polypeptide encoded by a nucleic acid molecule of claim 1 , wherein the polypeptide comprises SEQ ID NO: 8.
10. A micelle comprising a plurality of polypeptides according to claim 1 .