Dopaminergic neuronal survival-promoting factors and uses thereof
In general, the invention features substantially purified MANF and substantially purified nucleic acids encoding the same. The invention also features a pharmaceutical composition that includes MANF and a pharmaceutically-acceptable excipient, methods for treatment of a neurodegenerative disease, methods for improving dopaminergic neuronal survival during or following cell transplantation, methods for production of neurons for transplantation, and methods for identifying compounds that modulate or mimic MANF's biological activity.
1. A MANF polypeptide, wherein the amino acid sequence of the MANF polypeptide consists of a sequence at least 95% identical to SEQ ID NO: 4 and an N-terminal methionine residue.
2. The MANF polypeptide of claim 1 , wherein the amino acid sequence of the MANF polypeptide consists of a sequence at least 97% identical to SEQ ID NO: 4 and the N-terminal methionine residue.
3. The MANF polypeptide of claim 1 , wherein the N-terminal methionine residue is the N-terminal methionine residue of SEQ ID NO: 4.
4. A composition comprising at least 60% by weight of a mesencephalic astrocyte-derived neurotrophic factor (MANF) polypeptide, wherein the amino acid sequence of the MANF polypeptide consists of a sequence at least 95% identical to SEQ ID NO: 4 and an N-terminal methionine residue.
5. The composition of claim 4 , wherein the amino acid sequence of the MANF polypeptide consists of a sequence at least 97% identical to SEQ ID NO: 4 and the N-terminal methionine residue.
6. The composition of claim 4 , wherein the amino acid sequence of the MANF polypeptide consists of the sequence of SEQ ID NO: 4.
7. A pharmaceutical composition comprising the composition of claim 4 .
8. The pharmaceutical composition of claim 7 , wherein the pharmaceutical composition is in the form of a liquid.
9. The pharmaceutical composition of claim 7 , wherein the pharmaceutical composition is a solution or suspension.
10. The pharmaceutical composition of claim 7 , wherein the pharmaceutical composition further comprises an additional active ingredient.
11. The pharmaceutical composition of claim 7 , wherein the pharmaceutical composition further comprises a neural cell.
12. The pharmaceutical composition of claim 11 , wherein the neural cell is selected from the group consisting of a neuron, a neural stem cell, and a neuronal precursor cell.
13. The pharmaceutical composition of claim 7 , wherein the N-terminal methionine residue is the N-terminal methionine residue of SEQ ID NO: 4.
14. A method for treating Parkinson's disease in a subject by administering to the subject an effective amount of the pharmaceutical composition of claim 7 .
15. The method of claim 14 , wherein the subject is a human.
16. The method of claim 14 , further comprising transplanting a cell into the subject.
17. The method of claim 16 , wherein the pharmaceutical composition is administered to said subject in a time window from four hours before said transplanting to four hours after said transplanting.
18. The method of claim 16 , wherein the pharmaceutical composition is administered to said subject in a time window from two hours before said transplanting to two hours after said transplanting.
19. The method of claim 14 , wherein the method reduces dopaminergic neuronal cell death in said subject.
20. The method of claim 14 , wherein the method increases dopaminergic neuronal cell survival in said subject.
21. The method of claim 14 , wherein the N-terminal methionine residue is the N-terminal methionine residue of SEQ ID NO: 4.
22. An in vitro method of increasing the survival of dopaminergic neurons, comprising contacting the dopaminergic neurons with a survival-promoting amount of a MANF polypeptide, wherein the amino acid sequence of the MANF polypeptide consists of a sequence at least 95% identical to SEQ ID NO: 4 and an N-terminal methionine residue.
23. The method of claim 22 , further comprising expanding the dopaminergic neurons, thereby generating expanded dopaminergic neurons.
24. The method of claim 23 , wherein the expanded dopaminergic neurons are capable of being transplanted.
25. The method of claim 22 , wherein the N-terminal methionine residue is the N-terminal methionine residue of SEQ ID NO: 4.
26. A method for determining whether a candidate compound modulates MANF-mediated dopaminergic neuronal survival-promoting activity, comprising:
a. contacting cultured dopaminergic neurons with a MANF polypeptide, wherein the amino acid sequence of the MANF polypeptide consists of a sequence at least 95% identical to SEQ ID NO: 4 and an N-terminal methionine residue;
b. contacting the cultured dopaminergic neurons and the MANF polypeptide with a candidate compound to form a test culture;
c. measuring MANF-mediated dopaminergic neuronal survival promoting activity in the test culture; and
d. comparing the dopaminergic neuronal survival activity of MANF in the test culture to a control culture comprising cultured dopaminergic neurons contacted with MANF in the absence of the candidate compound,
wherein altered MANF-mediated dopaminergic neuronal survival-promoting activity in the test culture relative to that of said control culture indicates that said candidate compound modulates MANF-mediated dopaminergic neuronal survival promoting activity.
27. The method of claim 26 , wherein the N-terminal methionine residue is the N-terminal methionine residue of SEQ ID NO: 4.