TY - JOUR
T1 - MANF
T2 - A new mesencephalic, astrocyte-derived neurotrophic factor with selectivity for dopaminergic neurons
AU - Petrova, Penka S.
AU - Raibekas, Andrei
AU - Pevsner, Jonathan
AU - Vigo, Noel
AU - Anafi, Mordechai
AU - Moore, Mary K.
AU - Peaire, Amy E.
AU - Shridhar, Viji
AU - Smith, David I.
AU - Kelly, John
AU - Durocher, Yves
AU - Commissiong, John W.
N1 - Funding Information:
We thank Eugene Johnson for advice and constructive comments on the manuscript, and Irwin Kopin, Donald Hunt, Norton Neff, Pantelis Tsoul-fas, and Stephen Sanders for contributing to specific aspects of the work. Danzhu Xu was involved in the clonal expansion of the astrocyte cell lines. The work was supported by Prescient NeuroPharma Inc.
PY - 2003/4
Y1 - 2003/4
N2 - We describe the discovery of a novel, 20 kDa, secreted human protein named mesencephalic astrocyte-derived neurotrophic factor, or MANF. The homologous, native molecule was initially derived from a rat mesencephalic type-1 astrocyte cell line and recombinant MANF subcloned from a cDNA encoding human arginine-rich protein. MANF selectively protects nigral dopaminergic neurons, versus GABAergic or serotonergic neurons. The discovery of MANF marks a more systematic approach in the search for astrocyte-derived, secreted proteins that selectively protect specific neuronal phenotypes. Compared to glial cell line-derived neurotrophic factor (GDNF) and brain-derived neurotrophic factor (BDNF), MANF was more selective in the protection of dopaminergic neurons at lower (0.05-0.25 ng/mL) and middle (0.5-2.5 ng/mL) concentrations: MANF>GDNF>BDNF. GDNF was more selective at higher concentrations (25-50 ng/ml): GDNF>MANF>BDNF. Two domains in MANF of 39-AA and 109-AA respectively, and eight cysteines are conserved from C. elegans to man. MANF is encoded by a 4.3 Kb gene with 4 exons, and is located on the short arm of human chromosome 3. The secondary structure is dominated by α-helices (47%) and random coils (37%). Studies to determine the localization of MANF in the brains of rat, monkey, and man, as well as the receptor, signaling pathways, and biologically active peptide mimetics are in progress. The selective, neuroprotective effect of MANF for dopaminergic neurons suggests that it may be indicated for the treatment of Parkinson's disease.
AB - We describe the discovery of a novel, 20 kDa, secreted human protein named mesencephalic astrocyte-derived neurotrophic factor, or MANF. The homologous, native molecule was initially derived from a rat mesencephalic type-1 astrocyte cell line and recombinant MANF subcloned from a cDNA encoding human arginine-rich protein. MANF selectively protects nigral dopaminergic neurons, versus GABAergic or serotonergic neurons. The discovery of MANF marks a more systematic approach in the search for astrocyte-derived, secreted proteins that selectively protect specific neuronal phenotypes. Compared to glial cell line-derived neurotrophic factor (GDNF) and brain-derived neurotrophic factor (BDNF), MANF was more selective in the protection of dopaminergic neurons at lower (0.05-0.25 ng/mL) and middle (0.5-2.5 ng/mL) concentrations: MANF>GDNF>BDNF. GDNF was more selective at higher concentrations (25-50 ng/ml): GDNF>MANF>BDNF. Two domains in MANF of 39-AA and 109-AA respectively, and eight cysteines are conserved from C. elegans to man. MANF is encoded by a 4.3 Kb gene with 4 exons, and is located on the short arm of human chromosome 3. The secondary structure is dominated by α-helices (47%) and random coils (37%). Studies to determine the localization of MANF in the brains of rat, monkey, and man, as well as the receptor, signaling pathways, and biologically active peptide mimetics are in progress. The selective, neuroprotective effect of MANF for dopaminergic neurons suggests that it may be indicated for the treatment of Parkinson's disease.
KW - Cell line
KW - Neuroprotection
KW - Novel protein
KW - Phenotype specificity
KW - Secreted protein
KW - Type-1 astrocyte
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U2 - 10.1385/JMN:20:2:173
DO - 10.1385/JMN:20:2:173
M3 - Article
C2 - 12794311
AN - SCOPUS:0037942718
SN - 0895-8696
VL - 20
SP - 173
EP - 187
JO - Molecular and Chemical Neuropathology
JF - Molecular and Chemical Neuropathology
IS - 2
ER -