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Amy Wilson-Delfosse
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Research Profile (preview)
Chemicals & Drugs
Physiology
Anatomy
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Genes & Molecular Sequences
Living Beings
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Network (preview)
9
Maltese, William
6
Limbird, Lee
5
Erdman, RA
5
Gandhi, Payal
3
Gibson, Richard
3
Chen, Shu
2
Overmeyer, Jean
2
Sedor, John
2
Takai, Yoshimi
2
Konieczkowski, Martha
1
Zhu, Xiongwei
1
Wang, Wen
1
Wang, Xinglong
1
Petersen, Robert
1
Domino, Steven
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Publications
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All Publications
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2009: Gandhi Payal N; Chen Shu G; Wilson-Delfosse Amy L
Leucine-rich repeat kinase 2 (LRRK2): a key player in the pathogenesis of Parkinson's disease.
Journal of neuroscience research 2009;87(6):1283-95.
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2008: Gandhi Payal N; Wang Xinglong; Zhu Xiongwei; Chen Shu G; Wilson-Delfosse Amy L
The Roc domain of leucine-rich repeat kinase 2 is sufficient for interaction with microtubules.
Journal of neuroscience research 2008;86(8):1711-20.
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2008: Ornt Daniel B; Aron David C; King Nicholas B; Clementz Laura M; Frank Scott; Wolpaw Terry; Wilson-Delfosse Amy; Wolpaw Daniel; Allan Terrence M; Carroll Matthew; Thompson-Shaheen Karen; Altose Murray D; Horwitz Ralph I
Population medicine in a curricular revision at Case Western Reserve.
Academic medicine : journal of the Association of American Medical Colleges 2008;83(4):327-31.
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2007: Guo Luxuan; Gandhi Payal N; Wang Wen; Petersen Robert B; Wilson-Delfosse Amy L; Chen Shu G
The Parkinson's disease-associated protein, leucine-rich repeat kinase 2 (LRRK2), is an authentic GTPase that stimulates kinase activity.
Experimental cell research 2007;313(16):3658-70.
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2004: Gibson Richard M; Gandhi Payal N; Tong Xiaofeng; Miyoshi Jun; Takai Yoshimi; Konieczkowski Martha; Sedor John R; Wilson-Delfosse Amy L
An activating mutant of Cdc42 that fails to interact with Rho GDP-dissociation inhibitor localizes to the plasma membrane and mediates actin reorganization.
Experimental cell research 2004;301(2):211-22.
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2004: Gandhi Payal N; Gibson Richard M; Tong Xiaofeng; Miyoshi Jun; Takai Yoshimi; Konieczkowski Martha; Sedor John R; Wilson-Delfosse Amy L
An activating mutant of Rac1 that fails to interact with Rho GDP-dissociation inhibitor stimulates membrane ruffling in mammalian cells.
The Biochemical journal 2004;378(Pt 2):409-19.
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2001: Gibson R M; Wilson-Delfosse A L
RhoGDI-binding-defective mutant of Cdc42Hs targets to membranes and activates filopodia formation but does not cycle with the cytosol of mammalian cells.
The Biochemical journal 2001;359(Pt 2):285-94.
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2001: Overmeyer J H; Wilson A L; Maltese W A
Membrane targeting of a Rab GTPase that fails to associate with Rab escort protein (REP) or guanine nucleotide dissociation inhibitor (GDI).
The Journal of biological chemistry 2001;276(23):20379-86.
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1998: Wilson A L; Erdman R A; Castellano F; Maltese W A
Prenylation of Rab8 GTPase by type I and type II geranylgeranyl transferases.
The Biochemical journal 1998;333 ( Pt 3)():497-504.
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1998: Overmeyer J H; Wilson A L; Erdman R A; Maltese W A
The putative "switch 2" domain of the Ras-related GTPase, Rab1B, plays an essential role in the interaction with Rab escort protein.
Molecular biology of the cell 1998;9(1):223-35.
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1996: Wilson A L; Sheridan K M; Erdman R A; Maltese W A
Prenylation of a Rab1B mutant with altered GTPase activity is impaired in cell-free systems but not in intact mammalian cells.
The Biochemical journal 1996;318 ( Pt 3)():1007-14.
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1996: Maltese W A; Wilson A L; Erdman R A
Prenylation-dependent interaction of Rab proteins with GDP dissociation inhibitors.
Biochemical Society transactions 1996;24(3):703-8.
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1996: Wilson A L; Erdman R A; Maltese W A
Association of Rab1B with GDP-dissociation inhibitor (GDI) is required for recycling but not initial membrane targeting of the Rab protein.
The Journal of biological chemistry 1996;271(18):10932-40.
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1995: Castellano F; Wilson A L; Maltese W A
Intracellular transport and maturation of nascent low density lipoprotein receptor is blocked by mutation in the Ras-related GTP-binding protein, RAB1B.
Journal of receptor and signal transduction research 1995;15(7-8):847-62.
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1995: Wilson A L; Maltese W A
Coupled translation/prenylation of Rab proteins in vitro.
Methods in enzymology 1995;250():79-91.
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1993: Wilson A L; Maltese W A
Isoprenylation of Rab1B is impaired by mutations in its effector domain.
The Journal of biological chemistry 1993;268(20):14561-4.
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1992: Wilson A L; Womble S W; Prakash C; Cragoe E J; Blair I A; Limbird L E
Novel amiloride analog allosterically modulates the alpha 2-adrenergic receptor but does not inhibit Na+/H+ exchange.
Molecular pharmacology 1992;42(2):175-9.
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1992: Domino S E; Repaske M G; Bonner C A; Kennedy M E; Wilson A L; Brandon S; Limbird L E
Synthesis of a yohimbine-agarose matrix useful for large-scale and micropurification of multiple alpha 2-receptor subtypes.
Methods in enzymology 1992;215():181-200.
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1991: Wilson A L; Seibert K; Brandon S; Cragoe E J; Limbird L E
Monovalent cation and amiloride analog modulation of adrenergic ligand binding to the unglycosylated alpha 2B-adrenergic receptor subtype.
Molecular pharmacology 1991;39(4):481-6.
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1990: Horstman D A; Brandon S; Wilson A L; Guyer C A; Cragoe E J; Limbird L E
An aspartate conserved among G-protein receptors confers allosteric regulation of alpha 2-adrenergic receptors by sodium.
The Journal of biological chemistry 1990;265(35):21590-5.
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1990: Wilson A L; Guyer C A; Cragoe E J; Limbird L E
The hydrophobic tryptic core of the porcine alpha 2-adrenergic receptor retains allosteric modulation of binding by Na+, H+, and 5-amino-substituted amiloride analogs.
The Journal of biological chemistry 1990;265(28):17318-22.
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1990: Guyer C A; Horstman D A; Wilson A L; Clark J D; Cragoe E J; Limbird L E
Cloning, sequencing, and expression of the gene encoding the porcine alpha 2-adrenergic receptor. Allosteric modulation by Na+, H+, and amiloride analogs.
The Journal of biological chemistry 1990;265(28):17307-17.
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