Truman C. Gamblin

Affiliations: 
Molecular Biosciences University of Kansas, Lawrence, KS, United States 
 Northwestern University, Evanston, IL 
Area:
Molecular Biology, Biochemistry
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"Truman Gamblin"
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Publications

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Ingham DJ, Hillyer KM, McGuire MJ, et al. (2022) Tau Aggregation Inducer Molecules Influence the Effects of Mutations on Aggregation Dynamics. Biochemistry
Ingham DJ, Blankenfeld BR, Chacko S, et al. (2021) Fungally Derived Isoquinoline Demonstrates Inducer-Specific Tau Aggregation Inhibition. Biochemistry
Mutreja Y, Gamblin TC. (2017) Optimization of in vitro conditions to study the arachidonic acid induction of 4R isoforms of the microtubule-associated protein tau. Methods in Cell Biology. 141: 65-88
Paranjape SR, Riley AP, Somoza AD, et al. (2015) Azaphilones inhibit tau aggregation and dissolve tau aggregates in vitro. Acs Chemical Neuroscience. 6: 751-60
Paranjape SR, Chiang YM, Sanchez JF, et al. (2014) Inhibition of Tau aggregation by three Aspergillus nidulans secondary metabolites: 2,ω-dihydroxyemodin, asperthecin, and asperbenzaldehyde. Planta Medica. 80: 77-85
Combs B, Gamblin TC. (2012) FTDP-17 tau mutations induce distinct effects on aggregation and microtubule interactions Biochemistry. 51: 8597-8607
Voss K, Combs B, Patterson KR, et al. (2012) Hsp70 alters tau function and aggregation in an isoform specific manner. Biochemistry. 51: 888-98
Moore CL, Huang MH, Robbennolt SA, et al. (2011) Secondary nucleating sequences affect kinetics and thermodynamics of tau aggregation. Biochemistry. 50: 10876-86
Patterson KR, Ward SM, Combs B, et al. (2011) Heat shock protein 70 prevents both tau aggregation and the inhibitory effects of preexisting tau aggregates on fast axonal transport. Biochemistry. 50: 10300-10
Combs B, Voss K, Gamblin TC. (2011) Pseudohyperphosphorylation has differential effects on polymerization and function of tau isoforms Biochemistry. 50: 9446-9456
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