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Uche N. Medoh
Uche N. Medoh
Graduate Student, Department of Biochemistry, Stanford University
Verified email at stanford.edu - Homepage
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Cited by
Year
CLN3 is required for the clearance of glycerophosphodiesters from lysosomes
NN Laqtom, W Dong, UN Medoh, AL Cangelosi, V Dharamdasani, ...
Nature 609 (7929), 1005-1011, 2022
472022
Cell size–dependent regulation of Wee1 localization by Cdr2 cortical nodes
CAH Allard, HE Opalko, KW Liu, U Medoh, JB Moseley
Journal of Cell Biology 217 (5), 1589-1599, 2018
332018
The Batten disease gene product CLN5 is the lysosomal bis (monoacylglycero) phosphate synthase
UN Medoh, A Hims, JY Chen, A Ghoochani, K Nyame, W Dong, ...
Science 381 (6663), 1182-1189, 2023
122023
Lessons from metabolic perturbations in lysosomal storage disorders for neurodegeneration
UN Medoh, JY Chen, M Abu-Remaileh
Current Opinion in Systems Biology 29, 100408, 2022
92022
The Bis (monoacylglycero)-phosphate Hypothesis: From Lysosomal Function to Therapeutic Avenues
UN Medoh, M Abu-Remaileh
Annual Review of Biochemistry 93, 2024
2024
Glycerophosphodiesters inhibit lysosomal phospholipid catabolism in Batten disease
K Nyame, A Hims, A Aburous, NN Laqtom, W Dong, UN Medoh, JC Heiby, ...
Molecular Cell 84 (7), 1354-1364. e9, 2024
2024
The Batten disease gene product CLN3 is required for the clearance of glycerophosphodiesters from lysosomes
N Laqtom, W Dong, U Medoh, A Cangelosi, V Dharamdasani, SH Chan, ...
2022 AIChE Annual Meeting, 2022
2022
Untargeted metabolomic and lipidomic profiling for Golgi molecular content via immunoprecipitation (Golgi-IP)
W Dong, R Fasimoye, R Nirujogi, E Rawat, M Iguchi, U Medoh, K Nyame, ...
2022 AIChE Annual Meeting, 2022
2022
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