Functional analysis of a novel de novo variant in PPP5C associated with microcephaly, seizures, and developmental delaySara M. Fielder, Stephen C. Pak|Molecular Genetics and Metabolism|2022Cited by 14
Dominant negative ATP5F1A variants disrupt oxidative phosphorylation causing neurological disordersSara M. Fielder, Stephen C. Pak, Rocío Rius et al.|EMBO Molecular Medicine|2025Cited by 8
A fluorescent reporter for rapid assessment of autophagic flux reveals unique autophagy signatures during <i>C. elegans</i> post-embryonic development and identifies compounds that modulate autophagyZachary Dawson, Stephen C. Pak|Autophagy Reports|2024Cited by 5
Dominant negative ATP5F1A variants disrupt oxidative phosphorylation causing neurological disordersSara M. Fielder, Stephen C. Pak, Marisa W. Friederich et al.|medRxiv|2025Cited by 1