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miR-24 Inhibits cell proliferation by targeting E2F2, MYC, and other cell-cycle genes via binding to "seedless" 3'UTR microRNA recognition elements.

Lal, Ashish, Francisco Navarro, Christopher A Maher, Laura E Maliszewski, Nan Yan, Elizabeth O’Day, Dipanjan Chowdhury, et al. 2009. “MiR-24 Inhibits Cell Proliferation by Targeting E2F2, MYC, and Other Cell-Cycle Genes via Binding to ‘seedless’ 3’UTR MicroRNA Recognition Elements.”. Molecular Cell 35 (5): 610-25.

Region-based analysis of rare genomic variants in whole-genome sequencing datasets reveal two novel Alzheimer's disease-associated genes: DTNB and DLG2.

Prokopenko, Dmitry, Sanghun Lee, Julian Hecker, Kristina Mullin, Sarah Morgan, Yuriko Katsumata, Alzheimer’s Disease Neuroimaging Initiative, et al. 2022. “Region-Based Analysis of Rare Genomic Variants in Whole-Genome Sequencing Datasets Reveal Two Novel Alzheimer’s Disease-Associated Genes: DTNB and DLG2.”. Molecular Psychiatry 27 (4): 1963-69.

Whole-genome sequencing reveals new Alzheimer's disease-associated rare variants in loci related to synaptic function and neuronal development.

Prokopenko, Dmitry, Sarah L Morgan, Kristina Mullin, Oliver Hofmann, Brad Chapman, Rory Kirchner, Sandeep Amberkar, et al. 2020. “Whole-Genome Sequencing Reveals New Alzheimer’s Disease-Associated Rare Variants in Loci Related to Synaptic Function and Neuronal Development.”. MedRxiv : The Preprint Server for Health Sciences.