Samuel S. Park
Affiliations: | 2022- | Bioengineering | University of California, San Diego, La Jolla, CA |
Area:
MERFISH, RNA, Optics, NeuroscienceGoogle:
"https://scholar.google.com/citations?user=E_k1BCIAAAAJ&hl=en"Mean distance: (not calculated yet)
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Publications
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Medina-Munoz HC, Kofman E, Jagannatha P, et al. (2024) Expanded palette of RNA base editors for comprehensive RBP-RNA interactome studies. Nature Communications. 15: 875 |
Medina-Munoz HC, Kofman E, Jagannatha P, et al. (2023) Expanded palette of RNA base editors for comprehensive RBP-RNA interactome studies. Biorxiv : the Preprint Server For Biology |
Okholm TLH, Kamstrup AB, Nielsen MM, et al. (2023) circHIPK3 nucleates IGF2BP2 and functions as a competing endogenous RNA. Biorxiv : the Preprint Server For Biology |
Jin W, Brannan KW, Kapeli K, et al. (2023) HydRA: Deep-learning models for predicting RNA-binding capacity from protein interaction association context and protein sequence. Molecular Cell. 83: 2595-2611.e11 |
Blue SM, Yee BA, Pratt GA, et al. (2022) Transcriptome-wide identification of RNA-binding protein binding sites using seCLIP-seq. Nature Protocols |
Yeo G, Xiang J, Mueller J, et al. (2022) Discovery and functional interrogation of SARS-CoV-2 protein-RNA interactions. Research Square |
Xiang JS, Mueller JR, Luo EC, et al. (2022) Discovery and functional interrogation of SARS-CoV-2 protein-RNA interactions. Biorxiv : the Preprint Server For Biology |
Wheeler EC, Vora S, Mayer D, et al. (2021) Integrative RNA-omics discovers GNAS alternative splicing as a phenotypic driver of splicing factor-mutant neoplasms. Cancer Discovery |
Okholm TLH, Sathe S, Park SS, et al. (2020) Transcriptome-wide profiles of circular RNA and RNA-binding protein interactions reveal effects on circular RNA biogenesis and cancer pathway expression. Genome Medicine. 12: 112 |
Van Nostrand EL, Pratt GA, Yee BA, et al. (2020) Principles of RNA processing from analysis of enhanced CLIP maps for 150 RNA binding proteins. Genome Biology. 21: 90 |