RNA contributions to the form and function of biomolecular condensates C Roden, AS Gladfelter Nature Reviews Molecular Cell Biology 22 (3), 183-195, 2021 | 534 | 2021 |
RAS Mutations Are Associated With the Development of Cutaneous Squamous Cell Tumors in Patients Treated With RAF Inhibitors PA Oberholzer, D Kee, P Dziunycz, A Sucker, N Kamsukom, R Jones, ... Journal of clinical oncology 30 (3), 316-321, 2012 | 473 | 2012 |
Genomic RNA elements drive phase separation of the SARS-CoV-2 nucleocapsid C Iserman, CA Roden, MA Boerneke, RSG Sealfon, GA McLaughlin, ... Molecular cell 80 (6), 1078-1091. e6, 2020 | 310 | 2020 |
An extensive network of TET2-targeting MicroRNAs regulates malignant hematopoiesis J Cheng, S Guo, S Chen, SJ Mastriano, C Liu, AC D’Alessio, E Hysolli, ... Cell reports 5 (2), 471-481, 2013 | 184 | 2013 |
Single-cell microRNA-mRNA co-sequencing reveals non-genetic heterogeneity and mechanisms of microRNA regulation N Wang, J Zheng, Z Chen, Y Liu, B Dura, M Kwak, J Xavier-Ferrucio, ... Nature communications 10 (1), 95, 2019 | 172 | 2019 |
The DNA methylcytosine dioxygenase Tet2 sustains immunosuppressive function of tumor-infiltrating myeloid cells to promote melanoma progression W Pan, S Zhu, K Qu, K Meeth, J Cheng, K He, H Ma, Y Liao, X Wen, ... Immunity 47 (2), 284-297. e5, 2017 | 156 | 2017 |
Novel determinants of mammalian primary microRNA processing revealed by systematic evaluation of hairpin-containing transcripts and human genetic variation C Roden, J Gaillard, S Kanoria, W Rennie, S Barish, J Cheng, W Pan, ... Genome research 27 (3), 374-384, 2017 | 114 | 2017 |
Double-stranded RNA drives SARS-CoV-2 nucleocapsid protein to undergo phase separation at specific temperatures CA Roden, Y Dai, CA Giannetti, I Seim, M Lee, R Sealfon, GA McLaughlin, ... Nucleic acids research 50 (14), 8168-8192, 2022 | 59 | 2022 |
Specific viral RNA drives the SARS CoV-2 nucleocapsid to phase separate C Iserman, C Roden, M Boerneke, R Sealfon, G McLaughlin, I Jungreis, ... BioRxiv, 2020 | 51 | 2020 |
FXR1 splicing is important for muscle development and biomolecular condensates in muscle cells JA Smith, EG Curry, RE Blue, C Roden, SER Dundon, ... Journal of Cell Biology 219 (4), e201911129, 2020 | 49 | 2020 |
miR-125b promotes MLL-AF9–driven murine acute myeloid leukemia involving a VEGFA-mediated non–cell-intrinsic mechanism J Liu, B Guo, Z Chen, N Wang, M Iacovino, J Cheng, C Roden, W Pan, ... Blood, The Journal of the American Society of Hematology 129 (11), 1491-1502, 2017 | 44 | 2017 |
In vivo mutagenesis of miRNA gene families using a scalable multiplexed CRISPR/Cas9 nuclease system A Narayanan, G Hill-Teran, A Moro, E Ristori, DM Kasper, C A. Roden, ... Scientific reports 6 (1), 32386, 2016 | 41 | 2016 |
Colorectal Cancers from Distinct Ancestral Populations Show Variations in BRAF Mutation Frequency MC Hanna, C Go, C Roden, RT Jones, P Pochanard, AY Javed, A Javed, ... PLoS One 8 (9), e74950, 2013 | 40 | 2013 |
Role of spatial patterning of N-protein interactions in SARS-CoV-2 genome packaging I Seim, CA Roden, AS Gladfelter Biophysical journal 120 (14), 2771-2784, 2021 | 29 | 2021 |
A Molecular Chipper technology for CRISPR sgRNA library generation and functional mapping of noncoding regions J Cheng, CA Roden, W Pan, S Zhu, A Baccei, X Pan, T Jiang, Y Kluger, ... Nature communications 7 (1), 11178, 2016 | 29 | 2016 |
MicroRNAs in control of stem cells in normal and malignant hematopoiesis C Roden, J Lu Current stem cell reports 2, 183-196, 2016 | 23 | 2016 |
Reduced representation bisulfite sequencing to identify global alteration of DNA methylation A Nagarajan, C Roden, N Wajapeyee Cancer Genomics and Proteomics: Methods and Protocols, 23-31, 2014 | 15 | 2014 |
microRNA expression profiling: technologies, insights, and prospects C Roden, S Mastriano, N Wang, J Lu microRNA: Medical Evidence: From Molecular Biology to Clinical Practice, 409-421, 2015 | 13 | 2015 |
Design considerations for analyzing protein translation regulation by condensates CA Roden, AS Gladfelter Rna 28 (1), 88-96, 2022 | 9 | 2022 |
Post-transcriptional regulation is the major driver of microRNA expression variation D Zhang, J Tian, C Roden, J Lu BioRxiv, 2020.01. 07.897975, 2020 | 3 | 2020 |