Standout Papers
- Chromatin signature reveals over a thousand highly conserved large non-coding RNAs in mammals (2009)
- Many human large intergenic noncoding RNAs associate with chromatin-modifying complexes and affect gene expression (2009)
- Modular regulatory principles of large non-coding RNAs (2012)
- A Large Intergenic Noncoding RNA Induced by p53 Mediates Global Gene Repression in the p53 Response (2010)
- lincRNAs act in the circuitry controlling pluripotency and differentiation (2011)
- m6A RNA methylation promotes XIST-mediated transcriptional repression (2016)
- Ab initio reconstruction of cell type–specific transcriptomes in mouse reveals the conserved multi-exonic structure of lincRNAs (2010)
- Local regulation of gene expression by lncRNA promoters, transcription and splicing (2016)
- Robust transcriptome-wide discovery of RNA-binding protein binding sites with enhanced CLIP (eCLIP) (2016)
- The Xist lncRNA interacts directly with SHARP to silence transcription through HDAC3 (2015)
- Transcriptome-wide Mapping Reveals Widespread Dynamic-Regulated Pseudouridylation of ncRNA and mRNA (2014)
- Computational methods for transcriptome annotation and quantification using RNA-seq (2011)
- Ribosome Profiling Provides Evidence that Large Noncoding RNAs Do Not Encode Proteins (2013)
- Higher-Order Inter-chromosomal Hubs Shape 3D Genome Organization in the Nucleus (2018)
- Long non-coding RNAs: spatial amplifiers that control nuclear structure and gene expression (2016)
- The 4D nucleome project (2017)
- Integrated spatial genomics reveals global architecture of single nuclei (2021)
- RNA promotes the formation of spatial compartments in the nucleus (2021)
- Genome organization around nuclear speckles drives mRNA splicing efficiency (2024)
Immediate Impact
59 from Science/Nature 157 standout
Citing Papers
The dawn of spatial omics
2023 StandoutScience
Embryo model completes gastrulation to neurulation and organogenesis
2022 StandoutNature
Works of Mitchell Guttman being referenced
Integrated spatial genomics reveals global architecture of single nuclei
2021 StandoutNature
Higher-Order Inter-chromosomal Hubs Shape 3D Genome Organization in the Nucleus
2018 Standout
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Mitchell Guttman | 20356 | 14414 | 1537 | 65 | 22.8k | |
| Manuel Garber | 13649 | 9535 | 1788 | 58 | 16.7k | |
| Marcel E. Dinger | 17103 | 14002 | 1342 | 142 | 20.2k | |
| Maite Huarte | 15532 | 13206 | 938 | 50 | 17.8k | |
| Tim R. Mercer | 12566 | 9902 | 923 | 78 | 14.8k | |
| Debora S. Marks | 16757 | 9863 | 2164 | 100 | 20.9k | |
| David L. Spector | 24212 | 7928 | 2225 | 181 | 28.4k | |
| Ryan A. Flynn | 12600 | 4942 | 1004 | 69 | 14.0k | |
| Elisa Izaurralde | 22654 | 5778 | 1364 | 163 | 25.3k | |
| Mihaela Zavolan | 16192 | 8989 | 918 | 140 | 19.3k | |
| Markus Landthaler | 18752 | 11652 | 592 | 102 | 20.8k |
All Works
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