Center for RNA Biology
Parent: School of Medicine
eScholarship stats: Breakdown by Item for March through June, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 75g75986 | Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition) | 754 | 503 | 251 | 66.7% |
| 4mw725pz | scDesign2: a transparent simulator that generates high-fidelity single-cell gene expression count data with gene correlations captured | 555 | 64 | 491 | 11.5% |
| 6x66v4k6 | Sperm tsRNAs contribute to intergenerational inheritance of an acquired metabolic disorder | 528 | 208 | 320 | 39.4% |
| 1ck54309 | Disruption of electrostatic contacts in the HNH nuclease from a thermophilic Cas9 rewires allosteric motions and enhances high-temperature DNA cleavage | 458 | 363 | 95 | 79.3% |
| 2bw6886v | Domain Structure of the Dnmt1, Dnmt3a, and Dnmt3b DNA Methyltransferases | 454 | 210 | 244 | 46.3% |
| 9742k8ch | Epistatic interactions between NMD and TRP53 control progenitor cell maintenance and brain size | 444 | 358 | 86 | 80.6% |
| 0z5275h1 | Superstable lipid vacuoles endow cartilage with its shape and biomechanics | 424 | 215 | 209 | 50.7% |
| 87f229pf | PANDORA-seq expands the repertoire of regulatory small RNAs by overcoming RNA modifications | 397 | 228 | 169 | 57.4% |
| 5712r9nz | TNRC18 engages H3K9me3 to mediate silencing of endogenous retrotransposons | 395 | 160 | 235 | 40.5% |
| 3v81t4m7 | Comprehensive Characterization of Cancer Driver Genes and Mutations | 366 | 109 | 257 | 29.8% |
| 86x0713x | Fine-tuned protein language model identifies antigen-specific B cell receptors from immune repertoires | 365 | 248 | 117 | 67.9% |
| 62n300tn | CLAVATA3 mediated simultaneous control of transcriptional and post-translational processes provides robustness to the WUSCHEL gradient | 363 | 305 | 58 | 84.0% |
| 8zv742pc | Pre-Cambrian roots of novel Antarctic cryptoendolithic bacterial lineages | 349 | 230 | 119 | 65.9% |
| 7gs1w3pb | A chromosome conformation capture ordered sequence of the barley genome | 348 | 204 | 144 | 58.6% |
| 98r4f90g | Cotton plants export microRNAs to inhibit virulence gene expression in a fungal pathogen | 347 | 201 | 146 | 57.9% |
| 4485m01m | The Fungal Tree of Life: from Molecular Systematics to Genome-Scale Phylogenies | 345 | 227 | 118 | 65.8% |
| 08s0n0j5 | Babesia duncani multi-omics identifies virulence factors and drug targets | 334 | 153 | 181 | 45.8% |
| 90k2q84m | Pan-cancer analyses reveal cancer-type-specific fungal ecologies and bacteriome interactions | 331 | 196 | 135 | 59.2% |
| 1nh662bs | Infection and inflammation stimulate expansion of a CD74+ Paneth cell subset to regulate disease progression | 323 | 161 | 162 | 49.8% |
| 72z114g5 | DNA-binding protein PfAP2-P regulates parasite pathogenesis during malaria parasite blood stages | 310 | 169 | 141 | 54.5% |
| 1sj3d7f5 | <i>Babesia hegotelforum</i> sp. nov., a zoonotic <i>Babesia</i> species previously referred to as <i>Babesia sp</i>. <i>MO1</i>. | 299 | 110 | 189 | 36.8% |
| 7wn084zt | A view of the pan‐genome of domesticated Cowpea (Vigna unguiculata [L.] Walp.) | 298 | 159 | 139 | 53.4% |
| 1fk6h277 | Immune suppressive landscape in the human esophageal squamous cell carcinoma microenvironment | 295 | 75 | 220 | 25.4% |
| 148869mm | Key processes required for the different stages of fungal carnivory by a nematode-trapping fungus | 291 | 115 | 176 | 39.5% |
| 0036f4tg | Gaussian accelerated molecular dynamics: Principles and applications | 286 | 103 | 183 | 36.0% |
| 1dr6q4x6 | Validating genome-wide CRISPR-Cas9 function improves screening in the oleaginous yeast Yarrowia lipolytica | 282 | 121 | 161 | 42.9% |
| 019146q9 | Identification and phylogenetic analysis of RNA binding domain abundant in apicomplexans or RAP proteins | 281 | 169 | 112 | 60.1% |
| 4mp2h2n6 | Genome-scale phylogenetics reveals a monophyletic Zoopagales (Zoopagomycota, Fungi) | 277 | 196 | 81 | 70.8% |
| 80m7x5x5 | Diet high in linoleic acid dysregulates the intestinal endocannabinoid system and increases susceptibility to colitis in Mice | 277 | 137 | 140 | 49.5% |
| 2hn3z2rg | Prediction of DNA Methylation With Long-Range State-Space Models | 276 | 102 | 174 | 37.0% |
| 37g3j4sb | Spray‐induced gene silencing for disease control is dependent on the efficiency of pathogen RNA uptake | 276 | 136 | 140 | 49.3% |
| 71p5t489 | Shed Light in the DaRk LineagES of the Fungal Tree of Life—STRES | 269 | 159 | 110 | 59.1% |
| 8qd430n4 | EphB2 Signaling Is Implicated in Astrocyte-Mediated Parvalbumin Inhibitory Synapse Development | 269 | 188 | 81 | 69.9% |
| 5ps719v0 | Widespread adenine N6-methylation of active genes in fungi | 266 | 131 | 135 | 49.2% |
| 02z063sp | A Mid‐Density Single‐Nucleotide Polymorphism Panel for Molecular Applications in Cowpea (Vigna unguiculata (L.) Walp) | 264 | 93 | 171 | 35.2% |
| 8v83t6ng | Extremophilic and extremotolerant fungi | 262 | 83 | 179 | 31.7% |
| 18k3s04n | Diversity of cytosine methylation across the fungal tree of life | 259 | 143 | 116 | 55.2% |
| 9d4967pm | Drug target prediction through deep learning functional representation of gene signatures | 259 | 108 | 151 | 41.7% |
| 2dk563d8 | The structure of Haemophilus influenzae prephenate dehydrogenase suggests unique features of bifunctional TyrA enzymes | 257 | 37 | 220 | 14.4% |
| 5cp4r84c | Characterization and structural basis of a lethal mouse-adapted SARS-CoV-2 | 255 | 179 | 76 | 70.2% |
| 4354m8h5 | Enhancement of CRISPR/Cas12a trans-cleavage activity using hairpin DNA reporters | 254 | 181 | 73 | 71.3% |
| 68s498n4 | Small RNA-based antimicrobial immunity | 254 | 81 | 173 | 31.9% |
| 93k4j92j | On the prediction of non-CG DNA methylation using machine learning | 250 | 152 | 98 | 60.8% |
| 9fs9w67h | Neuroendocrinology and the Genetics of Obesity | 246 | 147 | 99 | 59.8% |
| 5cj0z7jv | Specification and formation of the neural crest: Perspectives on lineage segregation | 243 | 54 | 189 | 22.2% |
| 2cp1n2cg | Toward a Fully Resolved Fungal Tree of Life | 242 | 86 | 156 | 35.5% |
| 7mc1m7pv | Fungal biodiversity and conservation mycology in light of new technology, big data, and changing attitudes | 242 | 118 | 124 | 48.8% |
| 2f34b5qf | Shallow Genome Sequencing for Phylogenomics of Mycorrhizal Fungi from Endangered Orchids | 241 | 117 | 124 | 48.5% |
| 7zh8x7qj | Scaling a Dpp Morphogen Gradient through Feedback Control of Receptors and Co-receptors | 241 | 117 | 124 | 48.5% |
| 17c008gf | Erratum for Myers et al., “Survey of Early-Diverging Lineages of Fungi Reveals Abundant and Diverse Mycoviruses” | 234 | 91 | 143 | 38.9% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.