Searching journal content for articles similar to Stoiber et al. 25 (11): 1692.

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  1. ...by impaired cell cycle and translational control in a DDX3X syndrome model. eLife 11: e78203. doi:10.7554/eLife.78203 ↵Johnstone O, Deuring R, Bock R, Linder P, Fuller MT, Lasko P. 2005. Belle is a Drosophila DEAD-box protein required for viability and in the germ line. Dev Biol 277: 92–101. doi:10.1016/j...
  2. ...1Scalable cell-specific coexpression networks for granular regulatory 2 pattern discovery with NeighbourNet 3 Yidi Deng1,2, Jiadong Mao1,† & Jarny Choi3,† & Kim-Anh Lê Cao1,*,† 4 1Melbourne Integrative Genomics, School of Mathematics and Statistics, The University of Melbourne, 5 3010, Australia 6...
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  3. ...of Mariculture Breeding, Xiamen University, Xiamen, Fujian 361000, China; 4Xiamen Key Laboratory of Big Data Intelligent Analysis and Decision, Xiamen, Fujian 361005, China Corresponding author: wangying@xmu.edu.cnAbstractUnderstanding gene regulatory networks (GRNs) is crucial for deciphering cellular...
  4. ...Chuanyuan Wang and Zhi-Ping Liu Department of Biomedical Engineering, School of Control Science and Engineering, Shandong University, Jinan, Shandong 250061, China Corresponding author: zpliu@sdu.edu.cnAbstractA gene regulatory network (GRN) intricately encodes the interconnectedness of identities...
  5. ...analysis did not reveal any significantly enriched terms for 265 this subset, indicating a lack of strong functional enrichment for these genes. 266 A key ISRE motif, IRF8 drives the antiviral gene regulatory network 267 To further investigate regulatory mechanisms driving the antiviral response, we...
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  6. ..., demonstrating an unprecedented putative cis-regulatory role of Helitrons in Drosophila. Differential expression analysis between species with different preferred hosts reveals divergence in gene expression in heads and larvae. Although TEs’ presence does not affect overall gene expression, we observe 6...
  7. ...activity. We comprehensively profiled the transcriptome and proteome of murine bone marrow-derived macrophages and found that only 15% of the circadian proteome had corresponding oscillating mRNA, suggesting post-transcriptional regulation influences macrophage clock regulatory output to a greater extent...
  8. ...organism Encyclopedia of Regulatory Networks) consortia to systematically assay TF binding events in vivo in two major model organisms, Drosophila melanogaster (fly) and Caenorhabditis elegans (worm). These data sets comprise 605 TFs identifying 3.6 M sites in the fly and 356 TFs identifying 0.9 M sites...
  9. .... apaQTL) (Fig. 3G). The above results together reflect the distinct tissue-dependence and genetic regulatory architectures of transcription initiation (eQTL) versus post-transcriptional processing (sQTL and apaQTL). Integrating multilayer molecular phenotypes enables a more comprehensive depiction...
  10. ...decipher gene regulatory networks (GRNs) underpinning normal development. Zebrafish is 94 an excellent model organism for dissecting gene regulatory control of cell fate and behaviour 95 (Figiel et al. 2021). Large clutch sizes, ex utero development and availability of well-96 characterised fluorescent...
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