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1. Regulation of translation in response to iron deficiency in human cells

2. Mechanisms and consequences of mRNA destabilization during viral infections

3. SARS-CoV-2 Nsp1 mediated mRNA degradation requires mRNA interaction with the ribosome

4. Human mRNA in saliva can correctly identify individuals harboring acute infection

5. Identification of PARN nuclease activity inhibitors by computational-based docking and high-throughput screening

7. SARS-CoV-2 transmission and impacts of unvaccinated-only screening in populations of mixed vaccination status

8. RNase L activation in the cytoplasm induces aberrant processing of mRNAs in the nucleus.

9. Modeling the effectiveness of olfactory testing to limit SARS-CoV-2 transmission

10. RNA-binding proteins direct myogenic cell fate decisions

11. Saliva TwoStep for rapid detection of asymptomatic SARS-CoV-2 carriers

12. A quantitative inventory of yeast P body proteins reveals principles of composition and specificity

13. Norovirus infection results in eIF2α independent host translation shut-off and remodels the G3BP1 interactome evading stress granule formation.

14. Intrinsically Disordered Regions Can Contribute Promiscuous Interactions to RNP Granule Assembly

15. The link between adjacent codon pairs and mRNA stability

16. Myo-granules Connect Physiology and Pathophysiology

17. Some early economic threads in the history of children's homes

18. Analysis of Double-Stranded RNA from Microbial Communities Identifies Double-Stranded RNA Virus-like Elements

19. dsRNA-Seq: Identification of Viral Infection by Purifying and Sequencing dsRNA

20. Distinct stages in stress granule assembly and disassembly

21. Circular RNAs Co-Precipitate with Extracellular Vesicles: A Possible Mechanism for circRNA Clearance.

23. Structure-function analysis of Rny1 in tRNA cleavage and growth inhibition.

24. Interactions between Upf1 and the decapping factors Edc3 and Pat1 in Saccharomyces cerevisiae.

25. The Me31B DEAD-box helicase localizes to postsynaptic foci and regulates expression of a CaMKII reporter mRNA in dendrites of Drosophila olfactory projection neurons

26. Localization to, and effects of Pbp1, Pbp4, Lsm12, Dhh1, and Pab1 on stress granules in Saccharomyces cerevisiae.

27. Telomere biology disorders: time for moving towards the clinic?

29. Cytosolic condensates rich in polyserine define subcellular sites of tau aggregation

30. Are stress granules the RNA analogs of misfolded protein aggregates?

32. Higher Viral Load Drives Infrequent Severe Acute Respiratory Syndrome Coronavirus 2 Transmission Between Asymptomatic Residence Hall Roommates

33. dsRNA-induced condensation of antiviral proteins modulates PKR activity

34. Nucleic acid-protein condensates in innate immune signaling

35. Mechanisms and Regulation of RNA Condensation in RNP Granule Formation

36. Chemical inhibition of PAPD5/7 rescues telomerase function and hematopoiesis in dyskeratosis congenita

37. RNA is required for the integrity of multiple nuclear and cytoplasmic membrane‐less RNP granules

38. Novel stress granule-like structures are induced via a paracrine mechanism during viral infection

39. Breath analysis by ultra-sensitive broadband laser spectroscopy detects SARS-CoV-2 infection

40. RNase L-mediated RNA decay alters 3’ end formation and splicing of host mRNAs

41. dsRNA-induced condensation of antiviral proteins promotes PKR activation

42. RNA-binding proteins direct myogenic cell fate decisions

44. SARS-CoV-2 Transmission and Impacts of Unvaccinated-Only Screening in Populations of Mixed Vaccination Status

47. ADAR1 limits stress granule formation through both translation-dependent and translation-independent mechanisms

48. TDP43 ribonucleoprotein granules: physiologic function to pathologic aggregates

49. RNA is required for the maintenance of multiple cytoplasmic and nuclear membrane-less organelles

50. Paracrine granules are cytoplasmic RNP granules distinct from stress granules that assemble in response to viral infection

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