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1. Deciphering microbial communities involved in marine steel corrosion using high-throughput amplicon sequencing.

2. CCR4-NOT differentially controls host versus virus poly(a)-tail length and regulates HCMV infection.

3. Biochemical Analysis Leads to Improved Orthogonal Bioluminescent Tools.

4. An eIF3d-dependent switch regulates HCMV replication by remodeling the infected cell translation landscape to mimic chronic ER stress.

5. Vaccinia virus D10 has broad decapping activity that is regulated by mRNA splicing.

6. Minding the message: tactics controlling RNA decay, modification, and translation in virus-infected cells.

7. Platelets contribute to disease severity in COVID-19.

8. Platelets amplify endotheliopathy in COVID-19.

9. Targeting the m 6 A RNA modification pathway blocks SARS-CoV-2 and HCoV-OC43 replication.

10. Sediment structure and physicochemical changes following tidal inundation at a large open coast managed realignment site.

11. Defining the Role of Stress Granules in Innate Immune Suppression by the Herpes Simplex Virus 1 Endoribonuclease VHS.

12. Targeting Poxvirus Decapping Enzymes and mRNA Decay to Generate an Effective Oncolytic Virus.

14. Cellular 5'-3' mRNA exonuclease Xrn1 controls double-stranded RNA accumulation and anti-viral responses.

15. An integrated model for the nucleo-cytoplasmic transport of cytoplasmic poly(A)-binding proteins.

16. Nuclear relocalisation of cytoplasmic poly(A)-binding proteins PABP1 and PABP4 in response to UV irradiation reveals mRNA-dependent export of metazoan PABPs.

17. Poly(A)-binding proteins are functionally distinct and have essential roles during vertebrate development.

18. mRNA-specific regulation of translation by poly(A)-binding proteins.

19. Poly(A)-binding protein 1 partially relocalizes to the nucleus during herpes simplex virus type 1 infection in an ICP27-independent manner and does not inhibit virus replication.

20. Deletion of the pluripotency-associated Tex19.1 gene causes activation of endogenous retroviruses and defective spermatogenesis in mice.

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