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1. The role of RNA-binding proteins in the processing of mRNAs produced by carcinogenic papillomaviruses

2. hnRNP G/RBMX enhances HPV16 E2 mRNA splicing through a novel splicing enhancer and inhibits production of spliced E7 oncogene mRNAs

3. HnRNP D activates production of HPV16 E1 and E6 mRNAs by promoting intron retention

4. Establishment of an immortalized human erythroid cell line sustaining differentiation potential without inducible gene expression system

6. Establishment of an immortalized human erythroid cell line sustaining differentiation potential without inducible gene expression system

7. Identification of heterogenous nuclear ribonucleoproteins (hnRNPs) and serine- and arginine-rich (SR) proteins that induce human papillomavirus type 16 late gene expression and alter L1 mRNA splicing

8. Role of Viral Ribonucleoproteins in Human Papillomavirus Type 16 Gene Expression

9. Short half-life of HPV16 E6 and E7 mRNAs sensitizes HPV16-positive tonsillar cancer cell line HN26 to DNA-damaging drugs

10. The DNA damage response activates HPV16 late gene expression at the level of RNA processing

11. hnRNP L controls HPV16 RNA polyadenylation and splicing in an Akt kinase-dependent manner

12. Short half-life of HPV16 E6 and E7 mRNAs sensitizes HPV16-positive tonsillar cancer cell line HN26 to DNA-damaging drugs

13. Adenosine causes read-through into the late region of the HPV16 genome in a guanosine-dependent manner

14. Heterogeneous Nuclear Ribonucleoprotein C Proteins Interact with the Human Papillomavirus Type 16 (HPV16) Early 3′-Untranslated Region and Alleviate Suppression of HPV16 Late L1 mRNA Splicing

15. Myeloid-Derived Suppressor Cells Play Crucial Roles in the Regulation of Mouse Collagen-Induced Arthritis

16. Novel human papillomavirus type 18 replicon and its application in screening the antiviral effects of cytokines

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