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21 results on '"Thomas Gramberg"'

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1. A frequent SNP in TRIM5α strongly enhances the innate immune response against LINE-1 elements

2. Nuclear PYHIN proteins target the host transcription factor Sp1 thereby restricting HIV-1 in human macrophages and CD4+ T cells.

3. The SAMHD1-mediated block of LINE-1 retroelements is regulated by phosphorylation

4. SAMHD1 … and Viral Ways around It

5. Recognize Yourself—Innate Sensing of Non-LTR Retrotransposons

6. Mouse SAMHD1 Has Antiretroviral Activity and Suppresses a Spontaneous Cell-Intrinsic Antiviral Response

7. TRIM19/PML Restricts HIV Infection in a Cell Type-Dependent Manner

8. Recognize Yourself—Innate Sensing of Non-LTR Retrotransposons

9. Nuclear PYHIN proteins target the host transcription factor Sp1 thereby restricting HIV-1 in human macrophages and CD4+ T cells

10. NDT & METROLOGY – Improving Efficiency in Aerospace Manufacturing utilizing the Multi-Modality Approach

11. Evidence that multiple defects in murine DC-SIGN inhibit a functional interaction with pathogens

12. Susceptibility to SARS coronavirus S protein-driven infection correlates with expression of angiotensin converting enzyme 2 and infection can be blocked by soluble receptor

13. Cytoplasmic HIV-RNA in monocytes determines microglial activation and neuronal cell death in HIV-associated neurodegeneration

14. Restriction of diverse retroviruses by SAMHD1

15. SAMHD1 restricts the replication of human immunodeficiency virus type 1 by depleting the intracellular pool of deoxynucleoside triphosphates

16. Evidence for an Activation Domain at the Amino Terminus of Simian Immunodeficiency Virus Vpx▿ †

17. Accessories to the Crime: Recent Advances in HIV Accessory Protein Biology

18. The Signal Peptide of the Ebolavirus Glycoprotein Influences Interaction with the Cellular Lectins DC-SIGN and DC-SIGNR

19. Functional comparison of mouse CIRE/mouse DC-SIGN and human DC-SIGN.

20. Proceedings of the Frontiers of Retrovirology Conference 2016

21. Spontaneous Type I IFN response in SAMHD1-deficient mice requires both, functional intracellular RNA and DNA sensing pathways

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