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1. THE VAULT GUY.

2. Nucleoporin Nup358 drives the differentiation of myeloid-biased multipotent progenitors by modulating HDAC3 nuclear translocation.

3. WW domains form a folded type of nuclear localization signal to guide YAP1 nuclear import.

4. A checkpoint function for Nup98 in nuclear pore formation suggested by novel inhibitory nanobodies.

5. Structural rearrangements in the nucleus localize latent HIV proviruses to a perinucleolar compartment supportive of reactivation.

6. Role of the San1 ubiquitin ligase in the heat stress-induced degradation of nonnative Nup1 in the nuclear pore complex.

7. Spermatozoa in mice lacking the nucleoporin NUP210L show defects in head shape and motility but not in nuclear compaction or histone replacement.

8. Nucleoporin93 limits Yap activity to prevent endothelial cell senescence.

9. Virus specificity and nucleoporin requirements for MX2 activity are affected by GTPase function and capsid-CypA interactions.

10. C9orf72 polyPR directly binds to various nuclear transport components.

11. Gutless Helper-Dependent and First-Generation HAdV5 Vectors Have Similar Mechanical Properties and Common Transduction Mechanisms.

12. Nuclear pore pathology underlying multisystem proteinopathy type 3‐related inclusion body myopathy.

13. Diameter dependence of transport through nuclear pore complex mimics studied using optical nanopores.

14. Mechanism of exportin retention in the cell nucleus.

15. The nuclear pore Y-complex functions as a platform for transcriptional regulation of FLOWERING LOCUS C in Arabidopsis.

16. An Efficient Method for Isolating and Purifying Nuclei from Mice Brain for Single-Molecule Imaging Using High-Speed Atomic Force Microscopy.

17. HIV-1 capsid shape, orientation, and entropie elasticity regulate translocation into the nuclear pore complex.

18. Quantitative comparison of nuclear transport inhibition by SARS Coronavirus ORF6 reveals the importance of oligomerization.

19. Murine leukemia virus infection of non-dividing dendritic cells is dependent on nucleoporins.

20. Gle1 is required for tRNA to stimulate Dbp5 ATPase activity in vitro and promote Dbp5-mediated tRNA export in vivo in Saccharomyces cerevisiae.

21. Nuclear localization signal-tagged systems: relevant nuclear import principles in the context of current therapeutic design.

22. Nucleoporin 50 proteins affect longevity and salinity stress tolerance in seeds.

23. SUN1 facilitates CHMP7 nuclear influx and injury cascades in sporadic amyotrophic lateral sclerosis.

24. NUA positively regulates plant immunity by coordination with ESD4 to deSUMOylate TPR1 in Arabidopsis.

25. Nuclear Entry of DNA and Transgene Expression in Dividing and Non-dividing Cells.

26. Evolutionarily conserved protein motifs drive interactions between the plant nucleoskeleton and nuclear pores.

27. Tpr Misregulation in Hippocampal Neural Stem Cells in Mouse Models of Alzheimer's Disease.

28. A survey of the specificity and mechanism of 1,6 hexanediol-induced disruption of nuclear transport.

29. Interdependent changes of nuclear lamins, nuclear pore complexes, and ploidy regulate cellular regeneration and stress response in the heart.

30. Plant nuclear envelope as a hub connecting genome organization with regulation of gene expression.

31. Nuclear envelope budding and its cellular functions.

32. NUP85 as a Neurodevelopmental Gene: From Podocyte to Neuron.

33. From the sideline: Tissue‐specific nucleoporin function in health and disease, an update.

34. Puzzling out nuclear pore complex assembly.

35. Autophagy as a caretaker of nuclear integrity.

36. Changing the guard—nuclear pore complex quality control.

37. You are who your friends are—nuclear pore proteins as components of chromatin‐binding complexes.

38. Interactions of Chromatin with the Nuclear Lamina and Nuclear Pore Complexes.

39. Evolutionary, structural and functional insights in nuclear organisation and nucleocytoplasmic transport in trypanosomes.

40. The magnified view: from ancient trinkets to single nuclear pore complexes.

41. Coordinating nucleoporin condensation and nuclear pore complex assembly.

42. Nuclear pore complex and nucleocytoplasmic transport disruption in neurodegeneration.

43. Nuclear Import and Export of YAP and TAZ.

46. HOS1 promotes plant tolerance to low‐energy stress via the SnRK1 protein kinase.

47. Phase separation of intrinsically disordered FG-Nups is driven by highly dynamic FG motifs.

48. Phase separation of the nuclear pore complex facilitates selective nuclear transport to regulate plant defense against pathogen and pest invasion.

49. Temporal Changes in Nuclear Envelope Permeability during Semi-Closed Mitosis in Dictyostelium Amoebae.

50. Biomolecular condensates: insights into early and late steps of the HIV-1 replication cycle.

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