Small RNAs, big impact: microRNAs in malaria pathogenesis, therapeutic opportunities, and challenges. [PDF]
Metwally NG +3 more
europepmc +1 more source
Regulatory Pathways of the Maturation-Related Decline in Adventitious Root Formation in Forest Tree Species. [PDF]
Cordeiro D, Pizarro A, Díaz-Sala C.
europepmc +1 more source
The nuclear export receptor CRM1/XPO1 and its diverse cargoes. [PDF]
Kehlenbach RH, Chook YM.
europepmc +1 more source
β-arrestin recruitment facilitates a direct association with G proteins. [PDF]
Lee CY +15 more
europepmc +1 more source
LncRNA IRENA promotes peripheral T-cell lymphoma progression through scaffolding ARHGEF1 and FMNL1 to modulate RHOA GTPase/MAPK signaling. [PDF]
Wang C +12 more
europepmc +1 more source
Modification of PCNA by ISG15 plays a crucial role in porcine deltacoronavirus infection. [PDF]
Li C +13 more
europepmc +1 more source
Engineering an orthogonal ubiquitin transfer cascade with RING E3 RNF38 by phage display to reveal its regulation of nuclear transport. [PDF]
Zhou L +17 more
europepmc +1 more source
Yrb4p, a yeast Ran–GTP‐binding protein involved in import of ribosomal protein L25 into the nucleus [PDF]
Gsp1p, the essential yeast Ran homologue, is a key regulator of transport across the nuclear pore complex (NPC). We report the identification of Yrb4p, a novel Gsp1p binding protein. The 123 kDa protein was isolated from Saccharomyces cerevisiae cells and found to be related to importin-beta, the mediator of nuclear localization signal (NLS)-dependent ...
Dirk Görlich +2 more
exaly +6 more sources
Polo-like kinase functions are essential for the establishment of a normal bipolar mitotic spindle, although precisely how Plk1 regulates the spindle is uncertain. In this study, we report that the small GTP/GDP-binding protein Ran is associated with Plk1.
Terry D Copeland
exaly +4 more sources
Expression of the Xenopus GTP-binding protein gene Ran during embryogenesis
The Ran gene family encodes small GTP binding proteins that are associated with a variety of nuclear processes. We isolated a Xenopus Ran cDNA and analyzed the pattern of expression of this gene during embryogenesis. Ran is expressed maternally and later in the CNS, neural crest, mesenchyme, eyes, and otic vesicles.
Yasuko Onuma, M Asashima
exaly +3 more sources

