
pmid: 29748336
pmc: PMC6028547
Exportins bind cargo molecules in a RanGTP-dependent manner inside nuclei and transport them through nuclear pores to the cytoplasm. CRM1/Xpo1 is the best-characterized exportin because specific inhibitors such as leptomycin B allow straightforward cargo validations in vivo. The analysis of other exportins lagged far behind, foremost because no such inhibitors had been available for them. In this study, we explored the cargo spectrum of exportin 7/Xpo7 in depth and identified not only ∼200 potential export cargoes but also, surprisingly, ∼30 nuclear import substrates. Moreover, we developed anti-Xpo7 nanobodies that acutely block Xpo7 function when transfected into cultured cells. The inhibition is pathway specific, mislocalizes export cargoes of Xpo7 to the nucleus and import substrates to the cytoplasm, and allowed validation of numerous tested cargo candidates. This establishes Xpo7 as a broad-spectrum bidirectional transporter and paves the way for a much deeper analysis of exportin and importin function in the future.
Cell Nucleus, 570, Active Transport, Cell Nucleus, Receptors, Cytoplasmic and Nuclear, Exportin 1 Protein, Karyopherins, Single-Domain Antibodies, Xenopus laevis, ran GTP-Binding Protein, Nuclear Pore, Oocytes, Animals, Humans, Camelids, New World, Research Articles, HeLa Cells
Cell Nucleus, 570, Active Transport, Cell Nucleus, Receptors, Cytoplasmic and Nuclear, Exportin 1 Protein, Karyopherins, Single-Domain Antibodies, Xenopus laevis, ran GTP-Binding Protein, Nuclear Pore, Oocytes, Animals, Humans, Camelids, New World, Research Articles, HeLa Cells
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Top 10% |
