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1 lear export of nsP2 is mediated via the CRM1 nuclear export pathway.
2 vity or by inhibiting the Exportin1-mediated nuclear export pathway.
3 t signal that participated in CRM1-dependent nuclear export pathway.
4 mosome region maintenance-1 (CRM1)-dependent nuclear export pathway.
5 nuclear import receptor and a competent CRM1-nuclear export pathway.
6  suggesting that native Tax utilizes another nuclear export pathway.
7 ism requiring Mob2p, Cbk1p, and a functional nuclear export pathway.
8 seem to function in a Los1p-independent tRNA nuclear export pathway.
9 on as an exporter or an adapter in this tRNA nuclear export pathway.
10 s directly involved in the CRM1-mediated Rev nuclear export pathway.
11 mology domain and a competent Crm1-dependent nuclear export pathway.
12 us, RanBP2 emerges as a key component of the nuclear export pathway.
13  agents that disrupt different Ran-dependent nuclear export pathways.
14 h nuclear import and previously unrecognized nuclear export pathways.
15 e action of Xpo1p in at least one of several nuclear export pathways.
16 ns such as GR and hnRNP A1 that use distinct nuclear export pathways.
17 g the viral RNA to the cellular CRM1 or NXF1 nuclear export pathways.
18 e to access splicing-dependent cellular mRNA nuclear export pathways.
19 ion, and plays a functional role in multiple nuclear export pathways.
20                                          The nuclear export pathway accessed by NTD is insensitive to
21  mechanism of leukemogenesis mediated by the nuclear export pathway and support further investigation
22 ssembly and budding are regulated by the RNA nuclear export pathway and that alternative cellular pat
23 t HIV-1 Rev and PKI act through an identical nuclear export pathway and that Rev, rather than using a
24          Tax translocation required the CRM1 nuclear export pathway, and a transient interaction betw
25 on is dependent on the presence of an intact nuclear export pathway as c-Jun is stabilized and locali
26 nsported out of the nucleus through the CRM1 nuclear export pathway, based on observations that treat
27  or Nup153, suggesting that the Tap and CRM1 nuclear export pathways converge at the cytoplasmic peri
28 us nuclear envelope budding is an endogenous nuclear export pathway for large RNP granules.
29                                 Two distinct nuclear export pathways for retroviral mRNA have been de
30 and strongly suggest that there are multiple nuclear export pathways for these small RNAs in Arabidop
31 tibiotic, which inhibits the Crm1- dependent nuclear export pathway, induces an accumulation of epsin
32 viruses may access the same constitutive RNA nuclear export pathway involving RHA, Tap and Sam68, eve
33         These findings suggest that the CRM1 nuclear export pathway may be important in the functiona
34                                 Thus the rev nuclear export pathway may be used to regulate an oncoge
35                                     Atypical nuclear export pathways may thus exist that regulate the
36 oject addressed the relationship between the nuclear export pathway of SNV RU5-reporter RNA and trans
37 oviruses directs unspliced viral RNAs into a nuclear export pathway that is congruent with the pathwa
38  assays indicate that RU5 gag RNA accesses a nuclear export pathway that is distinct from the LMB-inh
39  indicate the existence of ICP27-independent nuclear export pathways that are accessible to many vira
40  Rev Response Element (RRE) through the Crm1 nuclear export pathway to the cytoplasm where viral prot
41                 HIV-1 requires a specialized nuclear export pathway to transport unspliced and partia
42                     These data show that the nuclear export pathway used by steroid hormone receptors
43 ttempt to reveal which steps, if any, in the nuclear export pathway utilized by steroid receptors req
44 ate that Rev and RanBP1 compete for the same nuclear export pathway, whereas Rev- and the CTE-mediate
45 ear shuttling protein that utilizes the CRM1 nuclear export pathway, while HIV-1 Gag is excluded from
46    We discovered that inhibition of the CRM1 nuclear export pathway with leptomycin B causes FIV Gag

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