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1 s targets for the importin alpha (Imp alpha) NLS receptor.
2 f p97 binding to the pore complex and to the NLS receptor.
3 parate from its well-established role as the NLS receptor.
4 c, high affinity and a nuclear, low affinity NLS receptor.
5 r transport as the importin-alpha subunit of NLS receptors.
6 titative analysis of the correlation between NLS receptor affinity and the steady-state distribution
7 ant in vivo as the only cellular copy of the NLS receptor and examined the impact on cell growth and
8  incubation of purified RanGTP and RCC1 with NLS receptor and import substrate prevented assembly of
9  unable to support import in the presence of NLS receptor and Ran.
10 ve mapped the binding domains on p97 for the NLS receptor and the nuclear pore.
11 port requires a nuclear localization signal (NLS) receptor and at least three other cytoplasmic facto
12 act with the nuclear localization sequences (NLS) receptor and its cargo as they traverse the nuclear
13 erin alpha/importin alpha, which acts as the NLS receptor, and karyopherin beta1/importin beta, which
14                                          The NLS receptor-binding domain of p97 maps to the C-termina
15 eptide interacts in vitro with a cytoplasmic NLS receptor complex comprised of the Rch1/importin (kar
16     Importin-beta, the second subunit of the NLS receptor complex, does not influence in vitro NLS bi
17 P1alpha (importin-alpha), a component of the NLS receptor complex, was identified in a yeast two-hybr
18 ers of the importin (karyopherin)-alpha beta NLS receptor complex.
19 NLSs) contained within them and the importin NLS receptor complex.
20 model for the interaction of an NLS with the NLS receptor complex.
21 nals (NLSs) of the targeted proteins and the NLS receptor (importin) complex.
22 he CSD could block the binding of p53 to the NLS receptor, importin alpha, and reduce the efficiency
23 the binding affinity of an NLS cargo for the NLS receptor, importin alpha, and the import rate for th
24 ion site reduces binding of the kinase to an NLS receptor in vitro, thus providing a mechanism that m
25 unctions as the nuclear localization signal (NLS) receptor in Saccharomyces cerevisiae.
26                                          The NLS receptor is a heterodimeric proteins consisting of s
27 cal nuclear localization signal (NLS) to the NLS receptor, karyopherin/importin alpha, is the most we
28  Subsequently, we found that only one of the NLS receptors, karyopherin alpha3 (Kapalpha3/Qip), would
29 ct in the cellular machinery involved in the NLS receptor-mediated pathway of nuclear import.
30 carried out in part by a recently identified NLS receptor named Srp1/importin-alpha.
31 ding the nuclear location sequence receptor (NLS receptor), p97, the small nuclear GTPase Ran/TC4, an
32 en added to an import assay with recombinant NLS receptor, p97 and Ran-GDP, RanBP1 significantly stim
33 in import in a permeabilized cell assay: the NLS receptor, p97, and Ran/TC4.
34 nents of the import machinery, including the NLS receptor, p97, Ran/TC4, and nuclear transport factor
35  the SMN complex might represent the Sm core NLS receptor predicted by previous studies.
36                     The alpha subunit of the NLS receptor, Rag cohort 1 (Rch1), enters the nucleus, p
37 in alpha is the nuclear localization signal (NLS) receptor that is involved in the nuclear import of
38 s dependent on the presence of a cytoplasmic NLS receptor, the GTPase Ran, and p10/ NTF2.
39  p97 with the nuclear localization sequence (NLS) receptor, the nuclear pore complex, and Ran/TC4 is
40 he nuclear transport apparatus is Srp1p, the NLS receptor, which binds NLS-cargo in the cytoplasm and
41 -GTP to p97 dissociated p97 from immobilized NLS receptor while the Ran-GDP/RanBP1/p97 complex did no
42  not maintained for cargoes that bind to the NLS receptor with very weak or very strong affinity.

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