Functional characterization of a Nup159p-containing nuclear pore subcomplex
about
A conserved biogenesis pathway for nucleoporins: proteolytic processing of a 186-kilodalton precursor generates Nup98 and the novel nucleoporin, Nup96The Mex67p-mediated nuclear mRNA export pathway is conserved from yeast to humanDisorder in the nuclear pore complex: the FG repeat regions of nucleoporins are natively unfoldedThe Nup107-160 nucleoporin complex is required for correct bipolar spindle assemblySac3 is an mRNA export factor that localizes to cytoplasmic fibrils of nuclear pore complex.The nucleoporins Nup170p and Nup157p are essential for nuclear pore complex assemblyBinding of the Mex67p/Mtr2p heterodimer to FXFG, GLFG, and FG repeat nucleoporins is essential for nuclear mRNA export.Molecular basis for the functional interaction of dynein light chain with the nuclear-pore complex.The stoichiometry of the nucleoporin 62 subcomplex of the nuclear pore in solution.Nuclear export of the small ribosomal subunit requires the ran-GTPase cycle and certain nucleoporins.Biogenesis of the signal recognition particle (SRP) involves import of SRP proteins into the nucleolus, assembly with the SRP-RNA, and Xpo1p-mediated export.Ubiquitylation of the nuclear pore complex controls nuclear migration during mitosis in S. cerevisiaeMolecular architecture of the yeast nuclear pore complex: localization of Nsp1p subcomplexesPom33, a novel transmembrane nucleoporin required for proper nuclear pore complex distributionUltrastructural localization of rRNA shows defective nuclear export of preribosomes in mutants of the Nup82p complex.Nuclear accumulation of the small GTPase Gsp1p depends on nucleoporins Nup133p, Rat2p/Nup120p, Nup85p, Nic96p, and the acetyl-CoA carboxylase Acc1p.Nucleoporins prevent DNA damage accumulation by modulating Ulp1-dependent sumoylation processesCytoplasmic inositol hexakisphosphate production is sufficient for mediating the Gle1-mRNA export pathway.The integral membrane protein Pom34p functionally links nucleoporin subcomplexesThe molecular architecture of the nuclear pore complex.Nup214-Nup88 nucleoporin subcomplex is required for CRM1-mediated 60 S preribosomal nuclear exportMutations in tap uncouple RNA export activity from translocation through the nuclear pore complex.Probing nuclear pore complex architecture with proximity-dependent biotinylation.RanGTP-regulated interactions of CRM1 with nucleoporins and a shuttling DEAD-box helicaseAssembly and preferential localization of Nup116p on the cytoplasmic face of the nuclear pore complex by interaction with Nup82p.Nucleoporin FG domains facilitate mRNP remodeling at the cytoplasmic face of the nuclear pore complexIn situ analysis of spatial relationships between proteins of the nuclear pore complexThe nuclear pore complex and the DEAD box protein Rat8p/Dbp5p have nonessential features which appear to facilitate mRNA export following heat shock.Nuclear distributions of NUP62 and NUP214 suggest architectural diversity and spatial patterning among nuclear pore complexes.Structural basis for assembly and function of the Nup82 complex in the nuclear pore scaffold.The fission yeast Nup107-120 complex functionally interacts with the small GTPase Ran/Spi1 and is required for mRNA export, nuclear pore distribution, and proper cell division.The yeast nuclear pore complex and transport through itThe Ran GTPase cycle is required for yeast nuclear pore complex assembly.The cytoplasmic filaments of the nuclear pore complex are dispensable for selective nuclear protein import.The nuclear pore complex has entered the atomic age.The Structure Inventory of the Nuclear Pore Complex.The Nsp1p carboxy-terminal domain is organized into functionally distinct coiled-coil regions required for assembly of nucleoporin subcomplexes and nucleocytoplasmic transport.Linker Nups connect the nuclear pore complex inner ring with the outer ring and transport channel.A short linear motif in scaffold Nup145C connects Y-complex with pre-assembled outer ring Nup82 complexThe Drosophila nucleoporin DNup88 localizes DNup214 and CRM1 on the nuclear envelope and attenuates NES-mediated nuclear export.
P2860
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P2860
Functional characterization of a Nup159p-containing nuclear pore subcomplex
description
1998 nî lūn-bûn
@nan
1998年の論文
@ja
1998年論文
@yue
1998年論文
@zh-hant
1998年論文
@zh-hk
1998年論文
@zh-mo
1998年論文
@zh-tw
1998年论文
@wuu
1998年论文
@zh
1998年论文
@zh-cn
name
Functional characterization of a Nup159p-containing nuclear pore subcomplex
@en
type
label
Functional characterization of a Nup159p-containing nuclear pore subcomplex
@en
prefLabel
Functional characterization of a Nup159p-containing nuclear pore subcomplex
@en
P2093
P2860
P356
P1476
Functional characterization of a Nup159p-containing nuclear pore subcomplex
@en
P2093
P2860
P304
P356
10.1091/MBC.9.12.3475
P577
1998-12-01T00:00:00Z