Architecture of the fungal nuclear pore inner ring complex.
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Structure Determination of the Nuclear Pore Complex with Three-Dimensional Cryo electron MicroscopyMolecular architecture of the inner ring scaffold of the human nuclear pore complexArchitecture of the symmetric core of the nuclear poreSystematic Protein-Protein Interaction Analysis Reveals Intersubcomplex Contacts in the Nuclear Pore Complex.Modeling of the mechano-chemical behaviour of the nuclear pore complex: current research and perspectivesThe "Sticky Patch" Model of Crystallization and Modification of Proteins for Enhanced Crystallizability.Generating Conformation and Complex-Specific Synthetic Antibodies.A Novel Saccharomyces cerevisiae FG Nucleoporin Mutant Collection for Use in Nuclear Pore Complex Functional ExperimentsNanobodies: site-specific labeling for super-resolution imaging, rapid epitope-mapping and native protein complex isolation.Insights into the gate of the nuclear pore complex.Pre-assembled Nuclear Pores Insert into the Nuclear Envelope during Early DevelopmentToward the atomic structure of the nuclear pore complex: when top down meets bottom up.Developing genetic tools to exploit Chaetomium thermophilum for biochemical analyses of eukaryotic macromolecular assembliesThe nuclear pore complex core scaffold and permeability barrier: variations of a common theme.The Nuclear Pore Complex as a Flexible and Dynamic GateThe Structure Inventory of the Nuclear Pore Complex.Structure and Function of the Nuclear Pore Complex Cytoplasmic mRNA Export Platform.Congenital Heart Disease Genetics Uncovers Context-Dependent Organization and Function of Nucleoporins at Cilia.Mitotic Disassembly of Nuclear Pore Complexes Involves CDK1- and PLK1-Mediated Phosphorylation of Key Interconnecting Nucleoporins.A short linear motif in scaffold Nup145C connects Y-complex with pre-assembled outer ring Nup82 complexNatively Unfolded FG Repeats Stabilize the Structure of the Nuclear Pore Complex.A coarse-grained computational model of the nuclear pore complex predicts Phe-Gly nucleoporin dynamics.Control of yeast retrotransposons mediated through nucleoporin evolution.STRUCTURAL BIOLOGY. Locking down the core of the pore.The yeast Ty1 retrotransposon requires components of the nuclear pore complex for transcription and genomic integration.Newly found Tetrahymena nucleoporins, Nup214, Nup153 and Pom121/Pom82, differentiate nuclear pore complexes of functionally distinct nuclei.Structural and functional analysis of mRNA export regulation by the nuclear pore complex.Nuclear pore heterogeneity influences HIV-1 infection and the antiviral activity of MX2
P2860
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P2860
Architecture of the fungal nuclear pore inner ring complex.
description
2015 nî lūn-bûn
@nan
2015年の論文
@ja
2015年論文
@yue
2015年論文
@zh-hant
2015年論文
@zh-hk
2015年論文
@zh-mo
2015年論文
@zh-tw
2015年论文
@wuu
2015年论文
@zh
2015年论文
@zh-cn
name
Architecture of the fungal nuclear pore inner ring complex.
@en
type
label
Architecture of the fungal nuclear pore inner ring complex.
@en
prefLabel
Architecture of the fungal nuclear pore inner ring complex.
@en
P2093
P2860
P356
P1433
P1476
Architecture of the fungal nuclear pore inner ring complex.
@en
P2093
Akiko Koide
André Hoelz
Anthony A Kossiakoff
Daniel H Lin
Daniel J Mayo
Emily J Rundlet
Ferdinand M Huber
Jessica Fischer
Karsten Thierbach
P2860
P356
10.1126/SCIENCE.AAC9176
P407
P577
2015-08-27T00:00:00Z