scholarly article | Q13442814 |
P2093 | author name string | Hong Zhang | |
Yi Lu | |||
Xiao Yang | |||
Jinan Chen | |||
Taijiao Jiang | |||
Yongqiang Wang | |||
Haiying Hang | |||
Xiaoxi Dong | |||
Xinlei Zhang | |||
Jiuhong Dong | |||
Haolong Huang | |||
P2860 | cites work | Gene ontology: tool for the unification of biology | Q23781406 |
A conserved protein network controls assembly of the outer kinetochore and its ability to sustain tension | Q24304199 | ||
A conserved Mis12 centromere complex is linked to heterochromatic HP1 and outer kinetochore protein Zwint-1 | Q24308736 | ||
The conserved KMN network constitutes the core microtubule-binding site of the kinetochore | Q24320105 | ||
A protein domain-based interactome network for C. elegans early embryogenesis | Q24322661 | ||
Cytoscape: a software environment for integrated models of biomolecular interaction networks | Q24515682 | ||
Linking kinetochore-microtubule binding to the spindle checkpoint | Q24646166 | ||
High-quality binary protein interaction map of the yeast interactome network | Q24651397 | ||
Architecture of the budding yeast kinetochore reveals a conserved molecular core | Q24672661 | ||
X-ray structure of the GCN4 leucine zipper, a two-stranded, parallel coiled coil | Q27655682 | ||
A comprehensive analysis of protein-protein interactions in Saccharomyces cerevisiae | Q27860755 | ||
Network biology: understanding the cell's functional organization | Q27861027 | ||
A comprehensive two-hybrid analysis to explore the yeast protein interactome | Q27861093 | ||
Predicting coiled coils from protein sequences | Q27861097 | ||
Proteome survey reveals modularity of the yeast cell machinery | Q27929510 | ||
Comparative analysis of Saccharomyces cerevisiae WW domains and their interacting proteins. | Q27931057 | ||
An in vivo map of the yeast protein interactome | Q27936680 | ||
A computationally directed screen identifying interacting coiled coils from Saccharomyces cerevisiae | Q27938148 | ||
Analysis of the budding yeast Saccharomyces cerevisiae cell cycle by morphological criteria and flow cytometry. | Q44768641 | ||
Synthetic virus-like particles from self-assembling coiled-coil lipopeptides and their use in antigen display to the immune system | Q45399710 | ||
Hierarchical self-assembly of a coiled-coil peptide into fractal structure | Q46715842 | ||
A computationally guided protein-interaction screen uncovers coiled-coil interactions involved in vesicular trafficking. | Q47589340 | ||
Paircoil2: improved prediction of coiled coils from sequence. | Q47604732 | ||
Mechanism of specificity in the Fos-Jun oncoprotein heterodimer | Q67753776 | ||
De novo designed coiled-coil proteins with variable conformations as components of molecular electronic devices | Q83198590 | ||
Saccharomyces cerevisiae septins: supramolecular organization of heterooligomers and the mechanism of filament assembly | Q27938270 | ||
Global landscape of protein complexes in the yeast Saccharomyces cerevisiae | Q27938796 | ||
A synthetic peptide inhibitor of human immunodeficiency virus replication: correlation between solution structure and viral inhibition | Q28317348 | ||
A spring-loaded mechanism for the conformational change of influenza hemagglutinin | Q28646856 | ||
SNAREs--engines for membrane fusion | Q29547230 | ||
BiNGO: a Cytoscape plugin to assess overrepresentation of gene ontology categories in biological networks | Q29547427 | ||
Controlling the false discovery rate in behavior genetics research | Q29614833 | ||
Visualization of interactions among bZIP and Rel family proteins in living cells using bimolecular fluorescence complementation | Q29616037 | ||
Hierarchical organization of modularity in metabolic networks | Q29618451 | ||
Potent suppression of HIV-1 replication in humans by T-20, a peptide inhibitor of gp41-mediated virus entry | Q29620710 | ||
SNARE Protein Structure and Function | Q30336208 | ||
Semirational design of Jun-Fos coiled coils with increased affinity: Universal implications for leucine zipper prediction and design | Q33245808 | ||
Bimolecular fluorescence complementation (BiFC) analysis as a probe of protein interactions in living cells | Q33345889 | ||
Long coiled-coil proteins and membrane traffic | Q34221802 | ||
The structure of alpha-helical coiled coils | Q34412200 | ||
Identification of an N-terminal trimeric coiled-coil core within arenavirus glycoprotein 2 permits assignment to class I viral fusion proteins | Q34651454 | ||
Expression analysis of mitotic spindle checkpoint genes in breast carcinoma: role of NDC80/HEC1 in early breast tumorigenicity, and a two-gene signature for aneuploidy | Q34677690 | ||
Peptide and protein building blocks for synthetic biology: from programming biomolecules to self-organized biomolecular systems. | Q34738190 | ||
Design of protein-interaction specificity gives selective bZIP-binding peptides. | Q34975999 | ||
Molecular motors | Q35109708 | ||
Structure, Function, and Regulation of Budding Yeast Kinetochores | Q35564845 | ||
Scaffolds, levers, rods and springs: diverse cellular functions of long coiled-coil proteins | Q35865779 | ||
Kinetochore-spindle microtubule interactions during mitosis | Q36015464 | ||
CENP-E combines a slow, processive motor and a flexible coiled coil to produce an essential motile kinetochore tether | Q36625807 | ||
Comparing function and structure between entire proteomes | Q36640722 | ||
Coiled-coils in alpha-helix-containing proteins: analysis of the residue types within the heptad repeat and the use of these data in the prediction of coiled-coils in other proteins | Q36651281 | ||
Structures and functions of yeast kinetochore complexes | Q36760332 | ||
The Ndc80 complex: hub of kinetochore activity | Q36830415 | ||
Hec1 overexpression hyperactivates the mitotic checkpoint and induces tumor formation in vivo | Q36944217 | ||
Architecture and flexibility of the yeast Ndc80 kinetochore complex | Q37092536 | ||
Pharmacological interference with protein-protein interactions mediated by coiled-coil motifs. | Q37168249 | ||
An autoinhibited coiled-coil design strategy for split-protein protease sensors | Q37438501 | ||
The use of coiled-coil proteins in drug delivery systems. | Q37616295 | ||
Self-assembly of coiled coils in synthetic biology: inspiration and progress. | Q37754153 | ||
Drug-free macromolecular therapeutics: induction of apoptosis by coiled-coil-mediated cross-linking of antigens on the cell surface | Q39747863 | ||
PDZ domain binding selectivity is optimized across the mouse proteome | Q40191457 | ||
How complete are current yeast and human protein-interaction networks? | Q41838577 | ||
Revealing static and dynamic modular architecture of the eukaryotic protein interaction network | Q41895485 | ||
Transforming acidic coiled coil 1 promotes transformation and mammary tumorigenesis. | Q42808065 | ||
P4510 | describes a project that uses | Cytoscape | Q3699942 |
P433 | issue | 19 | |
P304 | page(s) | 3911-3922 | |
P577 | publication date | 2012-08-08 | |
P1433 | published in | Molecular Biology of the Cell | Q2338259 |
P1476 | title | Coiled-coil networking shapes cell molecular machinery | |
P478 | volume | 23 |
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Q41594512 | Coiled-coils: The long and short of it. |
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Q47152953 | DNA methylation-based age prediction from various tissues and body fluids. |
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