Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
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Mammalian SUN protein interaction networks at the inner nuclear membrane and their role in laminopathy disease processesLINC complexes form by binding of three KASH peptides to domain interfaces of trimeric SUN proteinsNesprin-3 regulates endothelial cell morphology, perinuclear cytoskeletal architecture, and flow-induced polarizationUnder Pressure: Mechanical Stress Management in the NucleusIntermediate Filaments Play a Pivotal Role in Regulating Cell Architecture and FunctionGIP/MZT1 proteins orchestrate nuclear shapingA Taz1- and Microtubule-Dependent Regulatory Relationship between Telomere and Centromere Positions in Bouquet Formation Secures Proper Meiotic DivisionsLINC complexes mediate the positioning of cone photoreceptor nuclei in mouse retinaAnalysis of meiosis in SUN1 deficient mice reveals a distinct role of SUN2 in mammalian meiotic LINC complex formation and functionThe SUN protein Mps3 is required for spindle pole body insertion into the nuclear membrane and nuclear envelope homeostasisDisplacement correlations between a single mesenchymal-like cell and its nucleus effectively link subcellular activities and motility in cell migration analysis.Changes in the nuclear envelope environment affect spindle pole body duplication in Saccharomyces cerevisiae.Acetylation of the SUN protein Mps3 by Eco1 regulates its function in nuclear organization.Genetic analysis of Mps3 SUN domain mutants in Saccharomyces cerevisiae reveals an interaction with the SUN-like protein Slp1Structural and functional adaptations of the mammalian nuclear envelope to meet the meiotic requirementsDepletion of the LINC complex disrupts cytoskeleton dynamics and meiotic resumption in mouse oocytesA conserved KASH domain protein associates with telomeres, SUN1, and dynactin during mammalian meiosisMuscular dystrophy-associated SUN1 and SUN2 variants disrupt nuclear-cytoskeletal connections and myonuclear organizationOsteopotentia regulates osteoblast maturation, bone formation, and skeletal integrity in miceActin cap associated focal adhesions and their distinct role in cellular mechanosensingEvolution of the lamin protein family: what introns can tell.Induction of a massive endoplasmic reticulum and perinuclear space expansion by expression of lamin B receptor mutants and the related sterol reductases TM7SF2 and DHCR7.Microtubule-organizing center formation at telomeres induces meiotic telomere clusteringArabidopsis CROWDED NUCLEI (CRWN) proteins are required for nuclear size control and heterochromatin organization.Lamin B2 prevents chromosome instability by ensuring proper mitotic chromosome segregation.Identification of unique SUN-interacting nuclear envelope proteins with diverse functions in plants.Structure and expression of the maize (Zea mays L.) SUN-domain protein gene family: evidence for the existence of two divergent classes of SUN proteins in plantsKASHing up with the nucleus: novel functional roles of KASH proteins at the cytoplasmic surface of the nucleus.KIFC1-like motor protein associates with the cephalopod manchette and participates in sperm nuclear morphogenesis in Octopus tankahkeeiDynamics of Arabidopsis SUN proteins during mitosis and their involvement in nuclear shaping.The nuclear envelope localization of DYT1 dystonia torsinA-ΔE requires the SUN1 LINC complex component.Functional organization and dynamics of the cell nucleusThe KASH protein Kms2 coordinates mitotic remodeling of the spindle pole body.The role of Drosophila Lamin C in muscle function and gene expressionA role for nuclear envelope-bridging complexes in homology-directed repair.Trafficking to uncharted territory of the nuclear envelopeThe differential formation of the LINC-mediated perinuclear actin cap in pluripotent and somatic cells.Identification of differential protein interactors of lamin A and progerinNucleoskeleton mechanics at a glanceUntethering the nuclear envelope and cytoskeleton: biologically distinct dystonias arising from a common cellular dysfunction
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Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
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scientific article published on 17 August 2009
@en
vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
@en
Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
@nl
type
label
Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
@en
Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
@nl
prefLabel
Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
@en
Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
@nl
P2860
P921
P356
P1476
Bringing KASH under the SUN: the many faces of nucleo-cytoskeletal connections.
@en
P2093
David Razafsky
Didier Hodzic
P2860
P304
P356
10.1083/JCB.200906068
P407
P577
2009-08-17T00:00:00Z
2009-08-24T00:00:00Z