Cytoskeleton

Papers
(The median citation count of Cytoskeleton is 0. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2020-03-01 to 2024-03-01.)
ArticleCitations
LIM domain proteins in cell mechanobiology32
Early events in endothelial flow sensing28
Cytoskeletal prestress: The cellular hallmark in mechanobiology and mechanomedicine27
Is there a universal mechanism of cell alignment in response to substrate topography?24
Production and analysis of a mammalian septin hetero‐octamer complex23
The many modes of flagellar and ciliary beating: Insights from a physical analysis21
Posttranslational modifications of the cytoskeleton21
Composition and function of ciliary inner‐dynein‐arm subunits studied in Chlamydomonas reinhardtii19
The function of SEC22B and its role in human diseases18
Exosomal vimentin from adipocyte progenitors accelerates wound healing16
P53 in RhoA regulation14
Structural change and degradation of cytoskeleton due to the acrolein conjugation with vimentin and actin during brain infarction13
A review and analysis of the clinical literature on Charcot–Marie–Tooth disease caused by mutations in neurofilament protein L13
Recent insights into the relative timing of myosin's powerstroke and release of phosphate13
Myosin's powerstroke occurs prior to the release of phosphate from the active site11
Molecular cancer cell responses to solid compressive stress and interstitial fluid pressure11
Myofibril assembly and the roles of the ubiquitin proteasome system11
A common theme for axonopathies? The dependency cycle of local axon homeostasis10
Phospho‐regulation of mitotic spindle assembly10
Sarcomeric TPM3 expression in human heart and skeletal muscle10
Structural diversity and distribution of cilia in the apical sense organ of the ctenophore Bolinopsis mikado10
Vimentin's side gig: Regulating cellular proteostasis in mammalian systems9
Molecular investigations into the unfoldase action of severing enzymes on microtubules9
Vimentin intermediate filaments modulate cell traction force but not cell sensitivity to substrate stiffness9
Photodynamic sensitizers modulate cytoskeleton structural dynamics in neuronal cells8
Septins promote caspase activity and coordinate mitochondrial apoptosis7
Cilium axoneme internalization and degradation in chytrid fungi7
An in silico approach to determine inter‐subunit affinities in human septin complexes7
N‐terminal β‐strand of single‐headed kinesin‐1 can modulate the off‐axis force‐generation and resultant rotation pitch7
Inhibitors of the ubiquitin proteasome system block myofibril assembly in cardiomyocytes derived from chick embryos and human pluripotent stem cells6
The legacy of kinesins in the pollen tube 30 years later6
Interplay between endoplasmic reticulum membrane contacts and actomyosin cytoskeleton6
FLN‐1/filamin is required to anchor the actomyosin cytoskeleton and for global organization of sub‐cellular organelles in a contractile tissue6
Androgen downregulates desmocollin‐2 in association with induction of mesenchymal transition of breast MDA‐MB‐453 cancer cells6
Phosphoregulation of the septin cytoskeleton in neuronal development and disease6
Investigating the impact of the phosphorylation status of tyrosine residues within the TACC domain of TACC3 on microtubule behavior during axon growth and guidance5
Microtubule‐associated proteins and enzymes modifying tubulin4
Measuring force generation within reconstituted microtubule bundle assemblies using optical tweezers4
Single depolymerizing and transport kinesins stabilize microtubule ends4
Statistical profiling reveals correlations between the cell response to and the primary structure of Rho‐GAPs4
STED analysis reveals the organization of nonmuscle muscle II, muscle myosin II, and F‐actin in nascent myofibrils4
Inhibition of focal adhesion kinase increases myofibril viscosity in cardiac myocytes4
Lis1 co‐localizes with actin in the phagocytic cup and regulates phagocytosis4
The emerging role of septins in fungal pathogenesis4
Variable fluid flow regimes alter human brain microvascular endothelial cell–cell junctions and cytoskeletal structure4
Prey capture in protists utilizing microtubule filled processes and surface motility4
Zebrafish null mutants of Sept6 and Sept15 are viable but more susceptible to Shigella infection3
Espin overexpression causes stereocilia defects and provides an anti‐capping effect on actin polymerization3
FHOD‐1 is the only formin in Caenorhabditis elegans that promotes striated muscle growth and Z‐line organization in a cell autonomous manner3
Physical evidence on desmin–lamin B interaction3
Decoding post‐translational modifications of mammalian septins3
Switch‐1 instability at the active site decouples ATP hydrolysis from force generation in myosin II3
Conservation and divergence of the G‐interfaces of Drosophila melanogaster septins3
Time for rethinking the different β‐actin transgenic mouse models?3
A single stiffened nucleus alters cell dynamics and coherence in a monolayer3
Polymerization kinetics of tubulin from mung seedlings modeled as a competition between nucleation and GTP‐hydrolysis rates3
Proper cytoskeleton α‐tubulin distribution is concomitant to tyrosine phosphorylation during in vitro capacitation and acrosomal reaction in human spermatozoa3
Inherently disordered regions of axonemal dynein assembly factors2
Reconstitution of muscle cell microtubule organization in vitro2
Molecular and cellular level characterization of cytoskeletal mechanics using a quartz crystal microbalance2
Is Gulf War Illness a prolonged early phase tauopathy?2
The phosphatase inhibitor Sds23 promotes symmetric spindle positioning in fission yeast2
Dynamin‐2 regulates microtubule stability via an endocytosis‐independent mechanism2
Appearance of microtubules at the cytokinesis to interphase transition in Arabidopsis thaliana2
The myosin regulatory light chain Myl5 localizes to mitotic spindle poles and is required for proper cell division2
Metastasis suppressor 1 interacts with α‐actinin 4 to affect its localization and regulate formation of membrane ruffling2
Diversification of the calponin family proteins by gene amplification and repeat expansion of calponin‐like motifs2
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Dictyostelium myosin 1F and myosin 1E inhibit actin waves in a lipid‐binding‐dependent and motor‐independent manner2
Actomyosin‐dependent invasion of endothelial sprouts in collagen2
Effects of environmental stress factors on the actin cytoskeleton of fungi and plants: Ionizing radiation and ROS2
Tau oligomerization on microtubules in health and disease1
The fidgetin family: Shaking things up among the microtubule‐severing enzymes1
Caenorhabditis elegans septins contribute to the development and structure of the oogenic germline1
Dysregulation of mTOR by tau in Alzheimer's disease1
Structure challenges in the multivalency of Tau‐microtubule interactions1
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Dynein localization and pronuclear movement in the C. elegans zygote1
Actin filament‐ and Wiskott‐Aldrich syndrome protein‐binding sites on fructose‐1,6‐bisphosphate aldolase are functionally distinct from the active site1
The role of intrinsic disorder in binding of plant microtubule‐associated proteins to the cytoskeleton1
Conformation of actin subunits at the barbed and pointed ends of F‐actin with and without capping proteins1
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Studying the rhodopsin‐like G protein‐coupled receptors by atomic force microscopy1
Intraflagellar transport: A critical player in photoreceptor development and the pathogenesis of retinal degenerative diseases1
Evidence for microtubule nucleation at the Golgi in breast cancer cells1
Targeted inactivation of the Septin2 and Septin9 genes in myelinating Schwann cells of mice1
UNC‐82/NUAK kinase is required by myosin A, but not myosin B, to assemble and function in the thick filament arms of C. elegans striated muscle1
Simultaneous co‐overexpression of Saccharomyces cerevisiae septins Cdc3 and Cdc10 drives pervasive, phospholipid‐, and tag‐dependent plasma membrane localization1
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Axopodia and the cellular “arms” race1
Big tau: What, how, where and why1
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Genetic and sporadic forms of tauopathies—TAU as a disease driver for the majority of patients but the minority of tauopathies1
Septin and actin contributions to endothelial cell–cell junctions and monolayer integrity1
Confined keratocytes mimic in vivo migration and reveal volume‐speed relationship1
Myosin 1e deficiency affects migration of 4T1 breast cancer cells1
Tau and neurodegeneration1
The emergence of nebulin repeats and evolution of lasp family proteins1
miR96‐ and miR182‐driven regulation of cytoskeleton results in inhibition of glioblastoma motility1
The emerging nontraditional roles for tau in the brain1
Follow that cell: Leukocyte migration in L‐plastin mutant zebrafish1
The actin‐binding protein Adseverin mediates neutrophil polarization and migration1
A half‐century of tau1
Evidence for intraflagellar transport in butterfly spermatocyte cilia0
NAP1L1 is a novel microtubule‐associated protein0
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First conference “Actin and actin‐binding proteins in health and disease”: Meeting report0
Merging of ventral fibers at adhesions drives the remodeling of cellular contractile systems in fibroblasts0
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Meet the editorial staff: Interview series0
An interview with Velia M. Fowler, Department of Biological Sciences, University of Delaware, DE, USA0
Reevaluating tau reduction as a therapeutic approach for tauopathies: Insights and perspectives0
Generation of recombinant and chickenized scFv versions of an anti‐kinesin monoclonal antibody H20
Cevipabulin induced abnormal tubulin protofilaments polymerization by binding to Vinblastine site and The Seventh site0
‘10th cell architecture in development and disease (CADD)’: Meeting report0
Acetylation of fission yeast tropomyosin does not promote differential association with cognate formins0
European Plant Cytoskeletal Club meeting: A vital platform for advancing plant cytoskeleton research0
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Theory of antiparallel microtubule overlap stabilization by motors and diffusible crosslinkers0
Tau, ADNP, and sex0
An interview with Michael Samuel ‐ Tumour Microenvironment Laboratory, Centre for Cancer Biology, SA Pathology and University of South Australia0
Rearrangement of GUV‐confined actin networks in response to micropipette aspiration0
An interview with Patrick Oakes—Loyola University Chicago, IL, USA0
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CD109‐regulated mechanical properties of endothelial cells0
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Why kiss‐and‐hop explains that tau does not stabilize microtubules and does not interfere with axonal transport (at physiological conditions)0
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Picture of the month by Nadja Hümpfer and Helge Ewers0
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Sliding of antiparallel microtubules drives bipolarization of monoastral spindles0
An interview with Miguel Vicente‐Manzanares, Instituto de Biologia Molecular del Cancer, Salamanca, Spain0
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Travels with tau prions0
Emergence of diverse patterns driven by molecular motors in the motility assay0
A model for the catalytic activity of microtubule polymerases0
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Mapping the cytoskeletal architecture of renal tubules and surrounding peritubular capillaries in the kidney0
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Tau: More than a microtubule‐binding protein in neurons0
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An interview with Alexis Gautreau—Institut Polytechnique de Paris, France0
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Assembly of FAP93 at the proximal axoneme in Chlamydomonas cilia0
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Tau and Alzheimer's disease: Past, present and future0
Comparison of incorporation of wild type and mutated actins into sarcomeres in skeletal muscle cells: A fluorescence recovery after photobleaching study0
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A‐Band assembly in avian skeletal muscles observed with super‐resolution microscopy0
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An interview with Bailey McCurdy, winner of the best lightening talk entitled “Uncovering mother centriole uncapping defects in trisomy 21” at the Front Range Cytoskeleton meeting July 11, 20230
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Tau here, tau there, tau almost everywhere: Clarifying the distribution of tau in the adult CNS0
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Regulation of mitochondrial structure by the actin cytoskeleton0
Functional and structural significance of the inner‐arm‐dynein subspecies d in ciliary motility0
Actin's C‐terminus coordinates actin structural changes and functions0
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Interview with Inés M. Antón—Centro Nacional de Biotecnología (CNB‐CSIC), Madrid, Spain0
An interview with Douglas N. Robinson—Johns Hopkins School of Medicine, Baltimore, Maryland, USA0
Tension modulation of actomyosin ring assembly and RhoGTPases activity: Perspectives from the Xenopus oocyte wound healing model0
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Cytoskeleton 2020 paper of the year0
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An interview with Joanna Moraczewska–Kazimierz Wielki University, Bydgoszcz, Poland0
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Cleavage furrow positioning in dividing Dictyostelium cells0
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Titin takes centerstage among cytoskeletal contributions to myocardial passive stiffness0
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An interview with Alpha Yap, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Australia0
Tau and the hard problem faceoff0
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An interview with Anthony Brown, Ohio State University, Columbus, OH, USA0
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An interview with Dimitrios Vavylonis, Lehigh University, Bethlehem, PA, USA0
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BORG family proteins in physiology and human disease0
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An interview with Peter Gunning ‐ School of Medical Sciences, UNSW Sydney, Australia0
Ionic strength alters crosslinker‐driven self‐organization of microtubules0
Molecular simulation approaches to probing the effects of mechanical forces in the actin cytoskeleton0
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Topographical depth reveals contact guidance mechanism distinct from focal adhesion confinement0
Sequences in the myosin A rod interact with UNC‐89/obscurin and the zinc‐finger protein UNC‐98 during thick filament assembly and M‐line formation in C. elegans striated m0
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Metastasis‐associated 1 localizes to the sarcomeric Z‐disc and is implicated in skeletal muscle pathology0
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A potential posttranscriptional regulator for p60‐katanin: miR‐124‐3p0
Myosin motors on the pathway of viral infections0
Temperature‐dependent augmentation of ciliary motility by the TRP2 channel in Chlamydomonas reinhardtii0
The cilium like region of the Drosophila bifurca spermatocyte: Elongation of a giant axoneme without intraflagellar transport0
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Microstructure‐based nuclear lamina constitutive model0
Cell‐surface contacts determine volume and mechanical properties of human embryonic kidney 293 T cells0
Introduction to the Special Issue of Cytoskeleton on the molecular and cell biology of septins0
The discovery of tau protein0
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Segregated localization of two calponin‐related proteins within sarcomeric thin filaments in Caenorhabditis elegans striated muscle0
Effect of MG‐132 on myofibrillogenesis and the ubiquitination of GAPDH in quail myotubes0
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The Community of Neuronal Cytoskeletal Researchers Finds a Home0
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Cytoskeleton announces new Editor in Chief0
Dehydroleucodine and xanthatin, two natural anti‐inflammatory lactones, inhibit mast cell degranulation by affecting the actin cytoskeleton0
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Break and accelerator—The mechanics of Tau (and amyloid) toxicity0
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Tau and signal transduction0
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