Local cortical pulling-force repression switches centrosomal centration and posterior displacement in C. elegans
about
Shape-motion relationships of centering microtubule asters.A Motor-Gradient and Clustering Model of the Centripetal Motility of MTOCs in Meiosis I of Mouse OocytesLong astral microtubules and RACK-1 stabilize polarity domains during maintenance phase in Caenorhabditis elegans embryosSSBD: a database of quantitative data of spatiotemporal dynamics of biological phenomenaIntracellular organelles mediate cytoplasmic pulling force for centrosome centration in the Caenorhabditis elegans early embryo.A model of cytoplasmically driven microtubule-based motion in the single-celled Caenorhabditis elegans embryoStronger net posterior cortical forces and asymmetric microtubule arrays produce simultaneous centration and rotation of the pronuclear complex in the early Caenorhabditis elegans embryoLET-99 inhibits lateral posterior pulling forces during asymmetric spindle elongation in C. elegans embryos.The PAM-1 aminopeptidase regulates centrosome positioning to ensure anterior-posterior axis specification in one-cell C. elegans embryos.Dlg1 binds GKAP to control dynein association with microtubules, centrosome positioning, and cell polarity.A model for cleavage plane determination in early amphibian and fish embryos.A novel mechanism of microtubule length-dependent force to pull centrosomes toward the cell center.Modeling of Noisy Spindle Dynamics Reveals Separable Contributions to Achieving Correct Orientation.Shaping microtubules into diverse patterns: molecular connections for setting up both ends.End-on microtubule-dynein interactions and pulling-based positioning of microtubule organizing centers.Forces positioning the mitotic spindle: Theories, and now experiments.Centrosome centering and decentering by microtubule network rearrangement.Dynactin binding to tyrosinated microtubules promotes centrosome centration in C. elegans by enhancing dynein-mediated organelle transport.The Mitotic Spindle in the One-Cell C. elegans Embryo Is Positioned with High Precision and StabilityTumor suppressor APC is an attenuator of spindle-pulling forces during C. elegans asymmetric cell division.Cytoplasmic flows as signatures for the mechanics of mitotic positioning.Optical Tweezers-Based Measurements of Forces and Dynamics at Microtubule Ends.Uncovering the balance of forces driving microtubule aster migration in C. elegans zygotes.
P2860
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P2860
Local cortical pulling-force repression switches centrosomal centration and posterior displacement in C. elegans
description
2007 nî lūn-bûn
@nan
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
2007年论文
@zh
2007年论文
@zh-cn
name
Local cortical pulling-force r ...... ior displacement in C. elegans
@ast
Local cortical pulling-force r ...... ior displacement in C. elegans
@en
type
label
Local cortical pulling-force r ...... ior displacement in C. elegans
@ast
Local cortical pulling-force r ...... ior displacement in C. elegans
@en
prefLabel
Local cortical pulling-force r ...... ior displacement in C. elegans
@ast
Local cortical pulling-force r ...... ior displacement in C. elegans
@en
P2860
P356
P1476
Local cortical pulling-force r ...... ior displacement in C. elegans
@en
P2093
Akatsuki Kimura
Shuichi Onami
P2860
P304
P356
10.1083/JCB.200706005
P407
P577
2007-12-24T00:00:00Z