Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
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Regulation of asymmetrical cytokinesis by cAMP during meiosis I in mouse oocytesArp2/3 complex regulates asymmetric division and cytokinesis in mouse oocytesWASH complex regulates Arp2/3 complex for actin-based polar body extrusion in mouse oocytesRole of caspase-3 cleaved IP3 R1 on Ca(2+) homeostasis and developmental competence of mouse oocytes and eggsMolecular imaging of membrane proteins and microfilaments using atomic force microscopyING3 is essential for asymmetric cell division during mouse oocyte maturationEssential role of ubiquitin C-terminal hydrolases UCHL1 and UCHL3 in mammalian oocyte maturation.Redistribution of mitochondria leads to bursts of ATP production during spontaneous mouse oocyte maturation.Sirtuin Inhibition Adversely Affects Porcine Oocyte Meiosis.The ICSI procedure from past to future: a systematic review of the more controversial aspects.Acentrosomal spindle assembly and chromosome segregation during oocyte meiosisDynamic changes in mitochondrial distribution in human oocytes during meiotic maturation.RhoA-mediated FMNL1 regulates GM130 for actin assembly and phosphorylates MAPK for spindle formation in mouse oocyte meiosisSymmetry breaking and polarity establishment during mouse oocyte maturationInhibition of Rac1 GTPase activity affects porcine oocyte maturation and early embryo developmentTristetraprolin functions in cytoskeletal organization during mouse oocyte maturation.Polar body cytokinesis.Oocyte maturation: gamete-somatic cells interactions, meiotic resumption, cytoskeletal dynamics and cytoplasmic reorganization.Daam1 regulates fascin for actin assembly in mouse oocyte meiosis.Deficiencies in extrusion of the second polar body due to high calcium concentrations during in vitro fertilization in inbred C3H/He mice.Effects of growth differentiation factor 9 and bone morphogenetic protein 15 on the in vitro maturation of porcine oocytes.Contributions of the actin cytoskeleton to the emergence of polarity during maturation in human oocytes.mTOR is required for asymmetric division through small GTPases in mouse oocytes.Localization of RNA and translation in the mammalian oocyte and embryo.
P2860
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P2860
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on February 2009
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
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vědecký článek
@cs
name
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
@en
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
@nl
type
label
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
@en
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
@nl
prefLabel
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
@en
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes.
@nl
P2860
P356
P1433
P1476
Actin filaments: key players in the control of asymmetric divisions in mouse oocytes
@en
P2093
Jessica Azoury
P2860
P356
10.1042/BC20080003
P577
2009-02-01T00:00:00Z