The PAR proteins: fundamental players in animal cell polarization.
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[1] Y. Jan,et al. Hippocampal Neuronal Polarity Specified by Spatially Localized mPar3/mPar6 and PI 3-Kinase Activity , 2003, Cell.
[2] T. Pawson,et al. A mammalian PAR-3–PAR-6 complex implicated in Cdc42/Rac1 and aPKC signalling and cell polarity , 2000, Nature Cell Biology.
[3] Y. Jan,et al. Drosophila Neuroblast Asymmetric Cell Division: Recent Advances and Implications for Stem Cell Biology , 2006, Neuron.
[4] Y. Nagai,et al. PAR‐6 regulates aPKC activity in a novel way and mediates cell‐cell contact‐induced formation of the epithelial junctional complex , 2001, Genes to cells : devoted to molecular & cellular mechanisms.
[5] C. Waterman-Storer,et al. Conserved microtubule–actin interactions in cell movement and morphogenesis , 2003, Nature Cell Biology.
[6] G. Drewes,et al. MARK, a Novel Family of Protein Kinases That Phosphorylate Microtubule-Associated Proteins and Trigger Microtubule Disruption , 1997, Cell.
[7] D. Johnston,et al. Bazooka and PAR-6 are required with PAR-1 for the maintenance of oocyte fate in Drosophila , 2001, Current Biology.
[8] Y. Jan,et al. Drosophila par-1 is required for oocyte differentiation and microtubule organization , 2001, Current Biology.
[9] R. Lin,et al. MEX-5 and MEX-6 function to establish soma/germline asymmetry in early C. elegans embryos. , 2000, Molecular cell.
[10] K. Kemphues,et al. An Atypical PKC Directly Associates and Colocalizes at the Epithelial Tight Junction with ASIP, a Mammalian Homologue of Caenorhabditis elegans Polarity Protein PAR-3 , 1998, The Journal of cell biology.
[11] Alan Hall,et al. Rho GTPases Control Polarity, Protrusion, and Adhesion during Cell Movement , 1999, The Journal of cell biology.
[12] C. Doe,et al. Par-6 and aPKC are not required for axon or dendrite specification in Drosophila , 2004 .
[13] A. Hall,et al. Cdc42 and Par6–PKCζ regulate the spatially localized association of Dlg1 and APC to control cell polarization , 2005, The Journal of cell biology.
[14] C. Doe,et al. Drosophila aPKC regulates cell polarity and cell proliferation in neuroblasts and epithelia , 2003, The Journal of cell biology.
[15] Giovanna Lucchini,et al. Functional and Physical Interactions between Yeast 14-3-3 Proteins, Acetyltransferases, and Deacetylases in Response to DNA Replication Perturbations , 2007, Molecular and Cellular Biology.
[16] C. Sardet,et al. The aPKC–PAR-6–PAR-3 cell polarity complex localizes to the centrosome attracting body, a macroscopic cortical structure responsible for asymmetric divisions in the early ascidian embryo , 2006, Journal of Cell Science.
[17] J. Labbé,et al. The forces that position a mitotic spindle asymmetrically are tethered until after the time of spindle assembly , 2004, The Journal of cell biology.
[18] C. Nüsslein-Volhard,et al. Mutations affecting segment number and polarity in Drosophila , 1980, Nature.
[19] N. Perrimon,et al. Integrated activity of PDZ protein complexes regulates epithelial polarity , 2003, Nature Cell Biology.
[20] P. Thibault,et al. aPKC‐mediated phosphorylation regulates asymmetric membrane localization of the cell fate determinant Numb , 2007, The EMBO journal.
[21] T. Hurd,et al. Pars and polarity: taking control of Rac , 2005, Nature Cell Biology.
[22] A. Hall,et al. Cdc42 and noncanonical Wnt signal transduction pathways cooperate to promote cell polarity , 2007, The Journal of cell biology.
[23] K. Hahn,et al. Spatiotemporal dynamics of RhoA activity in migrating cells , 2006, Nature.
[24] I. Macara. Parsing the Polarity Code , 2004, Nature Reviews Molecular Cell Biology.
[25] X. Morin,et al. Analysis of partner of inscuteable, a Novel Player of Drosophila Asymmetric Divisions, Reveals Two Distinct Steps in Inscuteable Apical Localization , 2000, Cell.
[26] J. Sanes,et al. LKB1 and SAD Kinases Define a Pathway Required for the Polarization of Cortical Neurons , 2007, Cell.
[27] J. Ahringer,et al. Similar requirements for CDC-42 and the PAR-3/PAR-6/PKC-3 complex in diverse cell types. , 2007, Developmental biology.
[28] J. Shulman,et al. The role of PAR-1 in regulating the polarised microtubule cytoskeleton in the Drosophila follicular epithelium , 2003, Development.
[29] S. Mango,et al. CYK-4/GAP Provides a Localized Cue to Initiate Anteroposterior Polarity upon Fertilization , 2006, Science.
[30] J. Whittaker. Acetylcholinesterase development in extra cells caused by changing the distribution of myoplasm in ascidian embryos. , 1980, Journal of embryology and experimental morphology.
[31] D. St Johnston,et al. An Oskar-Dependent Positive Feedback Loop Maintains the Polarity of the Drosophila Oocyte , 2007, Current Biology.
[32] B. Lang,et al. A Comparative Genomics Approach to the Evolution of Eukaryotes and their Mitochondria 1 , 1999, The Journal of eukaryotic microbiology.
[33] I. Macara,et al. Mammalian Pins Is a Conformational Switch that Links NuMA to Heterotrimeric G Proteins , 2004, Cell.
[34] J. Ahringer,et al. CDC-42 controls early cell polarity and spindle orientation in C. elegans , 2001, Current Biology.
[35] F. Motegi,et al. Sequential functioning of the ECT-2 RhoGEF, RHO-1 and CDC-42 establishes cell polarity in Caenorhabditis elegans embryos , 2006, Nature Cell Biology.
[36] Yue Zhang,et al. Regulation of Cell Polarity and Protrusion Formation by Targeting RhoA for Degradation , 2003, Science.
[37] A. Fukui,et al. Meiotic maturation induces animal-vegetal asymmetric distribution of aPKC and ASIP/PAR-3 in Xenopus oocytes. , 2000, Development.
[38] F. Piano,et al. Atypical protein kinase C cooperates with PAR-3 to establish embryonic polarity in Caenorhabditis elegans. , 1998, Development.
[39] Yue Zhang,et al. Regulation of the Polarity Protein Par6 by TGFß Receptors Controls Epithelial Cell Plasticity , 2005, Science.
[40] Kei Sakamoto,et al. LKB1-dependent signaling pathways. , 2006, Annual review of biochemistry.
[41] M. Zwart,et al. Drosophila Anterior-Posterior Polarity Requires Actin-Dependent PAR-1 Recruitment to the Oocyte Posterior , 2006, Current Biology.
[42] S. Bowman,et al. The Drosophila NuMA Homolog Mud regulates spindle orientation in asymmetric cell division. , 2006, Developmental cell.
[43] H. Horvitz,et al. Mutations that affect neural cell lineages and cell fates during the development of the nematode Caenorhabditis elegans. , 1983, Cold Spring Harbor symposia on quantitative biology.
[44] C. Rappleye,et al. Pod-2, along with pod-1, defines a new class of genes required for polarity in the early Caenorhabditis elegans embryo. , 2001, Developmental Biology.
[45] G. Joberty,et al. The cell-polarity protein Par6 links Par3 and atypical protein kinase C to Cdc42 , 2000, Nature Cell Biology.
[46] X. Goff,et al. An overview of the KIN1/PAR‐1/MARK kinase family , 2004, Biology of the cell.
[47] A. Suzuki,et al. Lgl mediates apical domain disassembly by suppressing the PAR-3-aPKC-PAR-6 complex to orient apical membrane polarity , 2006, Journal of Cell Science.
[48] E. Mandelkow,et al. Protein kinase MARK/PAR-1 is required for neurite outgrowth and establishment of neuronal polarity. , 2002, Molecular biology of the cell.
[49] K. Mechtler,et al. The Par complex directs asymmetric cell division by phosphorylating the cytoskeletal protein Lgl , 2003, Nature.
[50] L. Collinson,et al. Regulated and Polarized PtdIns(3,4,5)P3 Accumulation Is Essential for Apical Membrane Morphogenesis in Photoreceptor Epithelial Cells , 2006, Current Biology.
[51] J. Nance,et al. PAR proteins and the establishment of cell polarity during C. elegans development , 2005, BioEssays : news and reviews in molecular, cellular and developmental biology.
[52] Erik Sahai,et al. Smurf1 regulates tumor cell plasticity and motility through degradation of RhoA leading to localized inhibition of contractility , 2007, The Journal of cell biology.
[53] J. Knoblich,et al. Bazooka recruits Inscuteable to orient asymmetric cell divisions in Drosophila neuroblasts , 1999, Nature.
[54] T. Nakamura,et al. Mechanism and role of localized activation of Rho-family GTPases in growth factor-stimulated fibroblasts and neuronal cells. , 2005, Biochemical Society transactions.
[55] K. Kemphues,et al. par-2, a gene required for blastomere asymmetry in Caenorhabditis elegans, encodes zinc-finger and ATP-binding motifs. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[56] K. Kemphues,et al. PARsing Embryonic Polarity , 2000, Cell.
[57] J. Wallingford,et al. The developmental biology of Dishevelled: an enigmatic protein governing cell fate and cell polarity , 2005, Development.
[58] K. Kemphues,et al. PAR-2 is asymmetrically distributed and promotes association of P granules and PAR-1 with the cortex in C. elegans embryos. , 1996, Development.
[59] A. Hyman,et al. Acto-myosin reorganization and PAR polarity in C. elegans , 2007, Development.
[60] Pavel Tomancak,et al. A Drosophila melanogaster homologue of Caenorhabditis elegans par-1 acts at an early step in embryonic-axis formation , 2000, Nature Cell Biology.
[61] R. Benton,et al. Drosophila PAR-1 and 14-3-3 Inhibit Bazooka/PAR-3 to Establish Complementary Cortical Domains in Polarized Cells , 2003, Cell.
[62] J. Priess,et al. Cortical flows powered by asymmetrical contraction transport PAR proteins to establish and maintain anterior-posterior polarity in the early C. elegans embryo. , 2004, Developmental cell.
[63] T. Pawson,et al. A polarity complex of mPar-6 and atypical PKC binds, phosphorylates and regulates mammalian Lgl , 2003, Nature Cell Biology.
[64] S. van den Heuvel,et al. A complex of LIN-5 and GPR proteins regulates G protein signaling and spindle function in C elegans. , 2003, Genes & development.
[65] A. Schetter,et al. Polarization of the C. elegans zygote proceeds via distinct establishment and maintenance phases , 2003, Development.
[66] Anirban Datta,et al. PTEN-Mediated Apical Segregation of Phosphoinositides Controls Epithelial Morphogenesis through Cdc42 , 2007, Cell.
[67] K. Kemphues,et al. par-1, a gene required for establishing polarity in C. elegans embryos, encodes a putative Ser/Thr kinase that is asymmetrically distributed , 1995, Cell.
[68] Hans Clevers,et al. LKB1 tumor suppressor protein: PARtaker in cell polarity. , 2004, Trends in cell biology.
[69] A. Ephrussi,et al. Par-1 regulates stability of the posterior determinant Oskar by phosphorylation , 2002, Nature Cell Biology.
[70] Y. Jan,et al. APC and GSK-3β Are Involved in mPar3 Targeting to the Nascent Axon and Establishment of Neuronal Polarity , 2004, Current Biology.
[71] A. Le Bivic,et al. CRB3 binds directly to Par6 and regulates the morphogenesis of the tight junctions in mammalian epithelial cells. , 2003, Molecular biology of the cell.
[72] P. Brennwald,et al. Mammalian PAR-1 determines epithelial lumen polarity by organizing the microtubule cytoskeleton , 2004, The Journal of cell biology.
[73] V. Thannickal,et al. Faculty Opinions recommendation of Regulation of the polarity protein Par6 by TGFbeta receptors controls epithelial cell plasticity. , 2005 .
[74] T. Hurd,et al. Direct interaction of two polarity complexes implicated in epithelial tight junction assembly , 2003, Nature Cell Biology.
[75] J. Labbé,et al. Heterotrimeric G protein signaling functions with dynein to promote spindle positioning in C. elegans , 2007, The Journal of cell biology.
[76] W. Wood,et al. Immunofluorescence visualization of germ-line-specific cytoplasmic granules in embryos, larvae, and adults of Caenorhabditis elegans. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[77] L. Boyd,et al. Analysis of RING finger genes required for embryogenesis in C. elegans , 2004, Genesis.
[78] J. Ahringer,et al. Asymmetrically Distributed C. elegans Homologs of AGS3/PINS Control Spindle Position in the Early Embryo , 2003, Current Biology.
[79] A. Shevchenko,et al. A protein complex containing Inscuteable and the Gα-binding protein Pins orients asymmetric cell divisions in Drosophila , 2000, Current Biology.
[80] Elaine Fuchs,et al. Asymmetric cell divisions promote stratification and differentiation of mammalian skin , 2005, Nature.
[81] D. Morton,et al. The C. elegans par-4 gene encodes a putative serine-threonine kinase required for establishing embryonic asymmetry. , 2000, Development.
[82] A. Suzuki,et al. Mammalian Lgl Forms a Protein Complex with PAR-6 and aPKC Independently of PAR-3 to Regulate Epithelial Cell Polarity , 2003, Current Biology.
[83] M. Labouesse. Faculty Opinions recommendation of Sequential functioning of the ECT-2 RhoGEF, RHO-1 and CDC-42 establishes cell polarity in Caenorhabditis elegans embryos. , 2006 .
[84] J. Priess,et al. C. elegans PAR-3 and PAR-6 are required for apicobasal asymmetries associated with cell adhesion and gastrulation , 2003, Development.
[85] N. Papalopulu,et al. aPKC, Crumbs3 and Lgl2 control apicobasal polarity in early vertebrate development , 2005, Development.
[86] G. Seydoux,et al. Stabilization of cell polarity by the C. elegans RING protein PAR-2. , 2006, Developmental cell.
[87] Joerg Betschinger,et al. Sequential roles of Cdc42, Par-6, aPKC, and Lgl in the establishment of epithelial polarity during Drosophila embryogenesis. , 2004, Developmental cell.
[88] E. Munro. PAR proteins and the cytoskeleton: a marriage of equals. , 2006, Current opinion in cell biology.
[89] D. Morton,et al. Identification of genes required for cytoplasmic localization in early C. elegans embryos , 1988, Cell.
[90] I. Macara,et al. Par-3 controls tight junction assembly through the Rac exchange factor Tiam1 , 2005, Nature Cell Biology.
[91] K. Kaibuchi,et al. Numb controls integrin endocytosis for directional cell migration with aPKC and PAR-3. , 2007, Developmental cell.
[92] A. Suzuki,et al. aPKC Acts Upstream of PAR-1b in Both the Establishment and Maintenance of Mammalian Epithelial Polarity , 2004, Current Biology.
[93] I. Macara,et al. Structure of Cdc42 in a complex with the GTPase‐binding domain of the cell polarity protein, Par6 , 2003, The EMBO journal.
[94] J. Labbé,et al. PAR Proteins Regulate Microtubule Dynamics at the Cell Cortex in C. elegans , 2003, Current Biology.
[95] S. Strome,et al. C. elegans PAR Proteins Function by Mobilizing and Stabilizing Asymmetrically Localized Protein Complexes , 2004, Current Biology.
[96] O. Bossinger,et al. Molecular and functional analysis of apical junction formation in the gut epithelium of Caenorhabditis elegans. , 2004, Developmental biology.
[97] Jonathon Howard,et al. The Distribution of Active Force Generators Controls Mitotic Spindle Position , 2003, Science.
[98] Yuh Nung Jan,et al. PAR-1 is a Dishevelled-associated kinase and a positive regulator of Wnt signalling , 2001, Nature Cell Biology.
[99] Haigen Huang,et al. Stimulation of erythropoiesis by inhibiting a new hematopoietic death receptor in transgenic zebrafish , 2000, Nature Cell Biology.
[100] I. Macara,et al. A mammalian Partner of inscuteable binds NuMA and regulates mitotic spindle organization , 2001, Nature Cell Biology.
[101] U. Tepass,et al. Interactions between the crumbs, lethal giant larvae and bazooka pathways in epithelial polarization , 2003, Nature Cell Biology.
[102] M. Diaz-Meco,et al. DaPKC-dependent phosphorylation of Crumbs is required for epithelial cell polarity in Drosophila , 2004, The Journal of cell biology.
[103] Lesilee S. Rose,et al. PAR-3 and PAR-1 inhibit LET-99 localization to generate a cortical band important for spindle positioning in Caenorhabditis elegans embryos. , 2007, Molecular biology of the cell.
[104] Jeremy B. A. Green,et al. Distinct PAR-1 proteins function in different branches of Wnt signaling during vertebrate development. , 2005, Developmental cell.
[105] Lesilee S. Rose,et al. LET-99 determines spindle position and is asymmetrically enriched in response to PAR polarity cues in C. elegans embryos. , 2002, Development.
[106] H. Piwnica-Worms,et al. Atypical PKC Phosphorylates PAR-1 Kinases to Regulate Localization and Activity , 2004, Current Biology.
[107] D. Morton,et al. The Caenorhabditis elegans par-5 gene encodes a 14-3-3 protein required for cellular asymmetry in the early embryo. , 2002, Developmental biology.
[108] P. Gönczy,et al. Coupling of cortical dynein and Gα proteins mediates spindle positioning in Caenorhabditis elegans , 2007, Nature Cell Biology.
[109] K. Kemphues,et al. Asymmetrically distributed PAR-3 protein contributes to cell polarity and spindle alignment in early C. elegans embryos , 1995, Cell.
[110] E. Knust,et al. Control of spindle orientation in Drosophila by the Par-3-related PDZ-domain protein Bazooka , 1998, Current Biology.
[111] Pierre Gönczy,et al. Translation of Polarity Cues into Asymmetric Spindle Positioning in Caenorhabditis elegans Embryos , 2003, Science.
[112] A. Ephrussi,et al. Par-1 regulates bicoid mRNA localisation by phosphorylating Exuperantia , 2004, Development.
[113] Marion Müller-Borg,et al. Direct association of Bazooka/PAR-3 with the lipid phosphatase PTEN reveals a link between the PAR/aPKC complex and phosphoinositide signaling , 2005, Development.
[114] E. Nishida,et al. XGAP, an ArfGAP, is required for polarized localization of PAR proteins and cell polarity in Xenopus gastrulation. , 2006, Developmental cell.
[115] I. Macara,et al. The polarity protein PAR-3 and TIAM1 cooperate in dendritic spine morphogenesis , 2006, Nature Cell Biology.
[116] A. Hall,et al. Integrin-Mediated Activation of Cdc42 Controls Cell Polarity in Migrating Astrocytes through PKCζ , 2001, Cell.
[117] J. P. Fawcett,et al. The Polarity Protein Par-3 Directly Interacts with p75NTR to Regulate Myelination , 2006, Science.
[118] Jun Hee Lee,et al. Energy-dependent regulation of cell structure by AMP-activated protein kinase , 2007, Nature.
[119] Douglas I. Johnson. Cdc42: An Essential Rho-Type GTPase Controlling Eukaryotic Cell Polarity , 1999, Microbiology and Molecular Biology Reviews.
[120] J. Borg,et al. Scrib Controls Cdc42 Localization and Activity to Promote Cell Polarization during Astrocyte Migration , 2006, Current Biology.
[121] K. Kaibuchi,et al. Role of the PAR-3–KIF3 complex in the establishment of neuronal polarity , 2004, Nature Cell Biology.
[122] A. Hyman,et al. Centrosomes direct cell polarity independently of microtubule assembly in C. elegans embryos , 2004, Nature.
[123] M. Peifer,et al. The positioning and segregation of apical cues during epithelial polarity establishment in Drosophila , 2005, The Journal of cell biology.
[124] M. Vidal,et al. MEX-3 interacting proteins link cell polarity to asymmetric gene expression in Caenorhabditis elegans. , 2002, Development.
[125] M. Poo,et al. LKB1/STRAD Promotes Axon Initiation During Neuronal Polarization , 2007, Cell.
[126] A. Hyman,et al. CDC-42 and RHO-1 coordinate acto-myosin contractility and PAR protein localization during polarity establishment in C. elegans embryos , 2006, Development.
[127] K. Kemphues,et al. PAR-6 is a conserved PDZ domain-containing protein that colocalizes with PAR-3 in Caenorhabditis elegans embryos. , 1999, Development.
[128] Richard Benton,et al. The Drosophila Homolog of C. elegans PAR-1 Organizes the Oocyte Cytoskeleton and Directs oskar mRNA Localization to the Posterior Pole , 2000, Cell.
[129] C. Doe,et al. Cdc42 acts downstream of Bazooka to regulate neuroblast polarity through Par-6–aPKC , 2007, Journal of Cell Science.
[130] C. Doe,et al. The NuMA-related Mud protein binds Pins and regulates spindle orientation in Drosophila neuroblasts , 2006, Nature Cell Biology.
[131] Markus Affolter,et al. Signaling to cytoskeletal dynamics during chemotaxis. , 2005, Developmental cell.
[132] G. Seydoux,et al. Exclusion of germ plasm proteins from somatic lineages by cullin-dependent degradation , 2003, Nature.
[133] W. Chia,et al. Apical Complex Genes Control Mitotic Spindle Geometry and Relative Size of Daughter Cells in Drosophila Neuroblast and pI Asymmetric Divisions , 2003, Cell.
[134] J. Engel,et al. Phosphatidylinositol-3,4,5-trisphosphate regulates the formation of the basolateral plasma membrane in epithelial cells , 2006, Nature Cell Biology.
[135] D. St Johnston,et al. LKB1 and AMPK maintain epithelial cell polarity under energetic stress , 2007, The Journal of cell biology.
[136] Tong Wang,et al. Dishevelled promotes axon differentiation by regulating atypical protein kinase C , 2007, Nature Cell Biology.
[137] Daniel St Johnston,et al. A role for Drosophila LKB1 in anterior–posterior axis formation and epithelial polarity , 2003, Nature.
[138] T. Raabe,et al. Drosophila Pins-binding protein Mud regulates spindle-polarity coupling and centrosome organization , 2006, Nature Cell Biology.