scholarly article | Q13442814 |
P50 | author | Kunihiro Tsuchida | Q58865010 |
Tadahiro Nagaoka | Q42407064 | ||
P2093 | author name string | Toshihisa Ohtsuka | |
Mikio Furuse | |||
Masashi Kishi | |||
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Heteromultimerization and NMDA receptor-clustering activity of Chapsyn-110, a member of the PSD-95 family of proteins | Q24315676 | ||
Regulation of planar cell polarity by Smurf ubiquitin ligases | Q24317525 | ||
Characterization of NEDD8, a developmentally down-regulated ubiquitin-like protein | Q24322977 | ||
Identification and characterization of novel rare mutations in the planar cell polarity gene PRICKLE1 in human neural tube defects | Q24337438 | ||
The balance between isoforms of the prickle LIM domain protein is critical for planar polarity in Drosophila imaginal discs | Q24599652 | ||
A neuroligin-3 mutation implicated in autism increases inhibitory synaptic transmission in mice | Q24629938 | ||
Comparison of phenotypes between different vangl2 mutants demonstrates dominant effects of the Looptail mutation during hair cell development | Q27308779 | ||
Inhibition of proteolysis and cell cycle progression in a multiubiquitination-deficient yeast mutant | Q27939929 | ||
Flamingo, a seven-pass transmembrane cadherin, regulates planar cell polarity under the control of Frizzled | Q28144517 | ||
Strabismus is asymmetrically localised and binds to Prickle and Dishevelled during Drosophila planar polarity patterning | Q28205096 | ||
Binding of neuroligins to PSD-95 | Q28247782 | ||
Strabismus, a novel gene that regulates tissue polarity and cell fate decisions in Drosophila | Q28261625 | ||
Domain interaction between NMDA receptor subunits and the postsynaptic density protein PSD-95 | Q28290055 | ||
Expression of planar cell polarity genes during development of the mouse CNS | Q28298030 | ||
Vangl2, the planar cell polarity protein, is complexed with postsynaptic density protein PSD-95 [corrected] | Q28511978 | ||
Molecular and cellular mechanisms underlying neural tube defects in the loop-tail mutant mouse. | Q52703601 | ||
The Wnt/planar cell polarity pathway component Vangl2 induces synapse formation through direct control of N-cadherin. | Q52766875 | ||
Proteasome inhibitors in cancer therapy. | Q53752929 | ||
A small-molecule inhibitor of SOD1-Derlin-1 interaction ameliorates pathology in an ALS mouse model. | Q55638363 | ||
An inhibitor of NEDD8-activating enzyme as a new approach to treat cancer | Q29616732 | ||
Dishevelled is a component of the frizzled signaling pathway in Drosophila | Q30468078 | ||
Disruption of the non-canonical Wnt gene PRICKLE2 leads to autism-like behaviors with evidence for hippocampal synaptic dysfunction | Q30586961 | ||
IkappaBalpha ubiquitination is catalyzed by an SCF-like complex containing Skp1, cullin-1, and two F-box/WD40-repeat proteins, betaTrCP1 and betaTrCP2. | Q30653145 | ||
The planar cell polarity protein Vangl2 bidirectionally regulates dendritic branching in cultured hippocampal neurons | Q34528136 | ||
Mutations in prickle orthologs cause seizures in flies, mice, and humans | Q34560912 | ||
Strabismus promotes recruitment and degradation of farnesylated prickle in Drosophila melanogaster planar polarity specification | Q34846066 | ||
Controlled expression of transgenes introduced by in vivo electroporation | Q35574098 | ||
Clustering and negative feedback by endocytosis in planar cell polarity signaling is modulated by ubiquitinylation of prickle | Q35638236 | ||
PDZ interaction of Vangl2 links PSD-95 and Prickle2 but plays only a limited role in the synaptic localisation of Vangl2 | Q35932888 | ||
Prickle and Strabismus form a functional complex to generate a correct axis during planar cell polarity signaling | Q36065784 | ||
Wnt-Frizzled/planar cell polarity signaling: cellular orientation by facing the wind (Wnt) | Q36358270 | ||
A Cul-3-BTB ubiquitylation pathway regulates junctional levels and asymmetry of core planar polarity proteins | Q36752946 | ||
Inhibitors of V-ATPases: old and new players | Q37371395 | ||
Planar cell polarity signaling: the developing cell's compass. | Q37412656 | ||
Conservation of Planar Polarity Pathway Function Across the Animal Kingdom | Q38584855 | ||
Protein prenylation: unique fats make their mark on biology | Q38704283 | ||
Planar cell polarity in development and disease | Q39178445 | ||
Prickle2 is localized in the postsynaptic density and interacts with PSD-95 and NMDA receptors in the brain | Q39591473 | ||
Loss of membrane targeting of Vangl proteins causes neural tube defects | Q39622472 | ||
Identification of substrates for F-box proteins | Q40341917 | ||
Lysine 63 polyubiquitination of the nerve growth factor receptor TrkA directs internalization and signaling | Q40358414 | ||
Ltap, a mammalian homolog of Drosophila Strabismus/Van Gogh, is altered in the mouse neural tube mutant Loop-tail | Q42653433 | ||
Vangl2 regulates E-cadherin in epithelial cells. | Q42977383 | ||
Identification of a new chemically induced allele (Lp(m1Jus)) at the loop-tail locus: morphology, histology, and genetic mapping. | Q43636512 | ||
Continual remodeling of postsynaptic density and its regulation by synaptic activity | Q48128407 | ||
The planar cell polarity protein Vangl2 is involved in postsynaptic compartmentalization | Q49128284 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P4510 | describes a project that uses | ImageJ | Q1659584 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 2912 | |
P577 | publication date | 2019-02-27 | |
P1433 | published in | Scientific Reports | Q2261792 |
P1476 | title | Vangl2 interaction plays a role in the proteasomal degradation of Prickle2 | |
P478 | volume | 9 |