Expression and function of scalloped during Drosophila development.

PubWeight™: 0.77‹?›

🔗 View Article (PMC 3887039)

Published in Dev Dyn on June 03, 2013

Authors

Kirsten A Guss1, Michael Benson, Nicholas Gubitosi, Karrie Brondell, Kendal Broadie, James B Skeath

Author Affiliations

1: Department of Biology, Dickinson College, Carlisle, Pennsylvania 17013, USA. gussk@dickinson.edu

Articles cited by this

Systematic generation of high-resolution deletion coverage of the Drosophila melanogaster genome. Nat Genet (2004) 8.24

Characterization and spatial distribution of the ELAV protein during Drosophila melanogaster development. J Neurobiol (1991) 3.12

Integration of positional signals and regulation of wing formation and identity by Drosophila vestigial gene. Nature (1996) 2.74

Drosophila Futsch/22C10 is a MAP1B-like protein required for dendritic and axonal development. Neuron (2000) 2.70

Genes that control neuromuscular specificity in Drosophila. Cell (1993) 2.59

Eyeless initiates the expression of both sine oculis and eyes absent during Drosophila compound eye development. Development (1998) 2.56

Control of a genetic regulatory network by a selector gene. Science (2001) 2.17

The scalloped gene encodes a novel, evolutionarily conserved transcription factor required for sensory organ differentiation in Drosophila. Genes Dev (1992) 2.03

Pattern formation in a secondary field: a hierarchy of regulatory genes subdivides the developing Drosophila wing disc into discrete subregions. Development (1993) 2.02

The Vestigial and Scalloped proteins act together to directly regulate wing-specific gene expression in Drosophila. Genes Dev (1998) 1.99

Molecular interactions between Vestigial and Scalloped promote wing formation in Drosophila. Genes Dev (1998) 1.89

Control of Drosophila wing and haltere development by the nuclear vestigial gene product. Genes Dev (1991) 1.81

Insights into transcription enhancer factor 1 (TEF-1) activity from the solution structure of the TEA domain. Proc Natl Acad Sci U S A (2006) 1.79

The origin, location, and projections of the embryonic abdominal motorneurons of Drosophila. J Neurosci (1997) 1.75

Molecular mechanisms of selector gene function and evolution. Curr Opin Genet Dev (2002) 1.70

Cells with persistent twist expression are the embryonic precursors of adult muscles in Drosophila. Development (1991) 1.64

Charting the Drosophila neuropile: a strategy for the standardised characterisation of genetically amenable neurites. Dev Biol (2003) 1.49

Single-cell mapping of neural and glial gene expression in the developing Drosophila CNS midline cells. Dev Biol (2006) 1.40

Diploidy of Drosophila imaginal cells is maintained by a transcriptional repressor encoded by escargot. Genes Dev (1994) 1.33

Binding of the Vestigial co-factor switches the DNA-target selectivity of the Scalloped selector protein. Development (2001) 1.33

Cloning and characterization of the scalloped region of Drosophila melanogaster. Genetics (1991) 1.14

Growth cone behavior underlying the development of stereotypic synaptic connections in Drosophila embryos. J Neurosci (1991) 1.13

Conserved role of the Vsx genes supports a monophyletic origin for bilaterian visual systems. Curr Biol (2008) 1.11

Introduction on the use of the Drosophila embryonic/larval neuromuscular junction as a model system to study synapse development and function, and a brief summary of pathfinding and target recognition. Int Rev Neurobiol (2006) 1.10

Control of apterous by vestigial drives indirect flight muscle development in Drosophila. Dev Biol (2003) 1.01

Molecular and functional analysis of scalloped recessive lethal alleles in Drosophila melanogaster. Genetics (2004) 0.98

Activation of the knirps locus links patterning to morphogenesis of the second wing vein in Drosophila. Development (2003) 0.96

Yorkie and Scalloped: partners in growth activation. Dev Cell (2008) 0.93

Muscle founder cells regulate defasciculation and targeting of motor axons in the Drosophila embryo. Curr Biol (1999) 0.91

Vestigial expression in the Drosophila embryonic central nervous system. Dev Dyn (2008) 0.88

Alternative requirements for Vestigial, Scalloped, and Dmef2 during muscle differentiation in Drosophila melanogaster. Mol Biol Cell (2008) 0.88

In vivo analysis of lacZ fusion genes in transgenic Drosophila melanogaster. Methods Enzymol (2000) 0.87

The Role of the TEF Transcription Factors in Cardiogenesis and Other Developmental Processes. Trends Cardiovasc Med (1997) 0.86

Articles by these authors

Foxl1-Cre-marked adult hepatic progenitors have clonogenic and bilineage differentiation potential. Genes Dev (2011) 2.53

The hereditary spastic paraplegia gene, spastin, regulates microtubule stability to modulate synaptic structure and function. Curr Biol (2004) 2.06

Living synaptic vesicle marker: synaptotagmin-GFP. Genesis (2002) 1.99

The ubiquitin proteasome system acutely regulates presynaptic protein turnover and synaptic efficacy. Curr Biol (2003) 1.91

Spartin regulates synaptic growth and neuronal survival by inhibiting BMP-mediated microtubule stabilization. Neuron (2013) 1.83

Foxl1 is a marker of bipotential hepatic progenitor cells in mice. Hepatology (2009) 1.82

CNS-derived glia ensheath peripheral nerves and mediate motor root development. Nat Neurosci (2008) 1.73

Ajuba LIM proteins are negative regulators of the Hippo signaling pathway. Curr Biol (2010) 1.73

Motor deficit in a Drosophila model of mucolipidosis type IV due to defective clearance of apoptotic cells. Cell (2008) 1.69

The Drosophila fragile X gene negatively regulates neuronal elaboration and synaptic differentiation. Curr Biol (2004) 1.60

Wrestling with pleiotropy: genomic and topological analysis of the yeast gene expression network. Bioessays (2002) 1.58

Drosophila fragile X mental retardation protein developmentally regulates activity-dependent axon pruning. Development (2008) 1.52

Drosophila homeodomain protein dHb9 directs neuronal fate via crossrepressive and cell-nonautonomous mechanisms. Neuron (2002) 1.47

Numb inhibits membrane localization of Sanpodo, a four-pass transmembrane protein, to promote asymmetric divisions in Drosophila. Dev Cell (2003) 1.42

An essential Drosophila glutamate receptor subunit that functions in both central neuropil and neuromuscular junction. J Neurosci (2005) 1.36

Electrophysiological analysis of synaptic transmission in central neurons of Drosophila larvae. J Neurophysiol (2002) 1.33

pannier and pointedP2 act sequentially to regulate Drosophila heart development. Development (2003) 1.29

Developmental regulation of glutamate receptor field size by nonvesicular glutamate release. Nat Neurosci (2002) 1.26

Ceramidase regulates synaptic vesicle exocytosis and trafficking. J Neurosci (2004) 1.24

Lipid regulation of the synaptic vesicle cycle. Nat Rev Neurosci (2005) 1.22

Temporal requirements of the fragile X mental retardation protein in the regulation of synaptic structure. Development (2008) 1.21

Evaluation of Internet use by paediatric orthopaedic outpatients and the quality of information available. J Pediatr Orthop B (2005) 1.19

Roles of ubiquitination at the synapse. Biochim Biophys Acta (2008) 1.19

Genetic controls balancing excitatory and inhibitory synaptogenesis in neurodevelopmental disorder models. Front Synaptic Neurosci (2010) 1.18

Epsin potentiates Notch pathway activity in Drosophila and C. elegans. Development (2004) 1.16

Mechanistic relationships between Drosophila fragile X mental retardation protein and metabotropic glutamate receptor A signaling. Mol Cell Neurosci (2008) 1.15

Drosophila homeodomain protein Nkx6 coordinates motoneuron subtype identity and axonogenesis. Development (2004) 1.09

Cullin-3 regulates pattern formation, external sensory organ development and cell survival during Drosophila development. Mech Dev (2004) 1.08

Homeotic genes autonomously specify the anteroposterior subdivision of the Drosophila dorsal vessel into aorta and heart. Dev Biol (2002) 1.07

Presynaptic establishment of the synaptic cleft extracellular matrix is required for post-synaptic differentiation. Genes Dev (2007) 1.07

The Sox-domain containing gene Dichaete/fish-hook acts in concert with vnd and ind to regulate cell fate in the Drosophila neuroectoderm. Development (2002) 1.07

Synaptic Drosophila UNC-13 is regulated by antagonistic G-protein pathways via a proteasome-dependent degradation mechanism. J Neurobiol (2003) 1.05

Neuronal loss of Drosophila NPC1a causes cholesterol aggregation and age-progressive neurodegeneration. J Neurosci (2008) 1.04

Rolling blackout, a newly identified PIP2-DAG pathway lipase required for Drosophila phototransduction. Nat Neurosci (2004) 1.04

Fragile X mental retardation protein has a unique, evolutionarily conserved neuronal function not shared with FXR1P or FXR2P. Dis Model Mech (2010) 1.02

Cellular bases of activity-dependent paralysis in Drosophila stress-sensitive mutants. J Neurobiol (2004) 1.02

Protein expression profiling of the drosophila fragile X mutant brain reveals up-regulation of monoamine synthesis. Mol Cell Proteomics (2005) 1.02

Cellular bases of behavioral plasticity: establishing and modifying synaptic circuits in the Drosophila genetic system. J Neurobiol (2003) 1.01

The Drosophila metabotropic glutamate receptor DmGluRA regulates activity-dependent synaptic facilitation and fine synaptic morphology. J Neurosci (2004) 1.00

Molecular organization of Drosophila neuroendocrine cells by Dimmed. Curr Biol (2011) 1.00

Rolling blackout is required for synaptic vesicle exocytosis. J Neurosci (2006) 1.00

The Cdc42-selective GAP rich regulates postsynaptic development and retrograde BMP transsynaptic signaling. J Cell Biol (2010) 1.00

A targeted glycan-related gene screen reveals heparan sulfate proteoglycan sulfation regulates WNT and BMP trans-synaptic signaling. PLoS Genet (2012) 1.00

The fragile X mental retardation protein in circadian rhythmicity and memory consolidation. Mol Neurobiol (2009) 0.99

Foxl1 promotes liver repair following cholestatic injury in mice. Lab Invest (2009) 0.99

The Drosophila fragile X-related gene regulates axoneme differentiation during spermatogenesis. Dev Biol (2004) 0.98

Harvesting and preparing Drosophila embryos for electrophysiological recording and other procedures. J Vis Exp (2009) 0.97

Integrins regulate DLG/FAS2 via a CaM kinase II-dependent pathway to mediate synapse elaboration and stabilization during postembryonic development. Development (2002) 0.97

Presynaptic calcium channel localization and calcium-dependent synaptic vesicle exocytosis regulated by the Fuseless protein. J Neurosci (2008) 0.97

Loss of the spectraplakin short stop activates the DLK injury response pathway in Drosophila. J Neurosci (2013) 0.97

The ubiquitin-proteasome system postsynaptically regulates glutamatergic synaptic function. Mol Cell Neurosci (2007) 0.96

Fathoming fragile X in fruit flies. Trends Genet (2005) 0.96

Anterograde Jelly belly ligand to Alk receptor signaling at developing synapses is regulated by Mind the gap. Development (2010) 0.96

In vivo neuronal function of the fragile X mental retardation protein is regulated by phosphorylation. Hum Mol Genet (2011) 0.96

The Tribolium columnar genes reveal conservation and plasticity in neural precursor patterning along the embryonic dorsal-ventral axis. Dev Biol (2005) 0.96

Glycosylated synaptomatrix regulation of trans-synaptic signaling. Dev Neurobiol (2012) 0.95

Matrix metalloproteinases and minocycline: therapeutic avenues for fragile X syndrome. Neural Plast (2012) 0.94

Neural circuit architecture defects in a Drosophila model of Fragile X syndrome are alleviated by minocycline treatment and genetic removal of matrix metalloproteinase. Dis Model Mech (2011) 0.94

Drosophila sec10 is required for hormone secretion but not general exocytosis or neurotransmission. Traffic (2002) 0.94

Proteasome function is required to maintain muscle cellular architecture. Biol Cell (2007) 0.94

Sanpodo: a context-dependent activator and inhibitor of Notch signaling during asymmetric divisions. Development (2009) 0.94

Mutation and activation of Galpha s similarly alters pre- and postsynaptic mechanisms modulating neurotransmission. J Neurophysiol (2003) 0.93

Activity-dependent modulation of neural circuit synaptic connectivity. Front Mol Neurosci (2009) 0.93

Mutational analysis establishes a critical role for the N terminus of fragile X mental retardation protein FMRP. J Neurosci (2008) 0.93

miR-153 regulates SNAP-25, synaptic transmission, and neuronal development. PLoS One (2013) 0.92

The expression and function of the achaete-scute genes in Tribolium castaneum reveals conservation and variation in neural pattern formation and cell fate specification. Development (2003) 0.92

The nonsense-mediated decay pathway maintains synapse architecture and synaptic vesicle cycle efficacy. J Cell Sci (2010) 0.92

Three-dimensional models of proteases involved in patterning of the Drosophila Embryo. Crucial role of predicted cation binding sites. J Biol Chem (2002) 0.92

The identification and expression of achaete-scute genes in the branchiopod crustacean Triops longicaudatus. Gene Expr Patterns (2005) 0.91

Metabotropic glutamate receptor-mediated use-dependent down-regulation of synaptic excitability involves the fragile X mental retardation protein. J Neurophysiol (2008) 0.90

dbx mediates neuronal specification and differentiation through cross-repressive, lineage-specific interactions with eve and hb9. Development (2009) 0.90

Rolling blackout is required for bulk endocytosis in non-neuronal cells and neuronal synapses. J Cell Sci (2008) 0.89

The fragile X mental retardation protein developmentally regulates the strength and fidelity of calcium signaling in Drosophila mushroom body neurons. Neurobiol Dis (2010) 0.89

Temporal requirements of the fragile x mental retardation protein in modulating circadian clock circuit synaptic architecture. Front Neural Circuits (2009) 0.89

Vestigial expression in the Drosophila embryonic central nervous system. Dev Dyn (2008) 0.88

Linking pattern formation to cell-type specification: Dichaete and Ind directly repress achaete gene expression in the Drosophila CNS. Proc Natl Acad Sci U S A (2007) 0.87

Acetabular cartilage assessment in patients with femoroacetabular impingement by using T2* mapping with arthroscopic verification. Radiology (2014) 0.87

Histological confirmation and biological significance of cartilage canals demonstrated using high field MRI in swine at predilection sites of osteochondrosis. J Orthop Res (2013) 0.86

Presynaptic secretion of mind-the-gap organizes the synaptic extracellular matrix-integrin interface and postsynaptic environments. Dev Dyn (2009) 0.86

The Drosophila RCC1 homolog, Bj1, regulates nucleocytoplasmic transport and neural differentiation during Drosophila development. Dev Biol (2004) 0.86

Genetic control of dorsoventral patterning and neuroblast specification in the Drosophila Central Nervous System. Int J Dev Biol (2007) 0.85

Susceptibility weighted imaging of cartilage canals in porcine epiphyseal growth cartilage ex vivo and in vivo. Magn Reson Med (2013) 0.85

Fragile X mental retardation protein regulates trans-synaptic signaling in Drosophila. Dis Model Mech (2013) 0.84

Jelly Belly trans-synaptic signaling to anaplastic lymphoma kinase regulates neurotransmission strength and synapse architecture. Dev Neurobiol (2012) 0.84

Drosophila modeling of heritable neurodevelopmental disorders. Curr Opin Neurobiol (2011) 0.84

Fragile X mental retardation protein is required for programmed cell death and clearance of developmentally-transient peptidergic neurons. Dev Biol (2011) 0.83

Molecular and genetic analysis of the Drosophila model of fragile X syndrome. Results Probl Cell Differ (2012) 0.83

Structure-function analysis of endogenous lectin mind-the-gap in synaptogenesis. Dev Neurobiol (2012) 0.83

In vivo assay of presynaptic microtubule cytoskeleton dynamics in Drosophila. J Neurosci Methods (2007) 0.82

N-glycosylation requirements in neuromuscular synaptogenesis. Development (2013) 0.82

The cell polarity scaffold Lethal Giant Larvae regulates synapse morphology and function. J Cell Sci (2013) 0.81

Transcription factor expression uniquely identifies most postembryonic neuronal lineages in the Drosophila thoracic central nervous system. Development (2014) 0.81

Two peptide transmitters co-packaged in a single neurosecretory vesicle. Peptides (2008) 0.81

Electrophysiological recording in the Drosophila embryo. J Vis Exp (2009) 0.80

Techniques to dissect cellular and subcellular function in the Drosophila nervous system. Methods Cell Biol (2003) 0.80

Response: meaningless minis? Trends Neurosci (2002) 0.79

Drosophila rolling blackout displays lipase domain-dependent and -independent endocytic functions downstream of dynamin. Traffic (2010) 0.77

Corrigendum: Rapid generation of hypomorphic mutations. Nat Commun (2017) 0.75