A Database of Drosophila Genes & Genomes

FB2008_06, released July 3, 2008
 

Dmel\P{en2.4-GAL4}e16E Insertion

General Information
Symbol Dmel\P{en2.4-GAL4}e16E Species D. melanogaster
Name FlyBase ID FBti0003572
Feature type transposable_element_insertion_site Created / Updated 1997-10-08/1997-10-08
Description
Inserted element P{en2.4-GAL4} Localized function
Affected gene(s) Expression data GAL4 reporter/driver
Causes allele(s) Viability / fertility
LINE ID Stock availability
Genomic Location
Chromosomal location Sequence location
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Chromosome (arm)
Sequence Location
Orientation
Cytological location
(computed by FlyBase)
Cytological location
(reported)
Chromosome in situ
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Flanking sequence
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Construct P{en2.4-GAL4}
Location-dependent
role
 
Size
Associated alleles
Molecular map
Transposon class
Element type
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Insertion within gene
Insertion may
affect gene
Orientation
(relative to gene)
Gene
Orientation
References
 
 
 
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Causes alleles
Lethality
References
Sterility
References
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Statement
Reference
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Reporter Expression
Stage
Tissue/Position
Reference
embryonic stage | stage 11
larval stage | third instar
larval stage | third instar
larval stage | third instar
dorsal mesothoracic disc | restricted
larval stage | third instar
larval stage | third instar
larval stage | third instar
imaginal disc
larval stage | third instar
larval stage | third instar
larval stage | third instar
imaginal disc
Additional Information
Statement
Reference
Expression is that of native *en*.
Exhibits en expression pattern.
Assay mode
Marker for
Reflects
expression of
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Line ID
Origin as a multiple insertion line
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Aberration
Balancer
hide Stocks ( 2 )
Bloomington
Kyoto
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hide Synonyms & Secondary IDs
Reported As
Symbol Synonym
(en)-GAL4
(en)-Gal4
e16E-GAL4
e16E-Gal4
enGal4
en > Gal4
en > GAL4
en-Gal4 (e116e)
en-GAL4e16E
Eng-Gal4
eng-GAL4
engrailed-
Engrailed.GAL4
engrailed.GAL4
engrailed (en)-Gal4
Engrailed-GAL4
engrailedGal4
engrailed Gal4
gal4-en
P[en-GAL4]
P[eng-GAL4]
P[Engrailed-GAL4]
p[w+,enGAL4]
P{GAL4-en.YP}
Secondary FlyBase IDs
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    hide Recent research papers ( 52 )
    Liu et al., 2008, Development 135(1): 53--63
    Sisyphus, the Drosophila myosin XV homolog, traffics within filopodia transporting key sensory and adhesion cargos. [FBrf0200619]
    Crickmore and Mann, 2007, Development 134(2): 327--334
    Hox control of morphogen mobility and organ development through regulation of glypican expression. [FBrf0194329]
    Gregory et al., 2007, Fly 1(1): 13--22
    A Drosophila Overexpression Screen for Modifiers of Rho Signalling in Cytokinesis. [FBrf0199094]
    Huh et al., 2007, J. Biol. Chem. 282(3): 2056--2068
    The Drosophila inhibitor of apoptosis (IAP) DIAP2 is dispensable for cell survival, required for the innate immune response to gram-negative bacterial infection, and can be negatively regulated by the reaper/hid/grim family of IAP-binding apoptosis inducers. [FBrf0192423]
    Li and Baker, 2007, Cell 129(6): 1215--1225
    Engulfment is required for cell competition. [FBrf0201270]
    Ramel, 2007, Mech. Dev. 124(4): 304--317
    Drosophila SnoN modulates growth and patterning by antagonizing TGF-beta signalling. [FBrf0199308]
    Sasamura et al., 2007, Development 134(7): 1347--1356
    The O-fucosyltransferase O-fut1 is an extracellular component that is essential for the constitutive endocytic trafficking of Notch in Drosophila. [FBrf0191989]
    Subramanian et al., 2007, Development 134(7): 1269--1278
    Thrombospondin-mediated adhesion is essential for the formation of the myotendinous junction in Drosophila. [FBrf0194658]
    Sugiyama et al., 2007, Genetics 176(2): 927--936
    Involvement of the mitochondrial protein translocator component Tim50 in growth, cell proliferation and the modulation of respiration in Drosophila. [FBrf0200675]
    Swan and Schupbach, 2007, Development 134(5): 891--899
    The Cdc20 (Fzy)/Cdh1-related protein, Cort, cooperates with Fzy in cyclin destruction and anaphase progression in meiosis I and II in Drosophila. [FBrf0194687]
    Volohonsky et al., 2007, Development 134(2): 347--356
    Muscle-dependent maturation of tendon cells is induced by post-transcriptional regulation of stripeA. [FBrf0192282]
    Baena-Lopez and Garcia-Bellido, 2006, Proc. Natl. Acad. Sci. USA 103(37): 13734--13739
    Control of growth and positional information by the graded vestigial expression pattern in the wing of Drosophila melanogaster. [FBrf0193315]
    Bossing and Brand, 2006, Development 133(6): 1001--1012
    Determination of cell fate along the anteroposterior axis of the Drosophila ventral midline. [FBrf0190277]
    Buescher et al., 2006, Dev. Biol. 292(2): 418--429
    Functions of the segment polarity genes midline and H15 in Drosophila melanogaster neurogenesis. [FBrf0190096]
    Culi et al., 2006, Genetics 173(1): 255--266
    jing is required for wing development and to establish the proximo-distal axis of the leg in Drosophila melanogaster. [FBrf0194382]
    de Navas et al., 2006, Development 133(22): 4495--4506
    The Ultrabithorax Hox gene of Drosophila controls haltere size by regulating the Dpp pathway. [FBrf0194425]
    Fang et al., 2006, EMBO J. 25(11): 2735--2745
    C-terminal-binding protein directly activates and represses Wnt transcriptional targets in Drosophila. [FBrf0192637]
    Gallet et al., 2006, Development 133(3): 407--418
    Cholesterol modification is necessary for controlled planar long-range activity of Hedgehog in Drosophila epithelia. [FBrf0190290]
    Goda et al., 2006, J. Biol. Chem. 281(39): 28508--28517
    Identification and characterization of a novel Drosophila 3'-phosphoadenosine 5'-phosphosulfate transporter. [FBrf0193270]
    Grosskortenhaus et al., 2006, Genes Dev. 20(18): 2618--2627
    Pdm and Castor specify late-born motor neuron identity in the NB7-1 lineage. [FBrf0193400]
    Herranz et al., 2006, Development 133(14): 2617--2625
    calderon encodes an organic cation transporter of the major facilitator superfamily required for cell growth and proliferation of Drosophila tissues. [FBrf0194487]
    Hufnagel et al., 2006, Dev. Biol. 300(2): 512--522
    On the role of glypicans in the process of morphogen gradient formation. [FBrf0195028]
    Hughes and Fehon, 2006, J. Cell Biol. 175(2): 305--313
    Phosphorylation and activity of the tumor suppressor Merlin and the ERM protein Moesin are coordinately regulated by the Slik kinase. [FBrf0193095]
    Hyun et al., 2006, Molec. Cell. Biol. 26(22): 8293--8302
    Control of G2/M transition by Drosophila Fos. [FBrf0195157]
    Jacobsen et al., 2006, Genetics 174(4): 1973--1982
    Functional analysis of genes differentially expressed in the Drosophila wing disc: role of transcripts enriched in the wing region. [FBrf0194659]
    Jiang and Crews, 2006, Molec. Cell. Biol. 26(17): 6547--6556
    Dysfusion transcriptional control of Drosophila tracheal migration, adhesion, and fusion. [FBrf0193980]
    Jones et al., 2006, Genetics 173(2): 793--808
    Characterization of Drosophila mini-me, a gene required for cell proliferation and survival. [FBrf0193720]
    Kim et al., 2006, EMBO J. 25(13): 3056--3067
    Inhibition of ERK-MAP kinase signaling by RSK during Drosophila development. [FBrf0194603]
    Kirkpatrick et al., 2006, Dev. Biol. 300(2): 570--582
    The function of a Drosophila glypican does not depend entirely on heparan sulfate modification. [FBrf0194660]
    Koppen et al., 2006, Development 133(14): 2671--2681
    Coordinated cell-shape changes control epithelial movement in zebrafish and Drosophila. [FBrf0193431]
    Kuranaga et al., 2006, Cell 126(3): 583--596
    Drosophila IKK-related kinase regulates nonapoptotic function of caspases, via degradation of IAPs. [FBrf0194448]
    Larsen et al., 2006, Proc. Natl. Acad. Sci. USA 103(47): 17813--17817
    An efficient promoter trap for detection of patterned gene expression and subsequent functional analysis in Drosophila. [FBrf0192951]
    Lu et al., 2006, Genes Dev. 20(18): 2539--2551
    The C-terminal tail of the Hedgehog receptor Patched regulates both localization and turnover. [FBrf0192645]
    Marenda et al., 2006, Development 133(1): 43--51
    MAP kinase subcellular localization controls both pattern and proliferation in the developing Drosophila wing. [FBrf0190305]
    Marois et al., 2006, Development 133(2): 307--317
    The endocytic pathway and formation of the Wingless morphogen gradient. [FBrf0190306]
    Martin and Morata, 2006, Development 133(22): 4421--4426
    Compartments and the control of growth in the Drosophila wing imaginal disc. [FBrf0192260]
    Martinez et al., 2006, Genes Dev. 20(4): 501--513
    Polycomb group-dependent Cyclin A repression in Drosophila. [FBrf0190550]
    Matakatsu and Blair, 2006, Development 133(12): 2315--2324
    Separating the adhesive and signaling functions of the Fat and Dachsous protocadherins. [FBrf0194700]
    Mettler et al., 2006, Development 133(3): 429--437
    Timing of identity: spatiotemporal regulation of hunchback in neuroblast lineages of Drosophila by Seven-up and Prospero. [FBrf0190310]
    Muro et al., 2006, Development 133(17): 3305--3315
    The Drosophila caspase Ice is important for many apoptotic cell deaths and for spermatid individualization, a nonapoptotic process. [FBrf0192459]
    Nolo et al., 2006, Curr. Biol. 16(19): 1895--1904
    The bantam microRNA is a target of the hippo tumor-suppressor pathway. [FBrf0194704]
    Rives et al., 2006, Dev. Biol. 293(1): 268--283
    Endocytic trafficking of Wingless and its receptors, Arrow and DFrizzled-2, in the Drosophila wing. [FBrf0190155]
    Speder et al., 2006, Nature 440(7085): 803--807
    Type ID unconventional myosin controls left-right asymmetry in Drosophila. [FBrf0191256]
    Takeo et al., 2006, Curr. Biol. 16(14): 1435--1440
    The calcineurin regulator Sra plays an essential role in female meiosis in Drosophila. [FBrf0194458]
    Teleman and Cohen, 2006, Genes Dev. 20(4): 417--422
    Drosophila lacking microRNA miR-278 are defective in energy homeostasis. [FBrf0190566]
    Thompson and Cohen, 2006, Cell 126(4): 767--774
    The hippo pathway regulates the bantam microRNA to control cell proliferation and apoptosis in Drosophila. [FBrf0193861]
    Uhlirova and Bohmann, 2006, EMBO J. 25(22): 5294--5304
    JNK- and Fos-regulated Mmp1 expression cooperates with Ras to induce invasive tumors in Drosophila. [FBrf0194142]
    Venkei et al., 2006, J. Cell Sci. 119(15): 3238--3248
    alpha 4-tubulin is involved in rapid formation of long microtubules to push apart the daughter centrosomes during early Drosophila embryogenesis. [FBrf0192391]
    Walker et al., 2006, Genes Dev. 20(23): 3311--3323
    Reduced growth of Drosophila neurofibromatosis 1 mutants reflects a non-cell-autonomous requirement for GTPase-Activating Protein activity in larval neurons. [FBrf0193208]
    Walters et al., 2006, Dev. Biol. 297(2): 323--339
    Planar polarization of the denticle field in the Drosophila embryo: roles for Myosin II (Zipper) and Fringe. [FBrf0200191]
    Wells et al., 2006, Curr. Biol. 16(16): 1606--1615
    Compensatory proliferation in Drosophila imaginal discs requires Dronc-dependent p53 activity. [FBrf0192041]
    Wichmann et al., 2006, Proc. Natl. Acad. Sci. USA 103(26): 9952--9957
    Ionizing radiation induces caspase-dependent but Chk2- and p53-independent cell death in Drosophila melanogaster. [FBrf0194209]
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