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fas2  (Developmental Studies Hybridoma Bank)


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    Structured Review

    Developmental Studies Hybridoma Bank fas2
    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II <t>(Fas2,</t> magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
    Fas2, supplied by Developmental Studies Hybridoma Bank, used in various techniques. Bioz Stars score: 96/100, based on 471 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/anti+fas2/anti-fasciclin+II/pmc12948353-209-41-43
    Average 96 stars, based on 471 article reviews
    fas2 - by Bioz Stars, 2026-10
    96/100 stars

    Images

    1) Product Images from "Genetic network shaping Kenyon cell identity and function in Drosophila mushroom bodies"

    Article Title: Genetic network shaping Kenyon cell identity and function in Drosophila mushroom bodies

    Journal: eLife

    doi: 10.7554/eLife.108173

    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II (Fas2, magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
    Figure Legend Snippet: ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II (Fas2, magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.

    Techniques Used: Expressing, Staining, Generated

    ( A, B ) Overexpression of E93 driven by GAL4-OK107 caused precocious expression of α/β-specific Ca-α1T-GFSTF in early-born KCs at the wandering larval (WL) stage. ( C, D ) In addition, overexpression of E93 driven by a γ-neural driver, GAL4-201Y (magenta), ectopically turned on the expression of a α/β-specific 70F05-LexA driver in a portion of γ neurons (visualized by myr-GFP in green; arrow). On the other hand, overexpression of E93 abolished γ-specific markers, including Ab-GFP ( E, F ), Mamo H/I ( G, H ), Mamo D~G (weak green signal; I, J ) and EcR-B1 ( E–J ), and α′/β′-specific Mamo D~G (strong green signal within yellow dashed-line; I, J ) in the early-born KCs at the white pupal (WP) stage. ( K, L ) E93 overexpression also compromised the Lac-FSVS expression in α′/β′ neurons and the morphology of mushroom body (MB) lobes revealed by cell adhesion molecule Fasciclin II (Fas2, strong magenta for labeling α and β lobes) at 24 hr after puparium formation (APF). An enhance-promoter (EP) line inserted at the proximal region of the E93-A 5′UTR was used to overexpress E93 in the gain-of-function experiments. The potency of the E93(EP) line was similar to two other in-house transgenic lines expressing E93-A and E93-B isoforms (see ). Scale bar: 10 µm.
    Figure Legend Snippet: ( A, B ) Overexpression of E93 driven by GAL4-OK107 caused precocious expression of α/β-specific Ca-α1T-GFSTF in early-born KCs at the wandering larval (WL) stage. ( C, D ) In addition, overexpression of E93 driven by a γ-neural driver, GAL4-201Y (magenta), ectopically turned on the expression of a α/β-specific 70F05-LexA driver in a portion of γ neurons (visualized by myr-GFP in green; arrow). On the other hand, overexpression of E93 abolished γ-specific markers, including Ab-GFP ( E, F ), Mamo H/I ( G, H ), Mamo D~G (weak green signal; I, J ) and EcR-B1 ( E–J ), and α′/β′-specific Mamo D~G (strong green signal within yellow dashed-line; I, J ) in the early-born KCs at the white pupal (WP) stage. ( K, L ) E93 overexpression also compromised the Lac-FSVS expression in α′/β′ neurons and the morphology of mushroom body (MB) lobes revealed by cell adhesion molecule Fasciclin II (Fas2, strong magenta for labeling α and β lobes) at 24 hr after puparium formation (APF). An enhance-promoter (EP) line inserted at the proximal region of the E93-A 5′UTR was used to overexpress E93 in the gain-of-function experiments. The potency of the E93(EP) line was similar to two other in-house transgenic lines expressing E93-A and E93-B isoforms (see ). Scale bar: 10 µm.

    Techniques Used: Over Expression, Expressing, Labeling, Transgenic Assay

    Related Articles

    Expressing:

    Article Title: KDM5-mediated transcriptional activation of ribosomal protein genes alters translation efficiency to regulate mitochondrial metabolism in neurons.
    Article Snippet: .. A tet-inducible expression ystem was introduced, and lentivirus particles prepared rom the plasmid vectors; pLV_TRET_hNgn2_UBC_Puro RRID:A ddgene_61474) and FUdeltaGW -rtT A ( RRID: ddgene_19780), followed by treatment with doxycycline nd selection with puromycin. ntibodies he following primary antibodies were used: Anti-Fas2 1:25, Developmental Studies Hybridoma Bank (DSHB) at# 1D4 anti-Fasciclin II, RRID:AB _ 528235 ), Anti-HA 1:1000, Cell Signaling Technology cat# 3724, RRID: B _ 1549585 ), anti-H3 (1:20000, Active Motif Cat# 39763, RID:AB _ 2650522 ), anti-H3K4me3 (Cell Signaling Techology Cat# 9751, RRID:AB _ 2616028 ), Anti-FLAG (Sigmaldrich Cat# F1804, RRID:AB _ 262044 ), Anti-vGLUT2 (1:200; Millipore #mab5504) Anti-TUJ (1:500; Genescript #A01627), Anti-Cyclophilin B (Thermofisher #PA1-027A), anti-DAC (1:50; DSHB cat# mAbdac2-2; RRID:AB _ 528190 ). ..

    Plasmid Preparation:

    Article Title: KDM5-mediated transcriptional activation of ribosomal protein genes alters translation efficiency to regulate mitochondrial metabolism in neurons.
    Article Snippet: .. A tet-inducible expression ystem was introduced, and lentivirus particles prepared rom the plasmid vectors; pLV_TRET_hNgn2_UBC_Puro RRID:A ddgene_61474) and FUdeltaGW -rtT A ( RRID: ddgene_19780), followed by treatment with doxycycline nd selection with puromycin. ntibodies he following primary antibodies were used: Anti-Fas2 1:25, Developmental Studies Hybridoma Bank (DSHB) at# 1D4 anti-Fasciclin II, RRID:AB _ 528235 ), Anti-HA 1:1000, Cell Signaling Technology cat# 3724, RRID: B _ 1549585 ), anti-H3 (1:20000, Active Motif Cat# 39763, RID:AB _ 2650522 ), anti-H3K4me3 (Cell Signaling Techology Cat# 9751, RRID:AB _ 2616028 ), Anti-FLAG (Sigmaldrich Cat# F1804, RRID:AB _ 262044 ), Anti-vGLUT2 (1:200; Millipore #mab5504) Anti-TUJ (1:500; Genescript #A01627), Anti-Cyclophilin B (Thermofisher #PA1-027A), anti-DAC (1:50; DSHB cat# mAbdac2-2; RRID:AB _ 528190 ). ..

    Selection:

    Article Title: KDM5-mediated transcriptional activation of ribosomal protein genes alters translation efficiency to regulate mitochondrial metabolism in neurons.
    Article Snippet: .. A tet-inducible expression ystem was introduced, and lentivirus particles prepared rom the plasmid vectors; pLV_TRET_hNgn2_UBC_Puro RRID:A ddgene_61474) and FUdeltaGW -rtT A ( RRID: ddgene_19780), followed by treatment with doxycycline nd selection with puromycin. ntibodies he following primary antibodies were used: Anti-Fas2 1:25, Developmental Studies Hybridoma Bank (DSHB) at# 1D4 anti-Fasciclin II, RRID:AB _ 528235 ), Anti-HA 1:1000, Cell Signaling Technology cat# 3724, RRID: B _ 1549585 ), anti-H3 (1:20000, Active Motif Cat# 39763, RID:AB _ 2650522 ), anti-H3K4me3 (Cell Signaling Techology Cat# 9751, RRID:AB _ 2616028 ), Anti-FLAG (Sigmaldrich Cat# F1804, RRID:AB _ 262044 ), Anti-vGLUT2 (1:200; Millipore #mab5504) Anti-TUJ (1:500; Genescript #A01627), Anti-Cyclophilin B (Thermofisher #PA1-027A), anti-DAC (1:50; DSHB cat# mAbdac2-2; RRID:AB _ 528190 ). ..

    other:

    Article Title: Axonal chemokine-like Orion induces astrocyte infiltration and engulfment during mushroom body neuronal remodeling
    Article Snippet: This is not relevant to our study because samples were not allocated to groups. anti-Fas2 (1D4; 1:10; Developmental Studies Hybridoma Bank; University of Iowa, Iowa, IA, USA).

    Article Title: KDM5-mediated transcriptional activation of ribosomal protein genes alters translation efficiency to regulate mitochondrial metabolism in neurons
    Article Snippet: The following primary antibodies were used: Anti-Fas2 (1:25, Developmental Studies Hybridoma Bank (DSHB) cat# 1D4 anti-Fasciclin II, RRID:AB_528235 ), Anti-HA (1:1000, Cell Signaling Technology cat# 3724, RRID:AB_1549585 ), anti-H3 (1:20000, Active Motif Cat# 39763, RRID:AB_2650522 ), anti-H3K4me3 (Cell Signaling Technology Cat# 9751, RRID:AB_2616028 ), Anti-FLAG (Sigma-Aldrich Cat# F1804, RRID:AB_262044 ), Anti-vGLUT2 (1:200; Millipore #mab5504) Anti-TUJ (1:500; Genescript #A01627), Anti-Cyclophilin B (Thermofisher #PA1-027A), anti-DAC (1:50; DSHB cat# mAbdac2-2; RRID:AB_528190 ).

    Article Title: Ankyrin2 is essential for neuronal morphogenesis and long-term courtship memory in Drosophila
    Article Snippet: Brains were post-fixed in PFAT/DMSO for 20 min and blocked in immunobuffer (5% normal goat serum in 1X PBST) for three hours prior to incubation with rabbit anti-Ank2-L (1:1000, gift from H. Aberle) [ ], rabbit anti-GFP (Abcam, ab290, 1:20,000, Antibody Registry Identifier AB_303395), mouse anti-GFP (Sigma Aldrich, 11,814,460,001, 1:200, Antibody Registry Identifier AB_390913), mouse anti-Brp (DSHB, nc82, 1:100, Antibody Registry Identifier AB_2314866), mouse anti-Futsch (DSHB, 22C10,1:20, Antibody Registry Identifier AB_528403), mouse anti-Repo (DSHB, 8D12, 1:20, Antibody Registry Identifier AB_528448) and mouse anti-Fasciclin II (DSHB, Fas 2, 1D4, 1:20, Antibody Registry Identifier AB_528235).

    Article Title: Synchronous multi-segmental activity between metachronal waves controls locomotion speed in Drosophila larvae
    Article Snippet: Antibody , Anti-Fas2 (mouse, monoclonal) , Developmental Studies Hybridoma Bank , 1D4 , 1:10.

    Immunohistochemistry:

    Article Title: Trithorax regulates long-term memory in Drosophila through epigenetic maintenance of mushroom body metabolic identity and translation capacity
    Article Snippet: .. For immunohistochemistry, fixed brains were blocked in 5% NGS then incubated overnight with the primary antibodies anti-GFP (1:100, Invitrogen: G10362), anti-Fas2 [1:25, Developmental Studies Hybridoma Bank (DSHB): #1D4], or anti-dac (1:100, DSHB: mAbdac2-3), and secondary anti-bodies AlexaFluor 488 or 594 (1:300, Invitrogen: A1108 & A1105). .. Brains were then mounted in SlowFade Antifade (Invitrogen: S36972) or VectaShield (VectorLabs: H-1900) before imagining.

    Next-Generation Sequencing:

    Article Title: Trithorax regulates long-term memory in Drosophila through epigenetic maintenance of mushroom body metabolic identity and translation capacity
    Article Snippet: .. For immunohistochemistry, fixed brains were blocked in 5% NGS then incubated overnight with the primary antibodies anti-GFP (1:100, Invitrogen: G10362), anti-Fas2 [1:25, Developmental Studies Hybridoma Bank (DSHB): #1D4], or anti-dac (1:100, DSHB: mAbdac2-3), and secondary anti-bodies AlexaFluor 488 or 594 (1:300, Invitrogen: A1108 & A1105). .. Brains were then mounted in SlowFade Antifade (Invitrogen: S36972) or VectaShield (VectorLabs: H-1900) before imagining.

    Incubation:

    Article Title: Trithorax regulates long-term memory in Drosophila through epigenetic maintenance of mushroom body metabolic identity and translation capacity
    Article Snippet: .. For immunohistochemistry, fixed brains were blocked in 5% NGS then incubated overnight with the primary antibodies anti-GFP (1:100, Invitrogen: G10362), anti-Fas2 [1:25, Developmental Studies Hybridoma Bank (DSHB): #1D4], or anti-dac (1:100, DSHB: mAbdac2-3), and secondary anti-bodies AlexaFluor 488 or 594 (1:300, Invitrogen: A1108 & A1105). .. Brains were then mounted in SlowFade Antifade (Invitrogen: S36972) or VectaShield (VectorLabs: H-1900) before imagining.

    Affinity Purification:

    Article Title: WNT5 Interacts with the Ryk Receptors Doughnut and Derailed to Mediate Muscle Attachment Site Selection in Drosophila melanogaster
    Article Snippet: .. The following primary antibodies were used on formaldehyde-fixed embryos or third instar larval body walls: anti-Muscle-Myosin mAb (Invitrogen), anti-FAS2 (1D4, Developmental Studies Hybridoma Bank (DSHB)), anti-βPS Integrin (CF.6G11; DSHB), guinea pig anti-SR (gift from T. Volk; ), rabbit-anti-GFP (Upstate), anti-Sex-Lethal ( ; DSHB), rabbit anti-MYC (Upstate) and affinity-purified rabbit anti-WNT5 . .. Secondary antibodies used were: HRP-conjugated goat anti-mouse or anti-rabbit (Jackson Laboratories) and AlexaFluor-488-conjugated and AlexaFluor-568-conjugated goat anti-mouse and goat anti-rabbit, respectively (Invitrogen).



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    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II <t>(Fas2,</t> magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
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    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II <t>(Fas2,</t> magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
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    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II <t>(Fas2,</t> magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
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    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II <t>(Fas2,</t> magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
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    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II <t>(Fas2,</t> magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
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    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II <t>(Fas2,</t> magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.
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    Image Search Results


    ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II (Fas2, magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.

    Journal: eLife

    Article Title: Genetic network shaping Kenyon cell identity and function in Drosophila mushroom bodies

    doi: 10.7554/eLife.108173

    Figure Lengend Snippet: ( A, B ) The expression of Lac-FSVS (green in panel A) and E93-GFSTF (green in panel B) was observed at 15 and 24 hr after puparium formation (APF), respectively. Lac-FSVS was expressed in α′/β′ neurons (arrowheads) according to counter-staining with cell adhesion molecule Fasciclin II (Fas2, magenta in panel A ), which primarily labels γ neurons (arrows) at 15 hr APF. E93-GFSTF (double-arrows) was seen in the region with the weak RFP expression driven by GAL4-OK107 (magenta in panel B ). This pattern implies that F93-GFSTF expression occurs in the newly generated KCs, which are most likely α/β neurons, at 24 hr APF. Scale bar: 10 µm.

    Article Snippet: Primary antibodies used in this study included guinea pig antibody against Chinmo (1:1000, Sokol laboratory ), rat monoclonal antibody against mCD8 (1:100, Thermo Fisher Scientific), rabbit antibody against GFP (1:750, Thermo Fisher Scientific), and mouse monoclonal antibodies against EcR-B1 (1:50, DSHB), Fas2 (1:100, DSHB) and Trio (1:50, DSHB).

    Techniques: Expressing, Staining, Generated

    ( A, B ) Overexpression of E93 driven by GAL4-OK107 caused precocious expression of α/β-specific Ca-α1T-GFSTF in early-born KCs at the wandering larval (WL) stage. ( C, D ) In addition, overexpression of E93 driven by a γ-neural driver, GAL4-201Y (magenta), ectopically turned on the expression of a α/β-specific 70F05-LexA driver in a portion of γ neurons (visualized by myr-GFP in green; arrow). On the other hand, overexpression of E93 abolished γ-specific markers, including Ab-GFP ( E, F ), Mamo H/I ( G, H ), Mamo D~G (weak green signal; I, J ) and EcR-B1 ( E–J ), and α′/β′-specific Mamo D~G (strong green signal within yellow dashed-line; I, J ) in the early-born KCs at the white pupal (WP) stage. ( K, L ) E93 overexpression also compromised the Lac-FSVS expression in α′/β′ neurons and the morphology of mushroom body (MB) lobes revealed by cell adhesion molecule Fasciclin II (Fas2, strong magenta for labeling α and β lobes) at 24 hr after puparium formation (APF). An enhance-promoter (EP) line inserted at the proximal region of the E93-A 5′UTR was used to overexpress E93 in the gain-of-function experiments. The potency of the E93(EP) line was similar to two other in-house transgenic lines expressing E93-A and E93-B isoforms (see ). Scale bar: 10 µm.

    Journal: eLife

    Article Title: Genetic network shaping Kenyon cell identity and function in Drosophila mushroom bodies

    doi: 10.7554/eLife.108173

    Figure Lengend Snippet: ( A, B ) Overexpression of E93 driven by GAL4-OK107 caused precocious expression of α/β-specific Ca-α1T-GFSTF in early-born KCs at the wandering larval (WL) stage. ( C, D ) In addition, overexpression of E93 driven by a γ-neural driver, GAL4-201Y (magenta), ectopically turned on the expression of a α/β-specific 70F05-LexA driver in a portion of γ neurons (visualized by myr-GFP in green; arrow). On the other hand, overexpression of E93 abolished γ-specific markers, including Ab-GFP ( E, F ), Mamo H/I ( G, H ), Mamo D~G (weak green signal; I, J ) and EcR-B1 ( E–J ), and α′/β′-specific Mamo D~G (strong green signal within yellow dashed-line; I, J ) in the early-born KCs at the white pupal (WP) stage. ( K, L ) E93 overexpression also compromised the Lac-FSVS expression in α′/β′ neurons and the morphology of mushroom body (MB) lobes revealed by cell adhesion molecule Fasciclin II (Fas2, strong magenta for labeling α and β lobes) at 24 hr after puparium formation (APF). An enhance-promoter (EP) line inserted at the proximal region of the E93-A 5′UTR was used to overexpress E93 in the gain-of-function experiments. The potency of the E93(EP) line was similar to two other in-house transgenic lines expressing E93-A and E93-B isoforms (see ). Scale bar: 10 µm.

    Article Snippet: Primary antibodies used in this study included guinea pig antibody against Chinmo (1:1000, Sokol laboratory ), rat monoclonal antibody against mCD8 (1:100, Thermo Fisher Scientific), rabbit antibody against GFP (1:750, Thermo Fisher Scientific), and mouse monoclonal antibodies against EcR-B1 (1:50, DSHB), Fas2 (1:100, DSHB) and Trio (1:50, DSHB).

    Techniques: Over Expression, Expressing, Labeling, Transgenic Assay