J. Modolell and S. Campuzano, The achaete-scute complex as an integrating device, Int J Dev Biol, vol.42, pp.275-282, 1998.

P. Simpson, R. Woehl, and K. Usui, The development and evolution of bristle patterns in Diptera, Development, vol.126, pp.1349-1364, 1999.

M. Calleja, O. Renaud, K. Usui, D. Pistillo, and G. Morata, How to pattern an epithelium: lessons from achaete-scute regulation on the notum of Drosophila, Gene, vol.292, pp.1-12, 2002.

J. L. Gómez-skarmeta, S. Campuzano, and J. Modolell, Half a century of neural prepatterning: the story of a few bristles and many genes, Nat Rev Neurosci, vol.4, pp.587-598, 2003.

P. Simpson, The stars and stripes of animal bodies: evolution of regulatory elements mediating pigment and bristle patterns in Drosophila, Trends Genet, vol.23, pp.350-358, 2007.

D. P. Furman and T. A. Bukharina, The gene network determining development of Drosophila melanogaster mechanoreceptors, Comput Biol Chem, vol.33, pp.231-234, 2009.

A. García-bellido and J. F. De-celis, The complex tale of the achaete-scute complex: a paradigmatic case in the analysis of gene organization and function during development, Genetics, vol.182, pp.631-639, 2009.

M. Gho, Y. Bellaïche, and F. Schweisguth, Revisiting the Drosophila microchaete lineage: a novel intrinsically asymmetric cell division generates a glial cell, Development, vol.126, pp.3573-3584, 1999.

S. Romani, S. Campuzano, E. R. Macagno, and J. Modolell, Expression of achaete and scute genes in Drosophila imaginal discs and their function in sensory organ development, Genes Dev, vol.3, pp.997-1007, 1989.

P. Cubas, J. F. De-celis, S. Campuzano, and J. Modolell, Proneural clusters of achaete-scute expression and the generation of sensory organs in the Drosophila imaginal wing disc, Genes Dev, vol.5, pp.996-1008, 1991.

J. B. Skeath and S. B. Carroll, Regulation of achaete-scute gene expression and sensory organ pattern formation in the Drosophila wing, Genes Dev, vol.5, pp.984-995, 1991.

J. Garrell and J. Modolell, The Drosophila extramacrochaetae locus, an antagonist of proneural genes that, like these genes, encodes a helix-loop-helix protein, Cell, vol.61, pp.39-48, 1990.

H. M. Ellis, D. R. Spann, and J. W. Posakony, extramacrochaetae, a negative regulator of sensory organ development in Drosophila, defines a new class of helix-loop-helix proteins, Cell, vol.61, pp.27-38, 1990.

P. Heitzler and P. Simpson, The choice of cell fate in the epidermis of Drosophila, Cell, vol.64, pp.1083-1092, 1991.

J. Culí and J. Modolell, Proneural gene self-stimulation in neural precursors: an essential mechanism for sense organ development that is regulated by Notch signaling, Genes Dev, vol.12, pp.2036-2047, 1998.

P. Badenhorst, J. T. Finch, and A. A. Travers, Tramtrack co-operates to prevent inappropriate neural development in Drosophila, Mech Dev, vol.117, pp.87-101, 2002.

H. Jafar-nejad, M. Acar, R. Nolo, H. Lacin, and H. Pan, Senseless acts as a binary switch during sensory organ precursor selection, Genes Dev, vol.17, pp.2966-2978, 2003.

M. Van-doren, A. M. Bailey, J. Esnayra, K. Ede, and J. W. Posakony, Negative regulation of proneural gene activity: hairy is a direct transcriptional repressor of achaete, Genes Dev, vol.8, pp.2729-2742, 1994.

S. Ayyar, D. Pistillo, M. Calleja, A. Brookfield, and K. Gittins, NF-kappaB/ Rel-mediated regulation of the neural fate in Drosophila, PLoS ONE, vol.2, 2007.

P. Ramain, P. Heitzler, M. Haenlin, and P. Simpson, ) pannier, a negative regulator of achaete and scute in Drosophila, encodes a zinc finger protein with homology to the vertebrate transcription factor GATA-1, Development, vol.119, pp.1277-1291, 1993.

P. Heitzler, M. Haenlin, P. Ramain, M. Calleja, and P. Simpson, A genetic analysis of pannier, a gene necessary for viability of dorsal tissues and bristle positioning in Drosophila, Genetics, vol.143, pp.1271-1286, 1996.

M. J. García-garcía, P. Ramain, P. Simpson, and J. Modolell, Different contributions of pannier and wingless to the patterning of the dorsal mesothorax of Drosophila, Development, vol.126, pp.3523-3532, 1999.

P. Ramain, R. Khechumian, K. Khechumian, N. Arbogast, and C. Ackermann, Interactions between chip and the achaete/scute-daughterless heterodimers are required for pannier-driven proneural patterning, Mol Cell, vol.6, pp.781-790, 2000.

S. Zenvirt, Y. Nevo-caspi, S. Rencus-lazar, and D. Segal, Drosophila LIM-only is a positive regulator of transcription during thoracic bristle development, Genetics, vol.179, pp.1989-1999, 2008.

J. Asmar, I. Biryukova, and P. Heitzler, Drosophila dLMO-PA isoform acts as an early activator of achaete/scute proneural expression, Dev Biol, vol.316, pp.487-497, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00283068

L. Vanolst, C. Fromental-ramain, and P. Ramain, Toutatis, a TIP5-related protein, positively regulates Pannier function during Drosophila neural development, Development, vol.132, pp.4327-4338, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00187795

Y. Cubadda, P. Heitzler, R. P. Ray, M. Bourouis, and P. Ramain, u-shaped encodes a zinc finger protein that regulates the proneural genes achaete and scute during the formation of bristles in Drosophila, Genes Dev, vol.11, pp.3083-3095, 1997.

I. Biryukova and P. Heitzler, Drosophila C-terminal binding protein, dCtBP is required for sensory organ prepattern and sharpens proneural transcriptional activity of the GATA factor Pnr, Dev Biol, vol.323, pp.64-75, 2008.
URL : https://hal.archives-ouvertes.fr/inserm-00350735

P. Heitzler, L. Vanolst, I. Biryukova, and P. Ramain, Enhancer-promoter communication mediated by Chip during Pannier-driven proneural patterning is regulated by Osa, Genes Dev, vol.17, pp.591-596, 2003.

A. Grienenberger, B. Miotto, T. Sagnier, G. Cavalli, and V. Schramke, The MYST domain acetyltransferase Chameau functions in epigenetic mechanisms of transcriptional repression, Curr Biol, vol.12, pp.762-766, 2002.
URL : https://hal.archives-ouvertes.fr/hal-00311060

B. Miotto, T. Sagnier, H. Berenger, D. Bohmann, and J. Pradel, Chameau HAT and DRpd3 HDAC function as antagonistic cofactors of JNK/AP-1-dependent transcription during Drosophila metamorphosis, Genes Dev, vol.20, pp.101-112, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00088587

B. D. Aggarwal and B. R. Calvi, Chromatin regulates origin activity in Drosophila follicle cells, Nature, vol.430, pp.372-376, 2004.

J. Z. Parrish, M. D. Kim, L. Y. Jan, and Y. N. Jan, Genome-wide analyses identify transcription factors required for proper morphogenesis of Drosophila sensory neuron dendrites, Genes Dev, vol.20, pp.820-835, 2006.

F. Bejarano, C. M. Luque, H. Herranz, G. Sorrosal, and N. Rafel, A gain-offunction suppressor screen for genes involved in dorsal-ventral boundary formation in the Drosophila wing, Genetics, vol.178, pp.307-323, 2008.

D. Sambandan, A. Yamamoto, J. Fanara, and T. Mackay, Dynamic genetic interactions determine odor-guided behavior in Drosophila melanogaster, Genetics, vol.174, pp.1349-1363, 2006.

G. L. Boulianne, A. De-la-concha, J. A. Campos-ortega, J. L. Jan, and Y. N. , The Drosophila neurogenic gene neuralized encodes a novel protein and is expressed in precursors of larval and adult neurons, EMBO J, vol.10, pp.2975-2983, 1991.

E. Martin-blanco, J. C. Pastor-pareja, and A. Garcia-bellido, JNK and decapentaplegic signaling control adhesiveness and cytoskeleton dynamics during thorax closure in Drosophila, Proc Natl Acad Sci, vol.97, pp.7888-7893, 2000.

S. Campuzano, L. Carramolino, C. V. Cabrera, M. Ruíz-gómez, and R. Villares, Molecular genetics of the achaete-scute gene complex of D. melanogaster, Cell, vol.40, pp.327-338, 1985.

M. Haenlin, Y. Cubadda, F. Blondeau, P. Heitzler, and Y. Lutz, Transcriptional activity of pannier is regulated negatively by heterodimerization of the GATA DNA-binding domain with a cofactor encoded by the u-shaped gene of Drosophila, Genes Dev, vol.11, pp.3096-3108, 1997.

C. V. Cabrera, M. C. Alonso, and H. Huikeshoven, Regulation of scute function by extramacrochaete in vitro and in vivo, Development, vol.120, pp.3595-3603, 1994.

C. Martínez, J. Modolell, and J. Garrell, Regulation of the proneural gene achaete by helix-loop-helix proteins, Mol Cell Biol, vol.13, pp.3514-3521, 1993.

M. Van-doren, H. M. Ellis, and J. W. Posakony, The Drosophila extramacrochaetae protein antagonizes sequence-specific DNA binding by daughterless/ achaete-scute protein complexes, Development, vol.113, pp.245-255, 1991.

C. A. Rushlow, A. Hogan, S. M. Pinchin, K. M. Howe, and M. Lardelli, The Drosophila hairy protein acts in both segmentation and bristle patterning and shows homology to N-myc, EMBO J, vol.8, pp.3095-3103, 1989.

J. D. Axelrod, Delivering the lateral inhibition punchline: it's all about the timing, Sci Signal, vol.3, p.38, 2010.

P. Mourikis, R. J. Lake, C. B. Firnhaber, and B. S. Dedecker, Modifiers of notch transcriptional activity identified by genome-wide RNAi, BMC Dev Biol, vol.10, p.107, 2010.

A. Akhtar and P. B. Becker, Activation of transcription through histone H4 acetylation by MOF, an acetyltransferase essential for dosage compensation in Drosophila, Mol Cell, vol.5, pp.367-375, 2000.

E. R. Smith, A. Eisen, W. Gu, M. Sattah, and A. Pannuti, ESA1 is a histone acetyltransferase that is essential for growth in yeast, Proc Natl Acad Sci, vol.95, pp.3561-3565, 1998.

S. Takechi and T. Nakayama, Sas3 is a histone acetyltransferase and requires a zinc finger motif, Biochem Biophys Res Commun, vol.266, pp.405-410, 1999.

M. T. Peñ-a-rangel, I. Rodriguez, and J. R. Riesgo-escovar, A misexpression study examining dorsal thorax formation in Drosophila melanogaster, Genetics, vol.160, pp.1035-1050, 2002.

R. G. Phillips, N. L. Warner, and J. R. Whittle, Wingless signaling leads to an asymmetric response to decapentaplegic-dependent signaling during sense organ patterning on the notum of Drosophila melanogaster, Dev Biol, vol.207, pp.150-162, 1999.

Y. Yamasaki and Y. Nishida, Mi-2 chromatin remodeling factor functions in sensory organ development through proneural gene repression in Drosophila, Dev Growth Differ, vol.48, pp.411-418, 2006.

K. Struhl, Histone acetylation and transcriptional regulatory mechanisms, Genes Dev, vol.12, pp.599-606, 1998.

M. Yang, E. Hatton-ellis, and P. Simpson, The kinase Sgg modulates temporal development of macrochaetes in Drosophila by phosphorylation of Scute and Pannier, Development, vol.139, pp.325-334, 2012.

S. Srinivasan, J. A. Armstrong, R. Deuring, I. K. Dahlsveen, and H. Mcneill, The Drosophila trithorax group protein Kismet facilitates an early step in transcriptional elongation by RNA Polymerase II, Development, vol.132, pp.1623-1635, 2005.

S. Srinivasan, K. M. Dorighi, and J. W. Tamkun, Drosophila Kismet regulates histone H3 lysine 27 methylation and early elongation by RNA polymerase II, PLoS Genet, vol.4, p.1000217, 2008.

C. D. Allis, S. L. Berger, J. Cote, S. Dent, and T. Jenuwien, New nomenclature for chromatin-modifying enzymes, Cell, vol.131, pp.633-636, 2007.

N. Saksouk, N. Avvakumov, K. S. Champagne, T. Hung, and Y. Doyon, HBO1 HAT complexes target chromatin throughout gene coding regions via multiple PHD finger interactions with histone H3 tail, Mol Cell, vol.33, pp.257-265, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02154225

B. Miotto and K. Struhl, HBO1 histone acetylase is a coactivator of the replication licensing factor Cdt1, Genes Dev, vol.22, pp.2633-2638, 2008.
URL : https://hal.archives-ouvertes.fr/inserm-02132585

Y. Doyon, C. Cayrou, M. Ullah, A. Landry, and V. Côté, ING tumor suppressor proteins are critical regulators of chromatin acetylation required for genome expression and perpetuation, Mol Cell, vol.21, pp.51-64, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02154286

M. Iizuka and B. Stillman, Histone acetyltransferase HBO1 interacts with the ORC1 subunit of the human initiator protein, J Biol Chem, vol.274, pp.23027-23034, 1999.

R. Contzler, A. Regamey, B. Favre, T. Roger, and D. Hohl, Histone acetyltransferase HBO1 inhibits NF-kappaB activity by coactivator sequestration, Biochem Biophys Res Commun, vol.350, pp.208-213, 2006.

M. Sharma, M. Zarnegar, X. Li, B. Lim, and Z. Sun, Androgen receptor interacts with a novel MYST protein, HBO1, J Biol Chem, vol.275, pp.35200-35208, 2000.

Y. Doyon, C. Cayrou, M. Ullah, A. Landry, and V. Côté, ING tumor suppressor proteins are critical regulators of chromatin acetylation required for genome expression and perpetuation, Mol Cell, vol.21, pp.51-64, 2006.
URL : https://hal.archives-ouvertes.fr/hal-02154286

B. Miotto and K. Struhl, Differential gene regulation by selective association of transcriptional coactivators and bZIP DNA-binding domains, Mol Cell Biol, vol.26, pp.5969-5982, 2006.
URL : https://hal.archives-ouvertes.fr/inserm-02132531

A. J. Kueh, M. P. Dixon, A. K. Voss, and T. Thomas, HBO1 is required for H3K14 acetylation and normal transcriptional activity during embryonic development, Mol Cell Biol, vol.31, pp.845-860, 2011.

M. Sato and K. Saigo, Involvement of pannier and u-shaped in regulation of decapentaplegic-dependent wingless expression in developing Drosophila notum, Mech Dev, vol.93, pp.127-138, 2000.

I. Biryukova and P. Heitzler, The Drosophila LIM-homeo domain protein Islet antagonizes pro-neural cell specification in the peripheral nervous system, Dev Biol, vol.288, pp.559-570, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00187448

G. J. Filion, J. G. Van-bemmel, U. Braunschweig, W. Talhout, and J. Kind, Systematic protein location mapping reveals five principal chromatin types in Drosophila cells, Cell, vol.143, pp.212-224, 2010.

M. Mlodzik, N. E. Baker, and G. M. Rubin, Isolation and expression of scabrous, a gene regulating neurogenesis in Drosophila, Genes Dev, vol.4, pp.1848-1861, 1990.

A. Singson, M. W. Leviten, A. G. Bang, X. H. Hua, and J. W. Posakony, Direct downstream targets of proneural activators in the imaginal disc include genes involved in lateral inhibitory signaling, Genes Dev, vol.8, pp.2058-2071, 1994.

N. Reeves and J. W. Posakony, Genetic programs activated by proneural proteins in the developing Drosophila PNS, Dev Cell, vol.8, pp.413-425, 2005.

A. Koto, E. Kuranaga, and M. Miura, Apoptosis ensures spacing pattern formation of Drosophila sensory organs, Curr Biol, vol.21, pp.278-287, 2011.

O. Renaud and P. Simpson, scabrous modifies epithelial cell adhesion and extends the range of lateral signalling during development of the spaced bristle pattern in Drosophila, Dev Biol, vol.240, pp.361-376, 2001.

C. De-joussineau, J. Soulé, M. Martin, C. Anguille, and P. Montcourrier, Delta-promoted filopodia mediate long-range lateral inhibition in Drosophila, Nature, vol.426, pp.555-559, 2003.
URL : https://hal.archives-ouvertes.fr/hal-01922148

M. Cohen, M. Georgiou, N. L. Stevenson, M. Miodownik, and B. Baum, Dynamic filopodia transmit intermittent Delta-Notch signaling to drive pattern refinement during lateral inhibition, Dev Cell, vol.19, pp.78-89, 2010.

A. Bhattacharya and N. E. Baker, A Network of Broadly Expressed HLH Genes Regulates Tissue-Specific Cell Fates, Cell, vol.147, pp.881-892, 2011.