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Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila

BACKGROUND: The conserved Notch signaling pathway regulates cell fate decisions and maintains stem cells in multicellular organisms. Up-regulation of Notch signaling is observed in several types of cancer and is causally involved in proliferation and survival of cancer cells. Thus, it is of great in...

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Autores principales: Pi, Haiwei, Huang, Yi-Chun, Chen, I-Chun, Lin, Chung-De, Yeh, Hsiao-Fong, Pai, Li-Mei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3136413/
https://www.ncbi.nlm.nih.gov/pubmed/21682860
http://dx.doi.org/10.1186/1423-0127-18-42
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author Pi, Haiwei
Huang, Yi-Chun
Chen, I-Chun
Lin, Chung-De
Yeh, Hsiao-Fong
Pai, Li-Mei
author_facet Pi, Haiwei
Huang, Yi-Chun
Chen, I-Chun
Lin, Chung-De
Yeh, Hsiao-Fong
Pai, Li-Mei
author_sort Pi, Haiwei
collection PubMed
description BACKGROUND: The conserved Notch signaling pathway regulates cell fate decisions and maintains stem cells in multicellular organisms. Up-regulation of Notch signaling is observed in several types of cancer and is causally involved in proliferation and survival of cancer cells. Thus, it is of great interest to look for anti-Notch reagents for therapeutic purposes. In model animal Drosophila, Notch signaling restricts selection of sensory organ precursors (SOPs) during external sensory (ES) organ development. To look for novel genes that can suppress Notch signaling, we performed a gain-of-function modifier screen to look for genes that enhance the phenotype of ectopic ES organs induced by overexpression of phyllopod, a gene required for SOP specification. RESULTS: From the gain-of-function screen, we discovered that overexpression of polished rice/tarsal-less (pri/tal) increases the numbers of ES organs as well as SOPs. pri/tal is a polycistronic gene that contains four short open reading frames encoding three 11-amino acid and one 32-amino acid peptides. Ectopic expression of the 11 amino-acid peptides recapitulates the pri/tal misexpression phenotype in ectopic ES organ formation. In situ hybridization experiment reveals that pri/tal mRNA is expressed in the SOPs of the chemosensory organs and the stretch-sensing chordotonal organs. In Drosophila wing development, the Notch signaling pathway mediates the formation of the dorsal-ventral (DV) compartmental boundary and the restriction of the vein width from the primordial veins, the proveins. We also found that pri/tal mRNA is expressed in the DV boundary and the longitudinal proveins, and overexpression of Pri/Tal peptides disrupts the DV boundary formation and helps to expand the width of the wing vein. Genetic analyses further show that a Notch loss-of-function allele strongly enhances these two phenotypes. Cut and E(spl)mβ are target genes of the Notch pathway in DV boundary formation and vein specification, respectively. We also found that overexpression of Pri/Tal peptides abolishes Cut expression and co-expression of Pri/Tal peptides with phyl strongly reduces E(spl)mβ expression. CONCLUSIONS: We show for the first time that the overexpression of Pri/Tal 11-amino acid peptides disrupts multiple Notch-mediated processes and reduces Notch target gene expression in Drosophila, suggesting that these peptides have novel antagonistic activity to the Notch pathway. Thus, our discovery might provide insights into designing new therapeutic reagents for Notch-related diseases.
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spelling pubmed-31364132011-07-15 Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila Pi, Haiwei Huang, Yi-Chun Chen, I-Chun Lin, Chung-De Yeh, Hsiao-Fong Pai, Li-Mei J Biomed Sci Research BACKGROUND: The conserved Notch signaling pathway regulates cell fate decisions and maintains stem cells in multicellular organisms. Up-regulation of Notch signaling is observed in several types of cancer and is causally involved in proliferation and survival of cancer cells. Thus, it is of great interest to look for anti-Notch reagents for therapeutic purposes. In model animal Drosophila, Notch signaling restricts selection of sensory organ precursors (SOPs) during external sensory (ES) organ development. To look for novel genes that can suppress Notch signaling, we performed a gain-of-function modifier screen to look for genes that enhance the phenotype of ectopic ES organs induced by overexpression of phyllopod, a gene required for SOP specification. RESULTS: From the gain-of-function screen, we discovered that overexpression of polished rice/tarsal-less (pri/tal) increases the numbers of ES organs as well as SOPs. pri/tal is a polycistronic gene that contains four short open reading frames encoding three 11-amino acid and one 32-amino acid peptides. Ectopic expression of the 11 amino-acid peptides recapitulates the pri/tal misexpression phenotype in ectopic ES organ formation. In situ hybridization experiment reveals that pri/tal mRNA is expressed in the SOPs of the chemosensory organs and the stretch-sensing chordotonal organs. In Drosophila wing development, the Notch signaling pathway mediates the formation of the dorsal-ventral (DV) compartmental boundary and the restriction of the vein width from the primordial veins, the proveins. We also found that pri/tal mRNA is expressed in the DV boundary and the longitudinal proveins, and overexpression of Pri/Tal peptides disrupts the DV boundary formation and helps to expand the width of the wing vein. Genetic analyses further show that a Notch loss-of-function allele strongly enhances these two phenotypes. Cut and E(spl)mβ are target genes of the Notch pathway in DV boundary formation and vein specification, respectively. We also found that overexpression of Pri/Tal peptides abolishes Cut expression and co-expression of Pri/Tal peptides with phyl strongly reduces E(spl)mβ expression. CONCLUSIONS: We show for the first time that the overexpression of Pri/Tal 11-amino acid peptides disrupts multiple Notch-mediated processes and reduces Notch target gene expression in Drosophila, suggesting that these peptides have novel antagonistic activity to the Notch pathway. Thus, our discovery might provide insights into designing new therapeutic reagents for Notch-related diseases. BioMed Central 2011-06-17 /pmc/articles/PMC3136413/ /pubmed/21682860 http://dx.doi.org/10.1186/1423-0127-18-42 Text en Copyright ©2011 Pi et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Pi, Haiwei
Huang, Yi-Chun
Chen, I-Chun
Lin, Chung-De
Yeh, Hsiao-Fong
Pai, Li-Mei
Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila
title Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila
title_full Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila
title_fullStr Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila
title_full_unstemmed Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila
title_short Identification of 11-amino acid peptides that disrupt Notch-mediated processes in Drosophila
title_sort identification of 11-amino acid peptides that disrupt notch-mediated processes in drosophila
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3136413/
https://www.ncbi.nlm.nih.gov/pubmed/21682860
http://dx.doi.org/10.1186/1423-0127-18-42
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