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A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal

The mechanism surrounding chromosome inheritance during cell division has been well documented, however, organelle inheritance during mitosis is less understood. Recently, the endoplasmic reticulum (ER) has been shown to reorganize during mitosis, dividing asymmetrically in proneuronal cells prior t...

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Autores principales: Ascencio, Gerson, de Cruz, Matthew A, Abuel, Judy, Alvarado, Sydney, Arriaga, Yuma, Conrad, Emily, Castro, Alonso, Eichelberger, Katharine, Galvan, Laura, Gundy, Grace, Garcia, Jorge Alberto Inojoza, Jimenez, Alyssa, Lu, Nhien Tuyet, Lugar, Catharine, Marania, Ronald, Mendsaikhan, Tserendavaa, Ortega, Jose, Nand, Natasha, Rodrigues, Nicole S, Shabazz, Khayla, Tam, Cynnie, Valenciano, Emmanuel, Hayzelden, Clive, Eritano, Anthony S, Riggs, Blake
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10320142/
https://www.ncbi.nlm.nih.gov/pubmed/36932646
http://dx.doi.org/10.1093/g3journal/jkad059
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author Ascencio, Gerson
de Cruz, Matthew A
Abuel, Judy
Alvarado, Sydney
Arriaga, Yuma
Conrad, Emily
Castro, Alonso
Eichelberger, Katharine
Galvan, Laura
Gundy, Grace
Garcia, Jorge Alberto Inojoza
Jimenez, Alyssa
Lu, Nhien Tuyet
Lugar, Catharine
Marania, Ronald
Mendsaikhan, Tserendavaa
Ortega, Jose
Nand, Natasha
Rodrigues, Nicole S
Shabazz, Khayla
Tam, Cynnie
Valenciano, Emmanuel
Hayzelden, Clive
Eritano, Anthony S
Riggs, Blake
author_facet Ascencio, Gerson
de Cruz, Matthew A
Abuel, Judy
Alvarado, Sydney
Arriaga, Yuma
Conrad, Emily
Castro, Alonso
Eichelberger, Katharine
Galvan, Laura
Gundy, Grace
Garcia, Jorge Alberto Inojoza
Jimenez, Alyssa
Lu, Nhien Tuyet
Lugar, Catharine
Marania, Ronald
Mendsaikhan, Tserendavaa
Ortega, Jose
Nand, Natasha
Rodrigues, Nicole S
Shabazz, Khayla
Tam, Cynnie
Valenciano, Emmanuel
Hayzelden, Clive
Eritano, Anthony S
Riggs, Blake
author_sort Ascencio, Gerson
collection PubMed
description The mechanism surrounding chromosome inheritance during cell division has been well documented, however, organelle inheritance during mitosis is less understood. Recently, the endoplasmic reticulum (ER) has been shown to reorganize during mitosis, dividing asymmetrically in proneuronal cells prior to cell fate selection, indicating a programmed mechanism of inheritance. ER asymmetric partitioning in proneural cells relies on the highly conserved ER integral membrane protein, Jagunal (Jagn). Knockdown of Jagn in the compound Drosophila eye displays a pleotropic rough eye phenotype in 48% of the progeny. To identify genes involved in Jagn dependent ER partitioning pathway, we performed a dominant modifier screen of the 3rd chromosome for enhancers and suppressors of this Jagn-RNAi-induced rough eye phenotype. We screened through 181 deficiency lines covering the 3L and 3R chromosomes and identified 12 suppressors and 10 enhancers of the Jagn-RNAi phenotype. Based on the functions of the genes covered by the deficiencies, we identified genes that displayed a suppression or enhancement of the Jagn-RNAi phenotype. These include Division Abnormally Delayed (Dally), a heparan sulfate proteoglycan, the γ-secretase subunit Presenilin, and the ER resident protein Sec63. Based on our understanding of the function of these targets, there is a connection between Jagn and the Notch signaling pathway. Further studies will elucidate the role of Jagn and identified interactors within the mechanisms of ER partitioning during mitosis.
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spelling pubmed-103201422023-07-06 A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal Ascencio, Gerson de Cruz, Matthew A Abuel, Judy Alvarado, Sydney Arriaga, Yuma Conrad, Emily Castro, Alonso Eichelberger, Katharine Galvan, Laura Gundy, Grace Garcia, Jorge Alberto Inojoza Jimenez, Alyssa Lu, Nhien Tuyet Lugar, Catharine Marania, Ronald Mendsaikhan, Tserendavaa Ortega, Jose Nand, Natasha Rodrigues, Nicole S Shabazz, Khayla Tam, Cynnie Valenciano, Emmanuel Hayzelden, Clive Eritano, Anthony S Riggs, Blake G3 (Bethesda) Mutant Screen Report The mechanism surrounding chromosome inheritance during cell division has been well documented, however, organelle inheritance during mitosis is less understood. Recently, the endoplasmic reticulum (ER) has been shown to reorganize during mitosis, dividing asymmetrically in proneuronal cells prior to cell fate selection, indicating a programmed mechanism of inheritance. ER asymmetric partitioning in proneural cells relies on the highly conserved ER integral membrane protein, Jagunal (Jagn). Knockdown of Jagn in the compound Drosophila eye displays a pleotropic rough eye phenotype in 48% of the progeny. To identify genes involved in Jagn dependent ER partitioning pathway, we performed a dominant modifier screen of the 3rd chromosome for enhancers and suppressors of this Jagn-RNAi-induced rough eye phenotype. We screened through 181 deficiency lines covering the 3L and 3R chromosomes and identified 12 suppressors and 10 enhancers of the Jagn-RNAi phenotype. Based on the functions of the genes covered by the deficiencies, we identified genes that displayed a suppression or enhancement of the Jagn-RNAi phenotype. These include Division Abnormally Delayed (Dally), a heparan sulfate proteoglycan, the γ-secretase subunit Presenilin, and the ER resident protein Sec63. Based on our understanding of the function of these targets, there is a connection between Jagn and the Notch signaling pathway. Further studies will elucidate the role of Jagn and identified interactors within the mechanisms of ER partitioning during mitosis. Oxford University Press 2023-03-18 /pmc/articles/PMC10320142/ /pubmed/36932646 http://dx.doi.org/10.1093/g3journal/jkad059 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of The Genetics Society of America. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Mutant Screen Report
Ascencio, Gerson
de Cruz, Matthew A
Abuel, Judy
Alvarado, Sydney
Arriaga, Yuma
Conrad, Emily
Castro, Alonso
Eichelberger, Katharine
Galvan, Laura
Gundy, Grace
Garcia, Jorge Alberto Inojoza
Jimenez, Alyssa
Lu, Nhien Tuyet
Lugar, Catharine
Marania, Ronald
Mendsaikhan, Tserendavaa
Ortega, Jose
Nand, Natasha
Rodrigues, Nicole S
Shabazz, Khayla
Tam, Cynnie
Valenciano, Emmanuel
Hayzelden, Clive
Eritano, Anthony S
Riggs, Blake
A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal
title A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal
title_full A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal
title_fullStr A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal
title_full_unstemmed A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal
title_short A deficiency screen of the 3rd chromosome for dominant modifiers of the Drosophila ER integral membrane protein, Jagunal
title_sort deficiency screen of the 3rd chromosome for dominant modifiers of the drosophila er integral membrane protein, jagunal
topic Mutant Screen Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10320142/
https://www.ncbi.nlm.nih.gov/pubmed/36932646
http://dx.doi.org/10.1093/g3journal/jkad059
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