Cargando…

A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster

BACKGROUND: Several lines of evidence associate misregulated genetic expression with risk factors for diabetes, Alzheimer’s, and other diseases that sporadically develop in healthy adults with no background of hereditary disorders. Thus, we are interested in genes that may be expressed normally thro...

Descripción completa

Detalles Bibliográficos
Autores principales: Nakayama, Minoru, Ishibashi, Tomoki, Ishikawa, Hiroyuki O, Sato, Hiroyasu, Usui, Takao, Okuda, Takayuki, Yashiro, Hiroyuki, Ishikawa, Hironori, Taikou, Yoshie, Minami, Asako, Kato, Kengo, Taki, Masataka, Aigaki, Toshiro, Gunji, Wataru, Ohtsu, Masaya, Murakami, Yasufumi, Tanuma, Sei-ichi, Tsuboi, Alice, Adachi, Mai, Kuroda, Junpei, Sasamura, Takeshi, Yamakawa, Tomoko, Matsuno, Kenji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021436/
https://www.ncbi.nlm.nih.gov/pubmed/24739137
http://dx.doi.org/10.1186/1471-2156-15-46
_version_ 1782316239971942400
author Nakayama, Minoru
Ishibashi, Tomoki
Ishikawa, Hiroyuki O
Sato, Hiroyasu
Usui, Takao
Okuda, Takayuki
Yashiro, Hiroyuki
Ishikawa, Hironori
Taikou, Yoshie
Minami, Asako
Kato, Kengo
Taki, Masataka
Aigaki, Toshiro
Gunji, Wataru
Ohtsu, Masaya
Murakami, Yasufumi
Tanuma, Sei-ichi
Tsuboi, Alice
Adachi, Mai
Kuroda, Junpei
Sasamura, Takeshi
Yamakawa, Tomoko
Matsuno, Kenji
author_facet Nakayama, Minoru
Ishibashi, Tomoki
Ishikawa, Hiroyuki O
Sato, Hiroyasu
Usui, Takao
Okuda, Takayuki
Yashiro, Hiroyuki
Ishikawa, Hironori
Taikou, Yoshie
Minami, Asako
Kato, Kengo
Taki, Masataka
Aigaki, Toshiro
Gunji, Wataru
Ohtsu, Masaya
Murakami, Yasufumi
Tanuma, Sei-ichi
Tsuboi, Alice
Adachi, Mai
Kuroda, Junpei
Sasamura, Takeshi
Yamakawa, Tomoko
Matsuno, Kenji
author_sort Nakayama, Minoru
collection PubMed
description BACKGROUND: Several lines of evidence associate misregulated genetic expression with risk factors for diabetes, Alzheimer’s, and other diseases that sporadically develop in healthy adults with no background of hereditary disorders. Thus, we are interested in genes that may be expressed normally through parts of an individual’s life, but can cause physiological defects and disease when misexpressed in adulthood. RESULTS: We attempted to identify these genes in a model organism by arbitrarily misexpressing specific genes in adult Drosophila melanogaster, using 14,133 Gene Search lines. We identified 39 “reduced-lifespan genes” that, when misexpressed in adulthood, shortened the flies’ lifespan to less than 30% of that of control flies. About half of these genes have human orthologs that are known to be involved in human diseases. For about one-fourth of the reduced-lifespan genes, suppressing apoptosis restored the lifespan shortened by their misexpression. We determined the organs responsible for reduced lifespan when these genes were misexpressed specifically in adulthood, and found that while some genes induced reduced lifespan only when misexpressed in specific adult organs, others could induce reduced lifespan when misexpressed in various organs. This finding suggests that tissue-specific dysfunction may be involved in reduced lifespan related to gene misexpression. Gene ontology analysis showed that reduced-lifespan genes are biased toward genes related to development. CONCLUSIONS: We identified 39 genes that, when misexpressed in adulthood, shortened the lifespan of adult flies. Suppressing apoptosis rescued this shortened lifespan for only a subset of the reduced-lifespan genes. The adult tissues in which gene misexpression caused early death differed among the reduced-lifespan genes. These results suggest that the cause of reduced lifespan upon misexpression differed among the genes.
format Online
Article
Text
id pubmed-4021436
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-40214362014-05-16 A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster Nakayama, Minoru Ishibashi, Tomoki Ishikawa, Hiroyuki O Sato, Hiroyasu Usui, Takao Okuda, Takayuki Yashiro, Hiroyuki Ishikawa, Hironori Taikou, Yoshie Minami, Asako Kato, Kengo Taki, Masataka Aigaki, Toshiro Gunji, Wataru Ohtsu, Masaya Murakami, Yasufumi Tanuma, Sei-ichi Tsuboi, Alice Adachi, Mai Kuroda, Junpei Sasamura, Takeshi Yamakawa, Tomoko Matsuno, Kenji BMC Genet Research Article BACKGROUND: Several lines of evidence associate misregulated genetic expression with risk factors for diabetes, Alzheimer’s, and other diseases that sporadically develop in healthy adults with no background of hereditary disorders. Thus, we are interested in genes that may be expressed normally through parts of an individual’s life, but can cause physiological defects and disease when misexpressed in adulthood. RESULTS: We attempted to identify these genes in a model organism by arbitrarily misexpressing specific genes in adult Drosophila melanogaster, using 14,133 Gene Search lines. We identified 39 “reduced-lifespan genes” that, when misexpressed in adulthood, shortened the flies’ lifespan to less than 30% of that of control flies. About half of these genes have human orthologs that are known to be involved in human diseases. For about one-fourth of the reduced-lifespan genes, suppressing apoptosis restored the lifespan shortened by their misexpression. We determined the organs responsible for reduced lifespan when these genes were misexpressed specifically in adulthood, and found that while some genes induced reduced lifespan only when misexpressed in specific adult organs, others could induce reduced lifespan when misexpressed in various organs. This finding suggests that tissue-specific dysfunction may be involved in reduced lifespan related to gene misexpression. Gene ontology analysis showed that reduced-lifespan genes are biased toward genes related to development. CONCLUSIONS: We identified 39 genes that, when misexpressed in adulthood, shortened the lifespan of adult flies. Suppressing apoptosis rescued this shortened lifespan for only a subset of the reduced-lifespan genes. The adult tissues in which gene misexpression caused early death differed among the reduced-lifespan genes. These results suggest that the cause of reduced lifespan upon misexpression differed among the genes. BioMed Central 2014-04-16 /pmc/articles/PMC4021436/ /pubmed/24739137 http://dx.doi.org/10.1186/1471-2156-15-46 Text en Copyright © 2014 Nakayama 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 credited.
spellingShingle Research Article
Nakayama, Minoru
Ishibashi, Tomoki
Ishikawa, Hiroyuki O
Sato, Hiroyasu
Usui, Takao
Okuda, Takayuki
Yashiro, Hiroyuki
Ishikawa, Hironori
Taikou, Yoshie
Minami, Asako
Kato, Kengo
Taki, Masataka
Aigaki, Toshiro
Gunji, Wataru
Ohtsu, Masaya
Murakami, Yasufumi
Tanuma, Sei-ichi
Tsuboi, Alice
Adachi, Mai
Kuroda, Junpei
Sasamura, Takeshi
Yamakawa, Tomoko
Matsuno, Kenji
A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster
title A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster
title_full A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster
title_fullStr A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster
title_full_unstemmed A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster
title_short A gain-of-function screen to identify genes that reduce lifespan in the adult of Drosophila melanogaster
title_sort gain-of-function screen to identify genes that reduce lifespan in the adult of drosophila melanogaster
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021436/
https://www.ncbi.nlm.nih.gov/pubmed/24739137
http://dx.doi.org/10.1186/1471-2156-15-46
work_keys_str_mv AT nakayamaminoru againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ishibashitomoki againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ishikawahiroyukio againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT satohiroyasu againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT usuitakao againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT okudatakayuki againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT yashirohiroyuki againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ishikawahironori againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT taikouyoshie againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT minamiasako againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT katokengo againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT takimasataka againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT aigakitoshiro againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT gunjiwataru againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ohtsumasaya againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT murakamiyasufumi againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT tanumaseiichi againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT tsuboialice againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT adachimai againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT kurodajunpei againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT sasamuratakeshi againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT yamakawatomoko againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT matsunokenji againoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT nakayamaminoru gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ishibashitomoki gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ishikawahiroyukio gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT satohiroyasu gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT usuitakao gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT okudatakayuki gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT yashirohiroyuki gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ishikawahironori gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT taikouyoshie gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT minamiasako gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT katokengo gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT takimasataka gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT aigakitoshiro gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT gunjiwataru gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT ohtsumasaya gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT murakamiyasufumi gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT tanumaseiichi gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT tsuboialice gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT adachimai gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT kurodajunpei gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT sasamuratakeshi gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT yamakawatomoko gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster
AT matsunokenji gainoffunctionscreentoidentifygenesthatreducelifespanintheadultofdrosophilamelanogaster