Cargando…

A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning

Eukaryotic mRNAs are generally considered monocistronic and encode only one protein. Although dicistronic mRNAs encoding two proteins were found in fungi, plants, and animals, polycistronic mRNAs encoding more than two proteins have remained elusive so far in any eukaryote. Here we demonstrate that...

Descripción completa

Detalles Bibliográficos
Autores principales: Kanamori, Yasushi, Hayakawa, Yoichi, Matsumoto, Hitoshi, Yasukochi, Yuji, Shimura, Sachiko, Nakahara, Yuichi, Kiuchi, Makoto, Kamimura, Manabu
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2978622/
https://www.ncbi.nlm.nih.gov/pubmed/20829361
http://dx.doi.org/10.1074/jbc.M110.180398
_version_ 1782191278793949184
author Kanamori, Yasushi
Hayakawa, Yoichi
Matsumoto, Hitoshi
Yasukochi, Yuji
Shimura, Sachiko
Nakahara, Yuichi
Kiuchi, Makoto
Kamimura, Manabu
author_facet Kanamori, Yasushi
Hayakawa, Yoichi
Matsumoto, Hitoshi
Yasukochi, Yuji
Shimura, Sachiko
Nakahara, Yuichi
Kiuchi, Makoto
Kamimura, Manabu
author_sort Kanamori, Yasushi
collection PubMed
description Eukaryotic mRNAs are generally considered monocistronic and encode only one protein. Although dicistronic mRNAs encoding two proteins were found in fungi, plants, and animals, polycistronic mRNAs encoding more than two proteins have remained elusive so far in any eukaryote. Here we demonstrate that a single mRNA from silkworm encodes the precursor of an insect cytokine paralytic peptide (PP) and two new cytokine precursor-like proteins, uENF1 and uENF2. RT-PCR analysis showed that this mRNA is widely conserved in moths. Western blot analyses and reporter assays using its modified mRNAs, created by replacing each one of the three ORFs with the firefly luciferase ORF, showed that all three proteins were translated from this mRNA in cell lines, larval tissues, and cell-free systems. Insertion experiments using the Renilla luciferase ORF or a stem loop ruled out the possible involvement of internal ribosome entry site in the three protein translation. On the other hand, systematic mutation analysis of the translation initiation sequence of the 5′-proximal uENF1 ORF suggested that the context-dependent leaky-scanning mechanism is involved in translation of the downstream uENF2 and PP ORFs. In vitro, a synthetic peptide corresponding to the putative mature form of uENF1 stimulated spreading of hemocytes as did the synthetic PP, whereas that of uENF2 antagonized the stimulating activities of PP and the uENF1 peptide, suggesting that the three proteins control cellular immunity interactively. Thus, eukaryotes have a cellular tricistronic mRNA that encodes three functionally related proteins as in an operon.
format Text
id pubmed-2978622
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-29786222011-01-04 A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning Kanamori, Yasushi Hayakawa, Yoichi Matsumoto, Hitoshi Yasukochi, Yuji Shimura, Sachiko Nakahara, Yuichi Kiuchi, Makoto Kamimura, Manabu J Biol Chem RNA Eukaryotic mRNAs are generally considered monocistronic and encode only one protein. Although dicistronic mRNAs encoding two proteins were found in fungi, plants, and animals, polycistronic mRNAs encoding more than two proteins have remained elusive so far in any eukaryote. Here we demonstrate that a single mRNA from silkworm encodes the precursor of an insect cytokine paralytic peptide (PP) and two new cytokine precursor-like proteins, uENF1 and uENF2. RT-PCR analysis showed that this mRNA is widely conserved in moths. Western blot analyses and reporter assays using its modified mRNAs, created by replacing each one of the three ORFs with the firefly luciferase ORF, showed that all three proteins were translated from this mRNA in cell lines, larval tissues, and cell-free systems. Insertion experiments using the Renilla luciferase ORF or a stem loop ruled out the possible involvement of internal ribosome entry site in the three protein translation. On the other hand, systematic mutation analysis of the translation initiation sequence of the 5′-proximal uENF1 ORF suggested that the context-dependent leaky-scanning mechanism is involved in translation of the downstream uENF2 and PP ORFs. In vitro, a synthetic peptide corresponding to the putative mature form of uENF1 stimulated spreading of hemocytes as did the synthetic PP, whereas that of uENF2 antagonized the stimulating activities of PP and the uENF1 peptide, suggesting that the three proteins control cellular immunity interactively. Thus, eukaryotes have a cellular tricistronic mRNA that encodes three functionally related proteins as in an operon. American Society for Biochemistry and Molecular Biology 2010-11-19 2010-09-09 /pmc/articles/PMC2978622/ /pubmed/20829361 http://dx.doi.org/10.1074/jbc.M110.180398 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle RNA
Kanamori, Yasushi
Hayakawa, Yoichi
Matsumoto, Hitoshi
Yasukochi, Yuji
Shimura, Sachiko
Nakahara, Yuichi
Kiuchi, Makoto
Kamimura, Manabu
A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning
title A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning
title_full A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning
title_fullStr A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning
title_full_unstemmed A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning
title_short A Eukaryotic (Insect) Tricistronic mRNA Encodes Three Proteins Selected by Context-dependent Scanning
title_sort eukaryotic (insect) tricistronic mrna encodes three proteins selected by context-dependent scanning
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2978622/
https://www.ncbi.nlm.nih.gov/pubmed/20829361
http://dx.doi.org/10.1074/jbc.M110.180398
work_keys_str_mv AT kanamoriyasushi aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT hayakawayoichi aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT matsumotohitoshi aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT yasukochiyuji aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT shimurasachiko aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT nakaharayuichi aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT kiuchimakoto aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT kamimuramanabu aeukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT kanamoriyasushi eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT hayakawayoichi eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT matsumotohitoshi eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT yasukochiyuji eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT shimurasachiko eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT nakaharayuichi eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT kiuchimakoto eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning
AT kamimuramanabu eukaryoticinsecttricistronicmrnaencodesthreeproteinsselectedbycontextdependentscanning