Cross-species genome-wide identification of evolutionary conserved microproteins

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Cross-species genome-wide identification of evolutionary conserved microproteins. / Straub, Daniel; Wenkel, Stephan.

I: Genome Biology and Evolution, Bind 9, Nr. 3, 2017, s. 777-789.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Straub, D & Wenkel, S 2017, 'Cross-species genome-wide identification of evolutionary conserved microproteins', Genome Biology and Evolution, bind 9, nr. 3, s. 777-789. https://doi.org/10.1093/gbe/evx041

APA

Straub, D., & Wenkel, S. (2017). Cross-species genome-wide identification of evolutionary conserved microproteins. Genome Biology and Evolution, 9(3), 777-789. https://doi.org/10.1093/gbe/evx041

Vancouver

Straub D, Wenkel S. Cross-species genome-wide identification of evolutionary conserved microproteins. Genome Biology and Evolution. 2017;9(3):777-789. https://doi.org/10.1093/gbe/evx041

Author

Straub, Daniel ; Wenkel, Stephan. / Cross-species genome-wide identification of evolutionary conserved microproteins. I: Genome Biology and Evolution. 2017 ; Bind 9, Nr. 3. s. 777-789.

Bibtex

@article{316238db330e49f68ceb91f935b8c6e9,
title = "Cross-species genome-wide identification of evolutionary conserved microproteins",
abstract = "MicroProteins are small single-domain proteins that act by engaging their targets into different, sometimes nonproductive protein complexes. In order to identify novel microProteins in any sequenced genome of interest, we have developed miPFinder, a program that identifies and classifies potential microProteins. In the past years, several microProteins have been discovered in plants where they are mainly involved in the regulation of development by fine-tuning transcription factor activities. The miPFinder algorithm identifies all up to date known plant microProteins and extends the microProtein concept beyond transcription factors to other protein families. Here, we reveal potential microProtein candidates in several plant and animal reference genomes. A large number of these microProteins are species-specific while others evolved early and are evolutionary highly conserved. Most known microProtein genes originated from large ancestral genes by gene duplication, mutation and subsequent degradation. Gene ontology analysis shows that putative microProtein ancestors are often located in the nucleus, and involved in DNA binding and formation of protein complexes. Additionally, microProtein candidates act in plant transcriptional regulation, signal transduction and anatomical structure development. MiPFinder is freely available to find microProteins in any genome and will aid in the identification of novel microProteins in plants and animals.",
keywords = "Journal Article",
author = "Daniel Straub and Stephan Wenkel",
note = "{\textcopyright} The Author(s) 2017. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution.",
year = "2017",
doi = "10.1093/gbe/evx041",
language = "English",
volume = "9",
pages = "777--789",
journal = "Genome Biology and Evolution",
issn = "1759-6653",
publisher = "Oxford University Press",
number = "3",

}

RIS

TY - JOUR

T1 - Cross-species genome-wide identification of evolutionary conserved microproteins

AU - Straub, Daniel

AU - Wenkel, Stephan

N1 - © The Author(s) 2017. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution.

PY - 2017

Y1 - 2017

N2 - MicroProteins are small single-domain proteins that act by engaging their targets into different, sometimes nonproductive protein complexes. In order to identify novel microProteins in any sequenced genome of interest, we have developed miPFinder, a program that identifies and classifies potential microProteins. In the past years, several microProteins have been discovered in plants where they are mainly involved in the regulation of development by fine-tuning transcription factor activities. The miPFinder algorithm identifies all up to date known plant microProteins and extends the microProtein concept beyond transcription factors to other protein families. Here, we reveal potential microProtein candidates in several plant and animal reference genomes. A large number of these microProteins are species-specific while others evolved early and are evolutionary highly conserved. Most known microProtein genes originated from large ancestral genes by gene duplication, mutation and subsequent degradation. Gene ontology analysis shows that putative microProtein ancestors are often located in the nucleus, and involved in DNA binding and formation of protein complexes. Additionally, microProtein candidates act in plant transcriptional regulation, signal transduction and anatomical structure development. MiPFinder is freely available to find microProteins in any genome and will aid in the identification of novel microProteins in plants and animals.

AB - MicroProteins are small single-domain proteins that act by engaging their targets into different, sometimes nonproductive protein complexes. In order to identify novel microProteins in any sequenced genome of interest, we have developed miPFinder, a program that identifies and classifies potential microProteins. In the past years, several microProteins have been discovered in plants where they are mainly involved in the regulation of development by fine-tuning transcription factor activities. The miPFinder algorithm identifies all up to date known plant microProteins and extends the microProtein concept beyond transcription factors to other protein families. Here, we reveal potential microProtein candidates in several plant and animal reference genomes. A large number of these microProteins are species-specific while others evolved early and are evolutionary highly conserved. Most known microProtein genes originated from large ancestral genes by gene duplication, mutation and subsequent degradation. Gene ontology analysis shows that putative microProtein ancestors are often located in the nucleus, and involved in DNA binding and formation of protein complexes. Additionally, microProtein candidates act in plant transcriptional regulation, signal transduction and anatomical structure development. MiPFinder is freely available to find microProteins in any genome and will aid in the identification of novel microProteins in plants and animals.

KW - Journal Article

U2 - 10.1093/gbe/evx041

DO - 10.1093/gbe/evx041

M3 - Journal article

C2 - 28338802

VL - 9

SP - 777

EP - 789

JO - Genome Biology and Evolution

JF - Genome Biology and Evolution

SN - 1759-6653

IS - 3

ER -

ID: 179925115