Haplosaurus computes protein haplotypes for use in precision drug design

Proteoforms arise as protein isoforms or as protein haplotypes, which are the result of genetic variation. Here, the authors develop Haplosaurus, a database that computes protein haplotypes genome-wide from existing genotype data and analyse protein haplotype variability in the 1000 Genomes dataset.

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Autores principales: William Spooner, William McLaren, Timothy Slidel, Donna K. Finch, Robin Butler, Jamie Campbell, Laura Eghobamien, David Rider, Christine Mione Kiefer, Matthew J. Robinson, Colin Hardman, Fiona Cunningham, Tristan Vaughan, Paul Flicek, Catherine Chaillan Huntington
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/5d598f4d2b124bdea5925a34db6b2887
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spelling oai:doaj.org-article:5d598f4d2b124bdea5925a34db6b28872021-12-02T17:33:04ZHaplosaurus computes protein haplotypes for use in precision drug design10.1038/s41467-018-06542-12041-1723https://doaj.org/article/5d598f4d2b124bdea5925a34db6b28872018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06542-1https://doaj.org/toc/2041-1723Proteoforms arise as protein isoforms or as protein haplotypes, which are the result of genetic variation. Here, the authors develop Haplosaurus, a database that computes protein haplotypes genome-wide from existing genotype data and analyse protein haplotype variability in the 1000 Genomes dataset.William SpoonerWilliam McLarenTimothy SlidelDonna K. FinchRobin ButlerJamie CampbellLaura EghobamienDavid RiderChristine Mione KieferMatthew J. RobinsonColin HardmanFiona CunninghamTristan VaughanPaul FlicekCatherine Chaillan HuntingtonNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-12 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
William Spooner
William McLaren
Timothy Slidel
Donna K. Finch
Robin Butler
Jamie Campbell
Laura Eghobamien
David Rider
Christine Mione Kiefer
Matthew J. Robinson
Colin Hardman
Fiona Cunningham
Tristan Vaughan
Paul Flicek
Catherine Chaillan Huntington
Haplosaurus computes protein haplotypes for use in precision drug design
description Proteoforms arise as protein isoforms or as protein haplotypes, which are the result of genetic variation. Here, the authors develop Haplosaurus, a database that computes protein haplotypes genome-wide from existing genotype data and analyse protein haplotype variability in the 1000 Genomes dataset.
format article
author William Spooner
William McLaren
Timothy Slidel
Donna K. Finch
Robin Butler
Jamie Campbell
Laura Eghobamien
David Rider
Christine Mione Kiefer
Matthew J. Robinson
Colin Hardman
Fiona Cunningham
Tristan Vaughan
Paul Flicek
Catherine Chaillan Huntington
author_facet William Spooner
William McLaren
Timothy Slidel
Donna K. Finch
Robin Butler
Jamie Campbell
Laura Eghobamien
David Rider
Christine Mione Kiefer
Matthew J. Robinson
Colin Hardman
Fiona Cunningham
Tristan Vaughan
Paul Flicek
Catherine Chaillan Huntington
author_sort William Spooner
title Haplosaurus computes protein haplotypes for use in precision drug design
title_short Haplosaurus computes protein haplotypes for use in precision drug design
title_full Haplosaurus computes protein haplotypes for use in precision drug design
title_fullStr Haplosaurus computes protein haplotypes for use in precision drug design
title_full_unstemmed Haplosaurus computes protein haplotypes for use in precision drug design
title_sort haplosaurus computes protein haplotypes for use in precision drug design
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/5d598f4d2b124bdea5925a34db6b2887
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