Orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes

The transfer of ubiquitin (UB) to cellular targets is mediated sequentially by three groups of enzymes, UB activating enzyme (E1), UB conjugating enzyme (E2) and UB ligase (E3). Here the authors provide evidence that the two mammalian E1 enzymes, Uba1 and Uba6, exert biologically distinct functions.

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Autores principales: Xianpeng Liu, Bo Zhao, Limin Sun, Karan Bhuripanyo, Yiyang Wang, Yingtao Bi, Ramana V. Davuluri, Duc M. Duong, Dhaval Nanavati, Jun Yin, Hiroaki Kiyokawa
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/770ad999b01440b0979cab03270cc849
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spelling oai:doaj.org-article:770ad999b01440b0979cab03270cc8492021-12-02T14:40:36ZOrthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes10.1038/ncomms142862041-1723https://doaj.org/article/770ad999b01440b0979cab03270cc8492017-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms14286https://doaj.org/toc/2041-1723The transfer of ubiquitin (UB) to cellular targets is mediated sequentially by three groups of enzymes, UB activating enzyme (E1), UB conjugating enzyme (E2) and UB ligase (E3). Here the authors provide evidence that the two mammalian E1 enzymes, Uba1 and Uba6, exert biologically distinct functions.Xianpeng LiuBo ZhaoLimin SunKaran BhuripanyoYiyang WangYingtao BiRamana V. DavuluriDuc M. DuongDhaval NanavatiJun YinHiroaki KiyokawaNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-12 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xianpeng Liu
Bo Zhao
Limin Sun
Karan Bhuripanyo
Yiyang Wang
Yingtao Bi
Ramana V. Davuluri
Duc M. Duong
Dhaval Nanavati
Jun Yin
Hiroaki Kiyokawa
Orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes
description The transfer of ubiquitin (UB) to cellular targets is mediated sequentially by three groups of enzymes, UB activating enzyme (E1), UB conjugating enzyme (E2) and UB ligase (E3). Here the authors provide evidence that the two mammalian E1 enzymes, Uba1 and Uba6, exert biologically distinct functions.
format article
author Xianpeng Liu
Bo Zhao
Limin Sun
Karan Bhuripanyo
Yiyang Wang
Yingtao Bi
Ramana V. Davuluri
Duc M. Duong
Dhaval Nanavati
Jun Yin
Hiroaki Kiyokawa
author_facet Xianpeng Liu
Bo Zhao
Limin Sun
Karan Bhuripanyo
Yiyang Wang
Yingtao Bi
Ramana V. Davuluri
Duc M. Duong
Dhaval Nanavati
Jun Yin
Hiroaki Kiyokawa
author_sort Xianpeng Liu
title Orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes
title_short Orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes
title_full Orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes
title_fullStr Orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes
title_full_unstemmed Orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes
title_sort orthogonal ubiquitin transfer identifies ubiquitination substrates under differential control by the two ubiquitin activating enzymes
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/770ad999b01440b0979cab03270cc849
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