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PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex

ER-Golgi membrane transport and autophagy are intersecting trafficking pathways that are tightly regulated and crucial for homeostasis, development and diseases. Here, we identify UVRAG, a Beclin1-binding autophagic factor, as a PI(3)P-binding protein that depends on PI(3)P for its ER localization....

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Detalles Bibliográficos
Autores principales: He, Shanshan, Ni, Duojiao, Ma, Binyun, Lee, Joo-Hyung, Zhang, Tian, Ghozalli, Irene, Pirooz, Sara Dolatshahi, Zhao, Zhen, Bharatham, Nagakumar, Li, Baihong, Oh, Soohwan, Lee, Wen-Hwa, Takahashi, Yoshinori, Wang, Hong-Gang, Minassian, Arlet, Feng, Pinghui, Deretic, Vojo, Pepperkok, Rainer, Tagaya, Mitsuo, Yoon, Ho Sup, Liang, Chengyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3805255/
https://www.ncbi.nlm.nih.gov/pubmed/24056303
http://dx.doi.org/10.1038/ncb2848
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author He, Shanshan
Ni, Duojiao
Ma, Binyun
Lee, Joo-Hyung
Zhang, Tian
Ghozalli, Irene
Pirooz, Sara Dolatshahi
Zhao, Zhen
Bharatham, Nagakumar
Li, Baihong
Oh, Soohwan
Lee, Wen-Hwa
Takahashi, Yoshinori
Wang, Hong-Gang
Minassian, Arlet
Feng, Pinghui
Deretic, Vojo
Pepperkok, Rainer
Tagaya, Mitsuo
Yoon, Ho Sup
Liang, Chengyu
author_facet He, Shanshan
Ni, Duojiao
Ma, Binyun
Lee, Joo-Hyung
Zhang, Tian
Ghozalli, Irene
Pirooz, Sara Dolatshahi
Zhao, Zhen
Bharatham, Nagakumar
Li, Baihong
Oh, Soohwan
Lee, Wen-Hwa
Takahashi, Yoshinori
Wang, Hong-Gang
Minassian, Arlet
Feng, Pinghui
Deretic, Vojo
Pepperkok, Rainer
Tagaya, Mitsuo
Yoon, Ho Sup
Liang, Chengyu
author_sort He, Shanshan
collection PubMed
description ER-Golgi membrane transport and autophagy are intersecting trafficking pathways that are tightly regulated and crucial for homeostasis, development and diseases. Here, we identify UVRAG, a Beclin1-binding autophagic factor, as a PI(3)P-binding protein that depends on PI(3)P for its ER localization. We further show that UVRAG interacts with RINT-1, and acts as an integral component of the RINT-1-containing ER tethering complex, which couples phosphoinositide metabolism to COPI-vesicle tethering. Displacement or knockdown of UVRAG profoundly disrupted COPI cargo transfer to the ER and Golgi integrity. Intriguingly, autophagy caused the dissociation of UVRAG from the ER tether, which in turn worked in concert with the Bif-1-Beclin-PI(3)KC3 complex to mobilize Atg9 translocation for autophagosome formation. These findings identify a regulatory mechanism that coordinates Golgi-ER retrograde and autophagy-related vesicular trafficking events through physical and functional interactions between UVRAG, phosphoinositide, and their regulatory factors, thereby ensuring spatiotemporal fidelity of membrane trafficking and maintenance of organelle homeostasis.
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spelling pubmed-38052552014-04-01 PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex He, Shanshan Ni, Duojiao Ma, Binyun Lee, Joo-Hyung Zhang, Tian Ghozalli, Irene Pirooz, Sara Dolatshahi Zhao, Zhen Bharatham, Nagakumar Li, Baihong Oh, Soohwan Lee, Wen-Hwa Takahashi, Yoshinori Wang, Hong-Gang Minassian, Arlet Feng, Pinghui Deretic, Vojo Pepperkok, Rainer Tagaya, Mitsuo Yoon, Ho Sup Liang, Chengyu Nat Cell Biol Article ER-Golgi membrane transport and autophagy are intersecting trafficking pathways that are tightly regulated and crucial for homeostasis, development and diseases. Here, we identify UVRAG, a Beclin1-binding autophagic factor, as a PI(3)P-binding protein that depends on PI(3)P for its ER localization. We further show that UVRAG interacts with RINT-1, and acts as an integral component of the RINT-1-containing ER tethering complex, which couples phosphoinositide metabolism to COPI-vesicle tethering. Displacement or knockdown of UVRAG profoundly disrupted COPI cargo transfer to the ER and Golgi integrity. Intriguingly, autophagy caused the dissociation of UVRAG from the ER tether, which in turn worked in concert with the Bif-1-Beclin-PI(3)KC3 complex to mobilize Atg9 translocation for autophagosome formation. These findings identify a regulatory mechanism that coordinates Golgi-ER retrograde and autophagy-related vesicular trafficking events through physical and functional interactions between UVRAG, phosphoinositide, and their regulatory factors, thereby ensuring spatiotemporal fidelity of membrane trafficking and maintenance of organelle homeostasis. 2013-09-22 2013-10 /pmc/articles/PMC3805255/ /pubmed/24056303 http://dx.doi.org/10.1038/ncb2848 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
He, Shanshan
Ni, Duojiao
Ma, Binyun
Lee, Joo-Hyung
Zhang, Tian
Ghozalli, Irene
Pirooz, Sara Dolatshahi
Zhao, Zhen
Bharatham, Nagakumar
Li, Baihong
Oh, Soohwan
Lee, Wen-Hwa
Takahashi, Yoshinori
Wang, Hong-Gang
Minassian, Arlet
Feng, Pinghui
Deretic, Vojo
Pepperkok, Rainer
Tagaya, Mitsuo
Yoon, Ho Sup
Liang, Chengyu
PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex
title PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex
title_full PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex
title_fullStr PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex
title_full_unstemmed PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex
title_short PI(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the Beclin1 complex
title_sort pi(3)p-bound uvrag coordinates golgi-er retrograde and atg9 transport by differential interactions with the er tether and the beclin1 complex
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3805255/
https://www.ncbi.nlm.nih.gov/pubmed/24056303
http://dx.doi.org/10.1038/ncb2848
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