TY - JOUR
T1 - PtdIns(3)P-bound UVRAG coordinates Golgi-ER retrograde and Atg9 transport by differential interactions with the ER tether and the beclin 1 complex
AU - He, Shanshan
AU - Ni, Duojiao
AU - Ma, Binyun
AU - Lee, Joo Hyung
AU - Zhang, Tian
AU - Ghozalli, Irene
AU - Pirooz, Sara Dolatshahi
AU - Zhao, Zhen
AU - Bharatham, Nagakumar
AU - Li, Baihong
AU - Oh, Soohwan
AU - Lee, Wen Hwa
AU - Takahashi, Yoshinori
AU - Wang, Hong-Gang
AU - Minassian, Arlet
AU - Feng, Pinghui
AU - Deretic, Vojo
AU - Pepperkok, Rainer
AU - Tagaya, Mitsuo
AU - Yoon, Ho Sup
AU - Liang, Chengyu
PY - 2013/10
Y1 - 2013/10
N2 - Endoplasmic reticulum (ER)-Golgi membrane transport and autophagy are intersecting trafficking pathways that are tightly regulated and crucial for homeostasis, development and disease. Here, we identify UVRAG, a beclin-1-binding autophagic factor, as a phosphatidylinositol-3-phosphate (PtdIns(3)P)-binding protein that depends on PtdIns(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-1-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.
AB - Endoplasmic reticulum (ER)-Golgi membrane transport and autophagy are intersecting trafficking pathways that are tightly regulated and crucial for homeostasis, development and disease. Here, we identify UVRAG, a beclin-1-binding autophagic factor, as a phosphatidylinositol-3-phosphate (PtdIns(3)P)-binding protein that depends on PtdIns(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-1-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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U2 - 10.1038/ncb2848
DO - 10.1038/ncb2848
M3 - Article
C2 - 24056303
AN - SCOPUS:84885175531
SN - 1465-7392
VL - 15
SP - 1206
EP - 1219
JO - Nature Cell Biology
JF - Nature Cell Biology
IS - 10
ER -