golgi system
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2021 ◽  
Author(s):  
Shulin Li ◽  
Rui Yan ◽  
Jialu Xu ◽  
Shiqun Zhao ◽  
Xinyu Ma ◽  
...  

Under stress, the endomembrane system undergoes reorganization to support autophagosome biogenesis, which is a central step in autophagy. How the endomembrane system remodels has been poorly understood. Here we identify a new type of membrane contact formed between the ER-Golgi intermediate compartment (ERGIC) and the ER-exit site (ERES) in the ER-Golgi system, which is essential for promoting autophagosome biogenesis induced by different stress stimuli. The ERGIC-ERES contact is established by the interaction between TMED9 and SEC12 which generates a short distance opposition (as close as 2-5 nm) between the two compartments. The tight membrane contact allows the ERES-located SEC12 to transactivate COPII assembly on the ERGIC. In addition, a portion of SEC12 also relocates to the ERGIC. Through both mechanisms, the ERGIC-ERES contact promotes formation of the ERGIC-derived COPII vesicle, a membrane precursor of the autophagosome. The ERGIC-ERES contact is physically and functionally different from the TFG-mediated ERGIC-ERES adjunction involved in secretory protein transport, and therefore defines a unique endomembrane structure generated upon stress conditions for autophagic membrane formation.


2016 ◽  
Vol 21 (8) ◽  
pp. 901-906 ◽  
Author(s):  
Takayuki Hattori ◽  
Miho Watanabe-Takahashi ◽  
Isamu Shiina ◽  
Yoshimi Ohashi ◽  
Shingo Dan ◽  
...  
Keyword(s):  

2012 ◽  
Vol 56 (1) ◽  
pp. 150-159 ◽  
Author(s):  
Isamu Shiina ◽  
Yuma Umezaki ◽  
Yoshimi Ohashi ◽  
Yuta Yamazaki ◽  
Shingo Dan ◽  
...  

2011 ◽  
Vol 287 (6) ◽  
pp. 3885-3897 ◽  
Author(s):  
Yoshimi Ohashi ◽  
Hiroshi Iijima ◽  
Noriyuki Yamaotsu ◽  
Kanami Yamazaki ◽  
Shigeo Sato ◽  
...  

2004 ◽  
Vol 24 (17) ◽  
pp. 7402-7418 ◽  
Author(s):  
Sidonie Wicky ◽  
Heinz Schwarz ◽  
Birgit Singer-Krüger

ABSTRACT Neo1p is an essential yeast member of the highly conserved Drs2 family of P-type ATPases with proposed aminophospholipid translocase activity. Here we present evidence that Neo1p localizes to endosomes and Golgi elements. In agreement with that finding, the temperature-sensitive neo1-37 and neo1-69 mutants exhibit defects in receptor-mediated endocytosis, vacuole biogenesis, and vacuolar protein sorting. Furthermore, neo1 mutants accumulate aberrantly shaped membranous structures most likely derived from vacuoles and the endosomal/Golgi system. At permissive temperatures, HA-Neo1-69p, like wild-type Neo1p, is stable and associates with endosomes. In contrast, HA-Neo1-37p is rapidly degraded and is predominantly retained within the endoplasmic reticulum (ER). Thus, the two neo1 alleles affect the stability and localization of the mutant polypeptides in different ways. A C-terminally truncated and a C-terminally epitope-tagged version of Neo1p are nonfunctional and also mislocalize to the ER. In agreement with a role within the endomembrane system, Neo1p exhibits genetic and physical interactions with Ysl2p, a potential guanine nucleotide exchange factor for Arl1p. Interestingly, deletion of ARL1 rescues the temperature sensitivity of neo1-37 and neo1-69. We demonstrate that Arl1p in its myristoylated and GTP-bound form is responsible for the inhibitory effect. Thus, Neo1p, Ysl2p, and Arl1p represent three proteins that collaborate in membrane trafficking within the endosomal/Golgi system.


2001 ◽  
Vol 354 (3) ◽  
pp. 689-695 ◽  
Author(s):  
Barbara PLAIMAUER ◽  
Gabriele MOHR ◽  
Waltraud WERNHART ◽  
Michèle HIMMELSPACH ◽  
Friedrich DORNER ◽  
...  

The human endoprotease furin is involved in the proteolytic maturation of the precursor molecules of a wide variety of bioactive proteins. Despite its localization in the membranes of the trans-Golgi system by means of a transmembrane domain, it has repeatedly been reported to form a C-terminally truncated, naturally secreted form referred to as ‘shed’ furin. In order to identify the cleavage site, internal deletion mutants of increasing size, N-terminal to Leu708, and subsequently individual amino acid substitutions were introduced, and Arg683 was identified as the prime determinant for shedding. MS analysis determined Ser682 as the C-terminus of shed furin, suggesting that monobasic cleavage may occur N-terminal to Arg683. Alteration of Arg683 directs the shedding mechanism to alternative cleaving sites previously unused.


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