Data Entry: Please note that the research database will be replaced by UNIverse by the end of October 2023. Please enter your data into the system https://universe-intern.unibas.ch. Thanks

Login for users with Unibas email account...

Login for registered users without Unibas email account...

 
Retrograde transport from the yeast Golgi is mediated by two ARF GAP proteins with overlapping function
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 156812
Author(s) Poon, P. P.; Cassel, D.; Spang, A.; Rotman, M.; Pick, E.; Singer, R. A.; Johnston, G. C.
Author(s) at UniBasel Spang, Anne
Year 1999
Title Retrograde transport from the yeast Golgi is mediated by two ARF GAP proteins with overlapping function
Journal The EMBO Journal
Volume 18
Number 3
Pages / Article-Number 555-64
Keywords ARF GAP, Gcs1, Glo3, GTPase-activating protein, Saccharomyces cerevisiae, vesicular transport
Abstract ARF proteins, which mediate vesicular transport, have little or no intrinsic GTPase activity. They rely on the actions of GTPase-activating proteins (GAPs) for their function. The in vitro GTPase activity of the Saccharomyces cerevisiae ARF proteins Arf1 and Arf2 is stimulated by the yeast Gcs1 protein, and in vivo genetic interactions between arf and gcs1 mutations implicate Gcs1 in vesicular transport. However, the Gcs1 protein is dispensable, indicating that additional ARF GAP proteins exist. We show that the structurally related protein Glo3, which is also dispensable, also exhibits ARF GAP activity. Genetic and in vitro approaches reveal that Glo3 and Gcs1 have an overlapping essential function at the endoplasmic reticulum (ER)-Golgi stage of vesicular transport. Mutant cells deficient for both ARF GAPs cannot proliferate, undergo a dramatic accumulation of ER and are defective for protein transport between ER and Golgi. The glo3Delta and gcs1Delta single mutations each interact with a sec21 mutation that affects a component of COPI, which mediates vesicular transport within the ER-Golgi shuttle, while increased dosage of the BET1, BOS1 and SEC22 genes encoding members of a v-SNARE family that functions within the ER-Golgi alleviates the effects of a glo3Delta mutation. An in vitro assay indicates that efficient retrieval from the Golgi to the ER requires these two proteins. These findings suggest that Glo3 and Gcs1 ARF GAPs mediate retrograde vesicular transport from the Golgi to the ER.
Publisher Nature Publishing Group
ISSN/ISBN 0261-4189 ; 1460-2075
edoc-URL http://edoc.unibas.ch/dok/A5259764
Full Text on edoc No
Digital Object Identifier DOI 10.1093/emboj/18.3.555
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/9927415
ISI-Number WOS:000078597500006
Document type (ISI) Journal Article
 
   

MCSS v5.8 PRO. 0.346 sec, queries - 0.000 sec ©Universität Basel  |  Impressum   |    
02/05/2024